Often, siloxanes and silanes have been reported as constituents of plant extracts, where the authors have not remarked on whether the compounds are natural plant metabolites, xenobiotics stemming from anthropogenic environmental pollution or contaminants originating from the analysis itself. This contribution critically reviews and evaluates silyl containing compounds in plant extracts.
Al-Rowaily, S.L., Abd-ElGawad, A.M., Assaeed, A.M., Elgamal, A.M., Gendy, A.E.G.E., Mohamed, T.A., et al. (2020) Essential Oil of Calotropis Procera: Comparative Chemical Profiles, Antimicrobial Activity, and Allelopathic Potential on Weeds. Molecules , 25, Article 5203. https://doi.org/10.3390/molecules25215203
Thiemann, T. (2021) Isolation of Phthalates and Terephthalates from Plant Material-Natural Products or Contaminants? Open Chemistry Journal , 8, 1-36. https://doi.org/10.2174/1874842202108010001
Enikeev, A.G. (2025) Ortho-Phthalic Acid Esters: A New Group of Secondary Plant Metabolites. Russian Journal of Plant Physiology , 72, Article No. 17. https://doi.org/10.1134/s1021443724609479
Exley, C. (1998) Silicon in Life: A Bioinorganic Solution to Bioorganic Essentiality. Journal of Inorganic Biochemistry , 69, 139-144. https://doi.org/10.1016/s0162-0134(97)10010-1
Farooq, M.A. and Dietz, K. (2015) Silicon as Versatile Player in Plant and Human Biology: Overlooked and Poorly Understood. Frontiers in Plant Science , 6, Article ID: 994. https://doi.org/10.3389/fpls.2015.00994
Ahanger, M.A., Bhat, J.A., Siddiqui, M.H., Rinklebe, J. and Ahmad, P. (2020) Integration of Silicon and Secondary Metabolites in Plants: A Significant Association in Stress Tolerance. Journal of Experimental Botany , 71, 6758-6774. https://doi.org/10.1093/jxb/eraa291
Chandra, G. (1997) Organosilicon Materials: The Handbook of Environmental Chemistry. Springer.
Alaee, M., Wang, D. and Gouin, T. (2013) Cyclic Volatile Methyl Siloxanes in the Environment. Chemosphere , 93, 709-710. https://doi.org/10.1016/j.chemosphere.2012.10.040
Xiang, X., Liu, N., Xu, L. and Cai, Y. (2021) Review of Recent Findings on Occurrence and Fates of Siloxanes in Environmental Compartments. Ecotoxicology and Environmental Safety , 224, Article 112631. https://doi.org/10.1016/j.ecoenv.2021.112631
Brook, D.N., Crookes, M.J., Gray, D. and Robertson, S. (2009) Environmental Risk Assessment Report: Octamethylcyclotetrasiloxane. Environment Agency of England and Wales. https://assets.publishing.service.gov.uk/media/5a7c4a3ded915d3d0e87b611/scho0309bpqz-e-e.pdf
Global Silicones Council (GSC) (2016) Socio-Economic Evaluation of the Global Sili-Cones in Industry (Final Report). https://sehsc.americanchemistry.com/Socio-Economic-Evaluation-of-the-Global-Silicones-Industry-Final-Report.pdf
Garside, M. (2020) Silicon-Statistics & facts. https://www.statista.com/topics/1959/silicon/
Pascual, C., Cantera, S. and Lebrero, R. (2021) Volatile Siloxanes Emissions: Impact and Sustainable Abatement Perspectives. Trends in Biotechnology , 39, 1245-1248. https://doi.org/10.1016/j.tibtech.2021.05.003
Stadtmüller, S. (2002) Siloxanes as Additives for Plastics. Polymers and Polymer Composites , 10, 49-62. https://doi.org/10.1177/096739110201000104
Glosz, K., Stolarczyk, A. and Jarosz, T. (2020) Siloxanes—Versatile Materials for Surface Functionalisation and Graft Copolymers. International Journal of Molecular Sciences , 21, Article 6387. https://doi.org/10.3390/ijms21176387
Risso Chemicals (2014) Types of Silane: Essential Uses and Benefits across Industries. https://rissochem.com/types-of-silane/#:~:text=Discover%20the%20different%20types%20of%20silane%20and%20their,water%20resistance%20in%20construction%2C%20electronics%2C%20automotive%2C%20and%20more
Milne, G.W.A. (2005) Gardner’s Commercially Important Chemicals Synonyms, Trade Names, and Properties. John Wiley & Sons, 178.
Quevauviller, P.P., Roose, P. and Verreet, G. (2010) Chemical Marine Monitoring: Policy Framework and Analytical Trends. Wiley & Sons.
US EPA and OCSPP (2020) Risk Evaluation for Octamethylcyclotetra-Siloxane (D4). https://www.epa.gov/assessing-and-managing-chemicals-under-tsca/risk-evaluation-octamethylcyclotetra-siloxane-d4
European Union Proposal to List Octamethylcyclotetrasiloxane (D4), Decamethylcy-Clopentasiloxane (D5) and Dodecamethylcyclohexasiloxane (D6) in Annex B to the Stockholm Convention on Persistent Organic Pollutants. https://echa.europa.eu/documents/10162/63ce2062-0f0b-130f-3cb1-5c84071e7082
EPA, Office of Chemical Safety and Pollution Prevention (2022) Final Scope of Risk Evaluation for Octamethylcyclotetra-siloxane (D4), Supplemental File: Data Extraction and Data Evaluation Tables for Physical and Chemical Property Studies CASRN: 556-67-2. https://www.epa.gov/system/files/documents/2022-03/casrn-556-67-2-orthomethylcyclotetrasiloxane_d4_pchem_supplement.pdf
Mackay, D., Cowan-Ellsberry, C.E., Powell, D.E., Woodburn, K.B., Xu, S., Kozerski, G.E., et al. (2015) Decamethylcyclopentasiloxane (D5) Environmental Sources, Fate, Transport, and Routes of Exposure. Environmental Toxicology and Chemistry , 34, 2689-2702. https://doi.org/10.1002/etc.2941
(2018) Eur-Lex Document 32018R0035: Commission Regulation (EU) 2018/35 of 10 Jan-uary 2018 Amending Annex XVII to Regulation (EC) No 1907/2006 of the European Parliament and of the Council Concerning the Registration, Evaluation, Authorisation and Restriction of Chemicals (REACH) as Regards Octamethylcyclotetrasilox-ane (‘D4’) and Decamethylcyclopentasiloxane (‘D5’) (Text with EEA relevance). https://eur-lex.europa.eu/eli/reg/2018/35/oj/eng
Yoo, B.Y., Kim, B.H., Lee, J.S., Shin, B.H., Kwon, H., Koh, W., et al. (2018) Dual Surface Modification of PDMS-Based Silicone Implants to Suppress Capsular Contracture. Acta Biomaterialia , 76, 56-70. https://doi.org/10.1016/j.actbio.2018.06.022
Bongaerts, J.H.H., Fourtouni, K. and Stokes, J.R. (2007) Soft-Tribology: Lubrication in a Compliant PDMS–PDMS Contact. Tribology International , 40, 1531-1542. https://doi.org/10.1016/j.triboint.2007.01.007
Guan, Y., Liu, Y., Wang, Q., Geng, H., Cui, T., Hu, Y., et al. (2023) Inchworm-Inspired Soft Robot with Magnetic Driving Based on PDMS, EGAIN and NDFEB (PEN) Combination. Chemical Engineering Journal , 466, Article 142994. https://doi.org/10.1016/j.cej.2023.142994
Danish Environmental Protection Agency (2021) (Larsen, P.B., Semark, I.D., Mørc, T.A., Rasmussen, D., Andersen, D.N. and Johannesen, S.A., Eds). Survey of Chemical Substances in Consumer Products No. 185. https://www2.mst.dk/Udgiv/publications/2021/05/978-87-7038-317-2.pdf
Song, J., Liu, J., Li, M., Li, S., Kappl, M., Butt, H., et al. (2023) Hierarchically Branched Siloxane Brushes for Efficient Harvesting of Atmospheric Water. Small , 19, Article 2301561. https://doi.org/10.1002/smll.202301561
Vasnev, V.A., Markova, G.D., Istratov, V.V. and Baranov, O.V. (2022) Hydrophilic Modified Siloxane Coatings. Polymer Science , Series B , 64, 137-141. https://doi.org/10.1134/s1560090422020099
Yang, T., Xiong, J., Tang, X. and Misztal, P.K. (2018) Predicting Indoor Emissions of Cyclic Volatile Methylsiloxanes from the Use of Personal Care Products by University Students. Environmental Science & Technology , 52, 14208-14215. https://doi.org/10.1021/acs.est.8b00443
McBean, E.A. (2008) Siloxanes in Biogases from Landfills and Wastewater Digesters. Canadian Journal of Civil Engineering , 35, 431-436. https://doi.org/10.1139/l07-144
Rivera-Montenegro, L., Valenzuela, E.I., González-Sánchez, A., Muñoz, R. and Quijano, G. (2022) Volatile Methyl Siloxanes as Key Biogas Pollutants: Occurrence, Impacts and Treatment Technologies. BioEnergy Research , 16, 801-816. https://doi.org/10.1007/s12155-022-10525-y
Lee, S., Moon, H., Song, G., Ra, K., Lee, W. and Kannan, K. (2014) A Nationwide Survey and Emission Estimates of Cyclic and Linear Siloxanes through Sludge from Wastewater Treatment Plants in Korea. Science of The Total Environment , 497, 106-112. https://doi.org/10.1016/j.scitotenv.2014.07.083
Capela, D., Ratola, N., Alves, A. and Homem, V. (2017) Volatile Methylsiloxanes through Wastewater Treatment Plants—A Review of Levels and Implications. Environment International , 102, 9-29. https://doi.org/10.1016/j.envint.2017.03.005
Cheng, Y., Shoeib, M., Ahrens, L., Harner, T. and Ma, J. (2011) Wastewater Treatment Plants and Landfills Emit Volatile Methyl Siloxanes (VMSS) to the Atmosphere: Investigations Using a New Passive Air Sampler. Environmental Pollution , 159, 2380-2386. https://doi.org/10.1016/j.envpol.2011.07.002
Wang, N., Tan, L., Xie, L., Wang, Y. and Ellis, T. (2020) Investigation of Volatile Methyl Siloxanes in Biogas and the Ambient Environment in a Landfill. Journal of Environmental Sciences , 91, 54-61. https://doi.org/10.1016/j.jes.2020.01.005
McLachlan, M.S., Kierkegaard, A., Hansen, K.M., van Egmond, R., Christensen, J.H. and Skjøth, C.A. (2010) Concentrations and Fate of Decamethylcyclopentasiloxane (d 5 ) in the Atmosphere. Environmental Science & Technology , 44, 5365-5370. https://doi.org/10.1021/es100411w
Sánchez-Brunete, C., Miguel, E., Albero, B. and Tadeo, J.L. (2010) Determination of Cyclic and Linear Siloxanes in Soil Samples by Ultrasonic-Assisted Extraction and Gas Chromatography-Mass Spectrometry. Journal of Chromatography A , 1217, 7024-7030. https://doi.org/10.1016/j.chroma.2010.09.031
Companioni-Damas, E.Y., Santos, F.J. and Galceran, M.T. (2012) Analysis of Linear and Cyclic Methylsiloxanes in Sewage Sludges and Urban Soils by Concurrent Solvent Recondensation-Large Volume Injection-Gas Chromatography-Mass Spectrometry. Journal of Chromatography A , 1268, 150-156. https://doi.org/10.1016/j.chroma.2012.10.043
Guo, W., Dai, Y., Chu, X., Cui, S., Sun, Y., Li, Y., et al. (2021) Assessment Bioaccumulation Factor (BAF) of Methyl Siloxanes in Crucian Carp ( Carassius auratus ) around a Siloxane Production Factory. Ecotoxicology and Environmental Safety , 213, Article 111983. https://doi.org/10.1016/j.ecoenv.2021.111983
Companioni-Damas, E.Y., Santos, F.J. and Galceran, M.T. (2012) Analysis of Linear and Cyclic Methylsiloxanes in Water by Headspace-Solid Phase Microextraction and Gas Chromatography-Mass Spectrometry. Talanta , 89, 63-69. https://doi.org/10.1016/j.talanta.2011.11.058
Yucuis, R.A., Stanier, C.O. and Hornbuckle, K.C. (2013) Cyclic Siloxanes in Air, Including Identification of High Levels in Chicago and Distinct Diurnal Variation. Chemosphere , 92, 905-910. https://doi.org/10.1016/j.chemosphere.2013.02.051
Xu, S., Warner, N., Bohlin-Nizzetto, P., Durham, J. and McNett, D. (2019) Long-range Transport Potential and Atmospheric Persistence of Cyclic Volatile Methylsiloxanes Based on Global Measurements. Chemosphere , 228, 460-468. https://doi.org/10.1016/j.chemosphere.2019.04.130
Xiao, R., Zammit, I., Wei, Z., Hu, W., MacLeod, M. and Spinney, R. (2015) Kinetics and Mechanism of the Oxidation of Cyclic Methylsiloxanes by Hydroxyl Radical in the Gas Phase: An Experimental and Theoretical Study. Environmental Science & Technology , 49, 13322-13330. https://doi.org/10.1021/acs.est.5b03744
Kim, J. and Xu, S. (2017) Quantitative Structure-Reactivity Relationships of Hydroxyl Radical Rate Constants for Linear and Cyclic Volatile Methylsiloxanes. Environmental Toxicology and Chemistry , 36, 3240-3245. https://doi.org/10.1002/etc.3914
Safron, A., Strandell, M., Kierkegaard, A. and Macleod, M. (2015) Rate Constants and Activation Energies for Gas‐Phase Reactions of Three Cyclic Volatile Methyl Siloxanes with the Hydroxyl Radical. International Journal of Chemical Kinetics , 47, 420-428. https://doi.org/10.1002/kin.20919
Atkinson, R. (1991) Kinetics of the Gas-Phase Reactions of a Series of Organosilicon Compounds with Hydroxyl and Nitrate(no3) Radicals and Ozone at 297. +-. 2 K. Environmental Science & Technology , 25, 863-866. https://doi.org/10.1021/es00017a005
Radermacher, G., Rüdel, H., Wesch, C., Böhnhardt, A. and Koschorreck, J. (2020) Retrospective Analysis of Cyclic Volatile Methylsiloxanes in Archived German Fish Samples Covering a Period of Two Decades. Science of The Total Environment , 706, Article 136011. https://doi.org/10.1016/j.scitotenv.2019.136011
Hashiguchi, Y., Zakaria, M.R., Maeda, T., Yusoff, M.Z.M., Hassan, M.A. and Shirai, Y. (2020) Toxicity Identification and Evaluation of Palm Oil Mill Effluent and Its Effects on the Planktonic Crustacean Daphnia Magna. Science of The Total Environment , 710, Article 136277. https://doi.org/10.1016/j.scitotenv.2019.136277
Mojsiewicz-Pieńkowska, K., Jamrógiewicz, M., Szymkowska, K. and Krenczkowska, D. (2016) Direct Human Contact with Siloxanes (Silicones)—Safety or Risk Part 1. Characteristics of Siloxanes (Silicones). Frontiers in Pharmacology , 7, Article ID: 00132. https://doi.org/10.3389/fphar.2016.00132
Bennett, D.R., Gorzinski, S.J. and LeBeau, J.E. (1972) Structure-Activity Relationships of Oral Organosiloxanes on the Male Reproductive System. Toxicology and Applied Pharmacology , 21, 55-67. https://doi.org/10.1016/0041-008x(72)90027-0
Hayden, J.F. and Barlow, S.A. (1972) Structure-Activity Relationships of Organosiloxanes and the Female Reproductive System. Toxicology and Applied Pharmacology , 21, 68-79. https://doi.org/10.1016/0041-008x(72)90028-2
Klaunig, J.E., Dekant, W., Plotzke, K. and Scialli, A.R. (2016) Biological Relevance of Decamethylcyclopentasiloxane (D5) Induced Rat Uterine Endometrial Adenocarcinoma Tumorigenesis: Mode of Action and Relevance to Humans. Regulatory Toxicology and Pharmacology , 74, S44-S56. https://doi.org/10.1016/j.yrtph.2015.06.021
Tran, T.M., Hoang, A.Q., Le, S.T., Minh, T.B. and Kannan, K. (2019) A Review of Contamination Status, Emission Sources, and Human Exposure to Volatile Methyl Siloxanes (VMSS) in Indoor Environments. Science of The Total Environment , 691, 584-594. https://doi.org/10.1016/j.scitotenv.2019.07.168
Mojsiewicz-Pieńkowska, K., Szymkowska, K., Glamowska, D., Cal, K., Jankowski, Z., Jamrógiewicz, M., Bartoszewska, R. and Bartoszewska, S. (2015) Consequences of Overcoming the Skin Barrier by Low Molecular Cyclic and Linear Methyl Siloxanes (Silicones). Journal of Clinical & Experimental Dermatology Research , 6, Article 60.
Yang, Q. and Guy, R.H. (2014) Characterisation of Skin Barrier Function Using Bioengineering and Biophysical Techniques. Pharmaceutical Research , 32, 445-457. https://doi.org/10.1007/s11095-014-1473-5
Mojsiewicz-Pieńkowska, K., Stachowska, E., Krenczkowska, D., Bazar, D. and Meijer, F. (2020) Evidence of Skin Barrier Damage by Cyclic Siloxanes (Silicones)—Using Digital Holographic Microscopy. International Journal of Molecular Sciences , 21, Article 6375. https://doi.org/10.3390/ijms21176375
Wang, D., Norwood, W., Alaee, M., Byer, J.D. and Brimble, S. (2013) Review of Recent Advances in Research on the Toxicity, Detection, Occurrence and Fate of Cyclic Volatile Methyl Siloxanes in the Environment. Chemosphere , 93, 711-725. https://doi.org/10.1016/j.chemosphere.2012.10.041
Lorbach, A., Reus, C., Bolte, M., Lerner, H. and Wagner, M. (2010) Improved Synthesis of 1,2‐Bis(Trimethylsilyl)Benzenes Using Rieke‐Magnesium or the Entrainment Method. Advanced Synthesis & Catalysis , 352, 3443-3449. https://doi.org/10.1002/adsc.201000560
Lei, Y.D., Wania, F. and Mathers, D. (2010) Temperature-Dependent Vapor Pressure of Selected Cyclic and Linear Polydimethylsiloxane Oligomers. Journal of Chemical & Engineering Data , 55, 5868-5873. https://doi.org/10.1021/je100835n
Pavan, C., Delle Piane, M., Gullo, M., Filippi, F., Fubini, B., Hoet, P., et al. (2019) The Puzzling Issue of Silica Toxicity: Are Silanols Bridging the Gaps between Surface States and Pathogenicity? Particle and Fibre Toxicology , 16, Article No. 32. https://doi.org/10.1186/s12989-019-0315-3
Sidhu, M.S. (2024) High Performance Solid-State Electrolyte and Battery Based on Cyanoethylated Polymers and Additives and Manufacturing Method Thereof. US Pat 20240387868A1.
Bhaskar, M.K., Bhuyan, J., Kim, Y.J., Cervantes, C.L., Xie, X., Mendoza-Gutierrez, J.C., Dangerfield, A., Haverty, M., Saly, M. and Kashefi, K. (2024) Methods of Forming Interconnect Structures US Pat.20240297073A1.
Selvakumar, J., Sathiyamoorthy, D. and Nagaraja, K.S. (2011) Role of Vapor Pressure of 1,4-Bis(trimethylsilyl)benzene in Developing Silicon Carbide Thin Film Using a Plasma-Assisted Liquid Injection Chemical Vapor Deposition Process. Surface and Coatings Technology , 205, 3493-3498. https://doi.org/10.1016/j.surfcoat.2010.12.020
Evelyn (2024) Are Silanes Flammable? Chemicalindustrynews. https://www.chemicalindustrynews.com/silanes-flammable.html
PubChem (2025) 1,4-Bis(Trimethylsilyl)Benzene (Compound) 7. Safety and Hazards. https://pubchem.ncbi.nlm.nih.gov/compound/1_4-Bis_trimethylsilyl_benzene#section=Safety-and-Hazards
PubChem (2025) 1,2-Bis(Trimethylsilyl)Benzene (Compound) 7. Safety and Hazards. https://pubchem.ncbi.nlm.nih.gov/compound/1_2-Bis_trimethylsilyl_benzene#section=Safety-and-Hazards
PubChem (2025) 1,2-Diphenyltetramethyldisilane (Compound) 7. Safety and Haz-ards. https://pubchem.ncbi.nlm.nih.gov/compound/1_2-Diphenyltetramethyldisilane#section=Safety-and-Hazards
Keskin, D., Ceyhan, N. and Ugur, A. (2012) Chemical Composition and in Vitro Antimicrobial Activity of Walnut ( Juglans regia L.) Green Husks and Leaves from West Anatolia. Journal of Pure & Applied Microbiology , 6, 583-588.
Ma, Q.Z., Wu¨, F.J., Zhang, D.Q. and Peng, W.X. (2010) Analysis on Function Components and Biohealth Function of Phyllostachys heterocycla Biomass. Advanced Materials Research , 129, 55-59. https://doi.org/10.4028/www.scientific.net/amr.129-131.55
Omojokun, O.S., Famurewa, A.J., Jaiyeoba, O.A., Oboh, G. and Agbebi, O.J. (2019) Alkaloid Extracts from Bitter Leaf ( Vernonia amygdalina ) and Black Nightshade ( Solanum nigrum ) Inhibit Phosphodiesterase‐5, Arginase Activities and Oxidative Stress in Rats Penile Tissue. Journal of Food Biochemistry , 43, e12889. https://doi.org/10.1111/jfbc.12889
Tyagi, R. and Sharma, V. (2014) A Comparison of Volatile Compounds in Different Genotypes of Sesamum Indicum L. by GC-MS. International Journal of Pharmaceutical Sciences and Research , 5, 249-258.
Gurusamy, M., Pandiselvi, P., Sobana, N. and Murugan, M. (2019) GC-MS Analysis of Chemical Constituents in the Methanolic Tuber Extract of Momordica Cymbalaria Hook. F. International Research Journal of Pharmacy , 10, 135-140. https://doi.org/10.7897/2230-8407.100122
Ragupathi, V., Stephen, A., Arivoli, D. and Kumaresan, S. (2018) Antibacterial Activity, in Vitro Antioxidant Potential and GC-MS Characterization of Methanolic ex-Tract of Gymnopilus Junonius, a Wild Mushroom from Southern Western Ghats, In-dia. European Journal of Biomedical and Pharmaceutical Sciences , 5, 650-657.
Cao, H., Jiao, Y., Yin, N., Li, Y., Ling, J., Mao, Z., et al. (2019) Analysis of the Activity and Biological Control Efficacy of the Bacillus Subtilis Strain Bs-1 against Meloidogyne Incognita. Crop Protection , 122, 125-135. https://doi.org/10.1016/j.cropro.2019.04.021
Prakash, A. and Suneetha, V. (2014) Punica granatum (Pomegranate) Rind Extract as a Potent Substitute for L-Ascorbic Acid with Respect to the Antioxidant Activity. Research Journal of Pharmaceutical , Biological and Chemical Sciences , 5, 597-603.
Momin, K. and Thomas, S.C. (2020) GC-MS Analysis of Antioxidant Compounds Present in Different Extracts of an Endemic Plant Dillenia scabrella (Dilleniacae) Leaves and Barks, International Journal of Pharmaceutical Sciences and Research , 11, 2262-2273.
Thenmozhi, K., Karthika, K., Manian, S. and Paulsamy, S. (2014) Studies on in Vitro Antioxidant Potential of Pod and Seed Parts of Bauhinia Malabarica roxb . (Caesalpiniaceae). Asian Journal of Biomedical and Pharmaceutical Sciences , 4, 48-56. https://doi.org/10.15272/ajbps.v4i32.505
Falowo, A.B., Muchenje, V., Hugo, A., Aiyegoro, O.A. and Fayemi, P.O. (2016) Antioxidant Activities of Moringa oleifera L. and Bidens pilosa L. Leaf Extracts and Their Effects on Oxidative Stability of Ground Raw Beef during Refrigeration Storage. CyTA - Journal of Food , 15, 249-256. https://doi.org/10.1080/19476337.2016.1243587
Li, N.-C., Ge, S.-B., Li, D.-L., Wang, L.-S., Qin, D.-C. and Peng, W.-C. (2015) Mo-lecular Characteristics of Three Extractives of Cinnamomum Camphora Leaves. Journal of Pure & Applied Microbiology , 9, 2699-2703.
Jeevanantham, K. and Hussain, A.Z. (2018) Phytochemical Screening and GC-MS Analysis of Andrographis Echiodes Leaves Extract. European Journal of Biomedical and Pharmaceutical Sciences , 5, 889-893.
Hussain, A.Z. and Kumaresan, S. (2014) GC-MS Analysis and Antimicrobial Activity of Abrus precatorius L. Journal of Microbiology and Biotechnology Research , 4, 24-30.
Azzam, M.M., Qaid, M.M., Al-Mufarrej, S.I., Al-Garadi, M.A., Albaadani, H.H. and Alhidary, I.A. (2020) Rumex Nervosus Leaves Meal Improves Body Weight Gain, Duodenal Morphology, Serum Thyroid Hormones, and Cecal Microflora of Broiler Chickens during the Starter Period. Poultry Science , 99, 5572-5581. https://doi.org/10.1016/j.psj.2020.08.023
Penduka, D., Basson, K.A., Mayekiso, B., Buwa, L. and Okoh, I.A. (2014) Gas Chromatography-Mass Spectrometry Characterisation of the Anti-Listeria Components of Garcinia Kola Seeds. Applied Biochemistry and Microbiology , 50, 297-305. https://doi.org/10.1134/s0003683814030119
Dorcas, O.M., Usman, Z.F., Oludoyin, A.A. and Clement, O.A. (2017) Essential Oil Compositions of Leaf, Stem-Bark, Stem, Root, Flower, and Fruit with Seed of Blighia Unijugata Baker (Sapindaceae). African Journal of Pharmacy and Pharmacology , 11, 108-119. https://doi.org/10.5897/ajpp2016.4721
Liu, P.H., Chen, D.L., Xu, C., Sun, Y.W., Zhou, F.F. and Xu, L. (2013) GC-MS Analysis of Liposoluble Components in Leaf and Branch of Drypetes Hainanensis. Lishizhen Medicine and Materia Medica Research , 24, 1129-1131.
Zhang, J., Zhao, Y., Duan, X. and Liang, X. (2019) Effects of Phosphorus Stress on Root Exudates of Floating Plant Pistia Stratiotes in Plateau Wetlands. Environmental Chemistry , 38, 385-394.
Beatrice, F.F.S. and Santhi, G. (2017) In Vitro efficacy of Piper Betle Leaf Extract against Rhizoctonia Solani Causing Damping off Disease of Chilli. International. Journal for Pharmaceutical Research Scholars ( IJPRS ), 6, 109-115.
He, J., Wu, X., Zhou, Y. and Chen, J. (2021) Effects of Different Preheat Treatments on Volatile Compounds of Camellia ( Camellia oleifera abel .) Seed Oil and Formation Mechanism of Key Aroma Compounds. Journal of Food Biochemistry , 45, e13649. https://doi.org/10.1111/jfbc.13649
Hifnawy, M.S., Salam, R.M.A., Rabeh, M.A. and Aboseada, M.A. (2013) Glucosin-olates, Glycosidically Bound Volatiles and Antimicrobial Activity of Brassica oleraceae var. Botrytis, (Soultany Cultivar). Journal of Biology , Agriculture and Healthcare , 3, 66-81.
Yu, S.J., Zhang, Y. and Fan, M.Z. (2011) Analysis of Volatile Compounds of Mycelia of hirsutella Sinensis , the Anamorph of Ophiocordyceps sinensis . Applied Mechanics and Materials , 140, 253-257. https://doi.org/10.4028/www.scientific.net/amm.140.253
Onakurhefe, P., Achuba, F. and George, B. (2019) Phytochemical Analysis and Chemical Characterization of Extracts and Blended Mixture of Palm Oil Leaf. Tropical Journal of Natural Product Research , 3, 282-297. https://doi.org/10.26538/tjnpr/v3i9.2
Jiang, Z., Guo, X., Zhang, K., Sekaran, G., Cao, B., Zhao, Q., et al. (2019) The Essential Oils and Eucalyptol from Artemisia Vulgaris L. Prevent Acetaminophen-Induced Liver Injury by Activating NRF2-Keap1 and Enhancing APAP Clearance through Non-Toxic Metabolic Pathway. Frontiers in Pharmacology , 10, Article No. 782. https://doi.org/10.3389/fphar.2019.00782
Rajaofera, M.J.N., Wang, Y., Dahar, G.Y., Jin, P., Fan, L., Xu, L., et al. (2019) Volatile Organic Compounds of Bacillus Atrophaeus HAB-5 Inhibit the Growth of Colletotrichum Gloeosporioides. Pesticide Biochemistry and Physiology , 156, 170-176. https://doi.org/10.1016/j.pestbp.2019.02.019
Prasher, I.B. and Dhanda, R.K. (2017) GC-MS Analysis of Secondary Metabolites of Endophytic Nigrospora sphaerica Isolated from Parthenium Hysterophorus. Inter-national Journal of Pharmaceutical Sciences Review and Research , 44, 217-223.
Singh, S.K. and Patra, A. (2019) Evaluation of Adaptogenic Potential of Polygonatum Cirrhifolium (Wall.) Royle: In Vitro , in Vivo and in Silico Studies. South African Journal of Botany , 121, 159-177. https://doi.org/10.1016/j.sajb.2018.10.022
Fan, Y.M., Fang, X.H., Lu, H.N., Tao, W.Q., Gao, S.Z. and Chen, Y.H. (2008) Ex-traction and Analysis of Lipophilic Components from Brainea insignis (Hook.) J. Sm. by GC-MS. Chemistry and Industry of Forest Products , 28, 110-114.
Phuong, T.V., Van Ha Lam, P. and Diep, C.N. (2018) Bioactive Compounds from Marine Streptomyces sp. by Gas Chromatography-Mass Spectrometry. The Pharmaceutical and Chemical Journal , 5, 196-203.
Wu, X.Q., Lu, H., Jin, J.L., Xie, P., Wang, S.S. and Yang, S.J. (2014) GC-MS Analysis of Volatile Oil from Rosa Sterilis by Supercritical CO 2 Extraction. Chinese Journal of Experimental Traditional Medicine formulae , 20, 98-101.
Zhou, Y., Chen, L., Xu, Y., Wang, Y., Wang, S. and Ge, X. (2018) The CFAOS and CFAOC Genes Related to Flower Fragrance Biosynthesis in Cymbidium Faberi Could Confer Drought Tolerance to Transgenic Tomatoes. International Journal of Agriculture and Biology , 20, 883-892.
Abdul Jaleel, A.H., Mahdi, J.F., Farooqui, M. and Shaikh, Y.H. (2019) Gas Chromatography-Mass Spectroscopic Analysis of Black Plum Seed ( Syzygium cumini ) Extract in Hexane. Asian Journal of Pharmaceutical and Clinical Research , 12, 219-222. https://doi.org/10.22159/ajpcr.2019.v12i2.29396
Moustafa, F.M., Mahmoud Alamri, S.A., Taha, T.H. and Sulaiman, A.A. (2013) In Vitro Antifungal Activity of Argemone Ochroleuca Sweet Latex against Some Patho-genic Fungi. African Journal of Biotechnology , 12, 1132-1137. https://www.ajol.info/index.php/ajb/article/view/128171
Suneetha, D.D., Amballa, H., Pranathi, S., Gundeti, R. and Chandra, S.S. (2017) GC-MS Analysis of Phytochemical Constituents and Screening for Antibacterial Activity of the Methanol Leaf Extract of Amaranthus viridis Linn. against Human Pathogenic Bacteria. Indo American Journal of Pharmaceutical Research , 7, 7773-7779.
Zhao, X. and Li, K. (2016) Composition of Lycium Ruthenicum and Its Antioxidation in Vitro . Journal of Hunan Agricultural University , 42, 193-196.
Chaudhary, R. and Tripathi, A. (2015) Isolation and Identification of Bioactive Compounds from Irpex Lacteus wild Fleshy Fungi. Journal of Pharmaceutical Sciences and Research , 7, 424-434.
Ghahari, S., Alinezhad, H., Nematzadeh, G.A. and Ghahari, S. (2015) Phytochemical Screening and Antimicrobial Activities of the Constituents Isolated from Koelreuteria paniculata Leaves. Natural Product Research , 29, 1865-1869. https://doi.org/10.1080/14786419.2015.1005617
Kaur, N., Kishore, L. and Singh, R. (2017) Therapeutic Effect of Linum Usitatissimum L. in STZ-Nicotinamide Induced Diabetic Nephropathy via Inhibition of Age’s and Oxidative Stress. Journal of Food Science and Technology , 54, 408-421. https://doi.org/10.1007/s13197-016-2477-4
Hassan, S.W. (2016) Antibacterial, Anticoagulant and Anti-Inflammatory Activities of Marine Bacillus Cereus S1. Journal of Pure and Applied Microbiology , 10, 2593-2606. https://doi.org/10.22207/jpam.10.4.15
Kopytko, Y.F. and Tsibulko, N.S. (2019) Volatile Components of Homeopathic Mother Tinctures of Moschus Moschiferus. Problems Of Biological , Medical and Pharmaceutical Chemistry , 22, 31-36. https://doi.org/10.29296/25877313-2019-03-05
Palakkal, L. Zeinul Hukuman, N.H. and Mullapally, J. (2019) Corrosion Inhibition Properties of the Extracts of Hemigraphis colorata against Mild Steel in Acidic Media. Research Journal of Chemistry and Environment , 23, 52-61.
Wang, Y., Kaisa, S., Li, J., Zhu, G., Song, T. and Liu, L. (2009) Analysis of Components in Root Exudates of Fritillaria pallidiflora Schvek seedlings at Different Ages by Gas Chromatgraphy-Mass Spectrometry. Acta Botanica Boreali - Occidentalia Sinica , 29, 384-389.
Mostafa, AA., Al-Rahmah, A.N. and Abdel-Megeed. A. (2011) Evaluation of Some Plant Extracts for Their Antifungal and Antiaflatoxigenic Activities. Journal of Medicinal Plant Research , 5, 4231-4238. https://academicjournals.org/journal/JMPR/article-full-text-pdf/6EFB85B23552.pdf
Amster Regin Lawrence, R. and John Peter Paul, J. (2019) GC-MS Analysis of Ethanolic Extract of Pteridium aquilinum (L.) Kuhn: An Important Fern. Journal of Drug Delivery and Therapeutics , 9, 285-287. https://doi.org/10.22270/jddt.v9i4.3044
Hosseinihashemi, S.K., Anooshei, H., Aghajani, H. and Salem, M.Z.M. (2015) Chemical Composition and Antioxidant Activity of Extracts from the Inner Bark of Berberis Vulgaris Stem. BioResources , 10, 7958-7969. https://doi.org/10.15376/biores.10.4.7958-7969
Yang, H., Wu, D., Guo, D. and Lu, J. (2018) The Aromatic Volatile Composition of Lonicera edulis wines Produced with Three Different Strains of Saccharomyces cere visiae . Journal of the Institute of Brewing , 125, 100-109. https://doi.org/10.1002/jib.542
Pohlman, M., Von Deyn, W., Kaiser, F., Baumann, E., Rack, M., Douglas, D. Cul-bertson, D.L. and Van Tuyl Cotter, H. (2007) (BASF SE) EP2 003 975B1. 3-Amino-1,2-Benzisothiazole Compounds for Combating Animal Pest. (March 22,)
Greene, T.W. and Peter, G.M.W. (2014) Greene’s Protective Groups in Organic Synthesis. 5th Edition, Wiley.
Feng, X., Pan, L., Wang, Q., Liao, Z., Wang, X., Zhang, X., et al. (2020) Nutritional and Physicochemical Characteristics of Purple Sweet Corn Juice before and after Boiling. PLOS ONE , 15, e0233094. https://doi.org/10.1371/journal.pone.0233094
Zakaria, Z.A., Kamisan, F.H., Omar, M.H., Mahmood, N.D., Othman, F., Abdul Hamid, S.S., et al. (2017) Methanol Extract of Dicranopteris Linearis L. Leaves Impedes Acetaminophen-Induced Liver Intoxication Partly by Enhancing the Endogenous Antioxidant System. BMC Complementary and Alternative Medicine , 17, Article No. 271. https://doi.org/10.1186/s12906-017-1781-5
Ali, S., Sudha, K.G., Karunakaran, G., Kowsalya, M., Kolesnikov, E. and Rajeshkumar, M.P. (2021) Green Synthesis of Stable Antioxidant, Anticancer and Photocatalytic Activity of Zinc Oxide Nanorods from Leea Asiatica Leaf. Journal of Biotechnology , 329, 65-79. https://doi.org/10.1016/j.jbiotec.2021.01.022
Uddin, M.Z., Paul, A., Rakib, A., Sami, S.A., Mahmud, S., Rana, M.S., et al. (2021) Chemical Profiles and Pharmacological Properties with in Silico Studies on Elatostema papillosum Wedd. Molecules , 26, Article 809. https://doi.org/10.3390/molecules26040809
Babatunde, D.E., Otusemade, G.O., Efeovbokhan, V.E., Ojewumi, M.E., Bolade, O.P. and Owoeye, T.F. (2019) Chemical Composition of Steam and Solvent Crude Oil Extracts from Azadirachta Indica Leaves. Chemical Data Collections , 20, Article 100208. https://doi.org/10.1016/j.cdc.2019.100208
Pavithra, K., Uddandrao, V.V.S., Mathavan, S., Gobeeswaran, N., Vadivukkarasi, S. and Ganapathy, S. (2020) Identification of Bioactive Factors from Abrus Precatorius by GC–MS, NMR and Evaluation of Its Antioxidant Activity. Materials Today : Proceedings , 26, 3518-3521. https://doi.org/10.1016/j.matpr.2019.05.417
Varghese, R.E., D, R., Sivaraj, S., Gayathri, D. and Kannayiram, G. (2017) Anti-Inflammatory Activity of Syzygium Aromaticum Silver Nanoparticles: In Vitro and i n Silico Study. Asian Journal of Pharmaceutical and Clinical Research , 10, 370-373. https://doi.org/10.22159/ajpcr.2017.v10i11.19904
P, S., Mary, R. and R, R. (2018) Gas Chromatography and Mass Spectrometry of the Ethanolic Extract of Nest Material of Mud Dauber Wasp, Sceliphron Caementarium. Asian Journal of Pharmaceutical and Clinical Research , 11, 234-236. https://doi.org/10.22159/ajpcr.2018.v11i7.23611
Srivats, S., Ramakrishnan, G., Paddikkala, J. and Kurian, G.A. (2012) An in Vivo and in Vitro Analysis of Free Radical Scavenging Potential Possessed by Desmodium gangeticum Chloroform Root Extract: Interpretation by GSMS Pakistan. Journal of Pharmaceutical Sciences , 25, 27-34.
Konappa, N., Udayashankar, A.C., Krishnamurthy, S., Pradeep, C.K., Chowdappa, S. and Jogaiah, S. (2020) GC-MS Analysis of Phytoconstituents from Amomum Nilgiricum and Molecular Docking Interactions of Bioactive Serverogenin Acetate with Target Proteins. Scientific Reports , 10, Article No. 16438. https://doi.org/10.1038/s41598-020-73442-0
Kodhaiyolii, S., Mohanraj, S., Rengasamy, M. and Pugalenthi, V. (2019) Phytofabrication of Bimetallic Co-Ni Nanoparticles Using Boerhavia diffusa Leaf Extract: Analysis of Phytocompounds and Application for Simultaneous Production of Biohydrogen and Bioethanol. Materials Research Express , 6, Article 095051. https://doi.org/10.1088/2053-1591/ab2ea8
Devi, R.B., Barkath, T.N., Vijayaraghavan, P. and Rejiniemon, T.S. (2018) GC-MS Analysis of Phytochemical from Psidium Guajava Linn. Leaf Extract and Their in -Vitro Anti-Microbial Activities. International Journal of Pharmacy and Biological Sciences , 8, 583-89.
Behera, S.S., Panda, S.H., Panda, S.K. and Kumar, A. (2019) Biochemical Analysis of Elephant Foot Yam ( Amorphophallus paeoniifolius ) Lacto-Pickle with Probiotic Lactobacillus Plantarum. Annals of Microbiology , 69, 577-590. https://doi.org/10.1007/s13213-019-01449-8
Assefa Sisay, M., Ele Yaya, E. and Mammo, W. (2022) Essential Oil and Smoke Components of Carissa Spinarum. Bulletin of the Chemical Society of Ethiopia , 36, 641-649. https://doi.org/10.4314/bcse.v36i3.13
Hettiarachchi, D.S., Locher, C. and Longmore, R.B. (2011) Antibacterial Compounds from the Root of the Indigenous Australian Medicinal Plant Carissa lanceolata r.br. Natural Product Research , 25, 1388-1395. https://doi.org/10.1080/14786410802267668
Varaprath, S., McMahon, J.M. and Plotzke, K.P. (2003) Metabolites of Hexamethyldisiloxane and Decamethylcyclopentasiloxane in Fischer 344 Rat Urine—A Comparison of a Linear and a Cyclic Siloxane. Drug Metabolism and Disposition , 31, 206-214. https://doi.org/10.1124/dmd.31.2.206
Varaprath, S., Salyers, K.L., Plotzke, K.P. and Nanavati, S. (1999) Identification of Metabolites of Octamethylcyclotetrasiloxane (D4) in Rat Urine. Drug Metabolism and Disposition , 27, 1267-1273. https://doi.org/10.1016/s0090-9556(24)14928-8
Blanck, H., Holmgren, K., Landner, L., Norin, H., Notini, M., Rosemarin, A., et al. (1989) Advanced Hazard Assessment of Arsenic in the Swedish Environment. In: Landner, L., Ed., Springer Series on Environmental Management , Springer, 256-328. https://doi.org/10.1007/978-3-642-61334-0_11
Chong, C.M. and Huebschmann, H.-J. (2020) Metabolite Profiling by Automated Methoximation and Silylation, Presented at Online-Metabolomics 2020. https://www.palsystem.com/fileadmin/user_upload/content_hub/Files/Posters/Metabolite_Profiling_by_Automated_Methoximation_and_Silylation.pdf
Cox, J.E., Thummel, C.S. and Tennessen, J.M. (2017) Metabolomic Studies in Drosophila . Genetics , 206, 1169-1185. https://doi.org/10.1534/genetics.117.200014
Moser, A. (2010) My Column is bleeding. ACD Labs. https://www.acdlabs.com/blog/my-column-is-bleeding/#:~:text=The%20ion%20peaks%20at%20m%2Fz%2073%2C%20133%2C%20193%2C,is%20a%20result%20of%20the%20formation%20of%20hexamethylcyclotrisiloxane
English, C. (2022) Understanding the Origins of Siloxane Ghost Peaks in Gas Chromatography. Column , 18, 10-15. https://www.chromatographyonline.com/view/understanding-the-origins-of-siloxane-ghost-peaks-in-gas-chromatography
Mojsiewicz-Pieńkowska, K. and Krenczkowska, D. (2018) Evolution of Consciousness of Exposure to Siloxanes—Review of Publications. Chemosphere , 191, 204-217. https://doi.org/10.1016/j.chemosphere.2017.10.045
Ortiz-Ardila, A.E., Restrepo, J.D., Angenent, L.T., Usack, J.G. and Labatut, R.A. (2023) Protecting Human Health and the Environment against Siloxanes: The Role and Effectiveness of Wastewater Treatment Technologies. Critical Reviews in Environmental Science and Technology , 54, 68-94. https://doi.org/10.1080/10643389.2023.2221156
Kim, S. and Zhang, X. (2014) Discovery of False Identification Using Similarity Difference in GC-MS‐Based Metabolomics. Journal of Chemometrics , 29, 80-86. https://doi.org/10.1002/cem.2665
Su, Q., Vera, P. and Nerín, C. (2023) Combination of Structure Databases, in Silico Fragmentation, and MS/MS Libraries for Untargeted Screening of Non-Volatile Migrants from Recycled High-Density Polyethylene Milk Bottles. Analytical Chemistry , 95, 8780-8788. https://doi.org/10.1021/acs.analchem.2c05389
Ma, J.F. and Yamaji, N. (2006) Silicon Uptake and Accumulation in Higher Plants. Trends in Plant Science , 11, 392-397. https://doi.org/10.1016/j.tplants.2006.06.007
Epstein, E. (1999) Silicon. Annual Review of Plant Physiology and Plant Molecular Biology , 50, 641-664. https://doi.org/10.1146/annurev.arplant.50.1.641
Ma, J.F. and Yamaji, N. (2008) Functions and Transport of Silicon in Plants. Cellular and Molecular Life Sciences , 65, 3049-3057. https://doi.org/10.1007/s00018-008-7580-x
Hildebrand, M., Volcani, B.E., Gassmann, W. and Schroeder, J.I. (1997) A Gene Family of Silicon Transporters. Nature , 385, 688-689. https://doi.org/10.1038/385688b0
Mitani, N., Yamaji, N., Ago, Y., Iwasaki, K. and Ma, J.F. (2011) Isolation and Functional Characterization of an Influx Silicon Transporter in Two Pumpkin Cultivars Contrasting in Silicon Accumulation. The Plant Journal , 66, 231-240. https://doi.org/10.1111/j.1365-313x.2011.04483.x
Montpetit, J., Vivancos, J., Mitani-Ueno, N., Yamaji, N., Rémus-Borel, W., Belzile, F., et al. (2012) Cloning, Functional Characterization and Heterologous Expression of Talsi1, a Wheat Silicon Transporter Gene. Plant Molecular Biology , 79, 35-46. https://doi.org/10.1007/s11103-012-9892-3
Grégoire, C., Rémus‐Borel, W., Vivancos, J., Labbé, C., Belzile, F. and Bélanger, R.R. (2012) Discovery of a Multigene Family of Aquaporin Silicon Transporters in the Primitive Plant equisetum Arvense . The Plant Journal , 72, 320-330. https://doi.org/10.1111/j.1365-313x.2012.05082.x
Fleming, B.A. (1986) Kinetics of Reaction between Silicic Acid and Amorphous Silica Surfaces in NACL Solutions. Journal of Colloid and Interface Science , 110, 40-64. https://doi.org/10.1016/0021-9797(86)90351-6
Currie, H.A. and Perry, C.C. (2007) Silica in Plants: Biological, Biochemical and Chemical Studies. Annals of Botany , 100, 1383-1389. https://doi.org/10.1093/aob/mcm247
Imtiaz, M., Rizwan, M.S., Mushtaq, M.A., Ashraf, M., Shahzad, S.M., Yousaf, B., et al. (2016) Silicon Occurrence, Uptake, Transport and Mechanisms of Heavy Metals, Minerals and Salinity Enhanced Tolerance in Plants with Future Prospects: A Review. Journal of Environmental Management , 183, 521-529. https://doi.org/10.1016/j.jenvman.2016.09.009
Chérif, M., Benhamou, N., Menzies, J.G. and Bélanger, R.R. (1992) Silicon Induced Resistance in Cucumber Plants against Pythium Ultimum. Physiological and Molecular Plant Pathology , 41, 411-425. https://doi.org/10.1016/0885-5765(92)90053-x
Inanaga, S., Okasaka, A. and Tanaka, S. (1995) Does Silicon Exist in Association with Organic Compounds in Rice Plant? Soil Science and Plant Nutrition , 41, 111-117. https://doi.org/10.1080/00380768.1995.10419564
Yang, Y., Liang, Y., Lou, Y. and Sun, W. (2003) Influences of Silicon on Perox Idase, Superoxide Dismutase Activity and Lignin Content in Leaves of Wheat Tritium aestivum L. and Its Relation to Resistance to Powdery Mildew. Scientia Agricultura Sinica , 36, 813-817.
Liang, Y.C., Sun, W.C., Si, J. and Römheld, V. (2005) Effects of Foliar‐ and Root‐applied Silicon on the Enhancement of Induced Resistance to Powdery Mildew in cucumis Sativus . Plant Pathology , 54, 678-685. https://doi.org/10.1111/j.1365-3059.2005.01246.x
Cai, K., Gao, D., Luo, S., Zeng, R., Yang, J. and Zhu, X. (2008) Physiological and Cytological Mechanisms of Silicon‐Induced Resistance in Rice against Blast Disease. Physiologia Plantarum , 134, 324-333. https://doi.org/10.1111/j.1399-3054.2008.01140.x
Hayasaka, T., Fujii, H. and Ishiguro, K. (2008) The Role of Silicon in Preventing Appressorial Penetration by the Rice Blast Fungus. Phytopathology® , 98, 1038-1044. https://doi.org/10.1094/phyto-98-9-1038
Dhiman, P., Rajora, N., Bhardwaj, S., Sudhakaran, S.S., Kumar, A., Raturi, G., et al. (2021) Fascinating Role of Silicon to Combat Salinity Stress in Plants: An Updated Overview. Plant Physiology and Biochemistry , 162, 110-123. https://doi.org/10.1016/j.plaphy.2021.02.023
Kayrouz, C.M. and Seyedsayamdost, M.R. (2024) Enzymatic Strategies for Selenium Incorporation into Biological Molecules. Current Opinion in Chemical Biology , 81, Article 102495. https://doi.org/10.1016/j.cbpa.2024.102495
Hu, J., Wang, Z., Zhang, L., Peng, J., Huang, T., Yang, X., et al. (2022) Seleno-Amino Acids in Vegetables: A Review of Their Forms and Metabolism. Frontiers in Plant Science , 13, Article ID: 804368. https://doi.org/10.3389/fpls.2022.804368
Nadar, V.S., Chen, J., Dheeman, D.S., Galván, A.E., Yoshinaga-Sakurai, K., Kandavelu, P., et al. (2019) Arsinothricin, an Arsenic-Containing Non-Proteinogenic Amino Acid Analog of Glutamate, Is a Broad-Spectrum Antibiotic. Communications Biology , 2, Article No. 131. https://doi.org/10.1038/s42003-019-0365-y
Kuramata, M., Sakakibara, F., Kataoka, R., Yamazaki, K., Baba, K., Ishizaka, M., et al. (2016) Arsinothricin, a Novel Organoarsenic Species Produced by a Rice Rhizosphere Bacterium. Environmental Chemistry , 13, Article 723. https://doi.org/10.1071/en14247
Ma, Q.A., Bo, M.O., Chen, H., Zhang, D. and Furuta, A. (2015) Molecular Characteristics of Anti-Inflammatory Activities in Wood Extractives of Quercus Aliena. Journal of Pure & Applied Microbiology , 9, 2691-2697.
Sani, H.L., Malami, I., Hassan, S.W., Alhassan, A.M., Halilu, M.E. and Muhammad, A. (2015) Effects of Standardized Stem Bark Extract of Mangifera Indica L. in Wistar Rats with 2,4-Dinitrophenylhydrazine-Induced Haemolytic Anaemia. Pharmacognosy Journal , 7, 89-96. https://doi.org/10.5530/pj.2015.2.2
Demeshko, O.V., Krivoruchko, E.V., Samoilova, V.A. and Romanova, S.V. (2018) Gas Chromatography-Mass Spectrometry Study of the Root and Herb of Smallanthus Sonchifolius. Česká a Slovenská Farmacie , 67, 160-163. https://doi.org/10.36290/csf.2018.023
Meenakshi, V.K., Gomathy, S., Senthamarai, S., Paripooranaselvi, M. and Chamundeswari. K.P. (2012) GC-MS Determination of the Bioactive Components of Microcosmus Exasperates Heller, 1878. Journal of Current Chemical and Pharmaceutical Sciences , 2, 271-276.
Syad, A.N., Shunmugiah, K.P. and Kasi, P.D. (2013) Antioxidant and Anti-Cholinesterase Activity of Sargassum wightii . Pharmaceutical Biology , 51, 1401-1410. https://doi.org/10.3109/13880209.2013.793721
Ramakrishnan, S. and Venkataraman, R. (2011) Screening of Antioxidant Activity, Total Phenolics and Gas Chromatography-Mass Spectrophotometer (GC-MS) Study of Ethanolic Extract of Aporosa Lindleyana Baill. African Journal of Biochemistry Research , 5, 360-364. https://doi.org/10.5897/ajbr11.081
Gong, J., Zhang, Q., Peng, C., Fan, J. and Dong, W. (2012) Curie-Point Pyrolysis-Gas Chromatography-Mass Spectroscopic Analysis of Theabrownins from Fermented Zijuan Tea. Journal of Analytical and Applied Pyrolysis , 97, 171-180. https://doi.org/10.1016/j.jaap.2012.06.004