The Relationship between Cutaneous Wounds Made on Obese Mice or Those with Decreased Body Weight and Serum Leptin Level — Oak Academic Publishing
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The Relationship between Cutaneous Wounds Made on Obese Mice or Those with Decreased Body Weight and Serum Leptin Level
Department of Clinical Nursing, Graduate Course of Nursing Science, Division of Health Sciences, Graduate School of Medical Sciences, Kanazawa University, Kanazawa, Japan
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Department of Clinical Nursing, Graduate Course of Nursing Science, Division of Health Sciences, Graduate School of Medical Sciences, Kanazawa University, Kanazawa, Japan
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Faculty of Health Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kan-azawa, Japan
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Division of Clinical Radiology Service, Kyoto University Hospital, Kyoto, Japan
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Department of Clinical Nursing, Graduate Course of Nursing Science, Division of Health Sciences, Graduate School of Medical Sciences, Kanazawa University, Kanazawa, Japan
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Department of Clinical Nursing, Graduate Course of Nursing Science, Division of Health Sciences, Graduate School of Medical Sciences, Kanazawa University, Kanazawa, Japan
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Faculty of Health Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kan-azawa, Japan
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Wellness Promotion Science Center, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa Uni-versity, Kanazawa, Japan
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Faculty of Health Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kan-azawa, Japan
1 Department of Clinical Nursing, Graduate Course of Nursing Science, Division of Health Sciences, Graduate School of Medical Sciences, Kanazawa University, Kanazawa, Japan
2 Department of Clinical Nursing, Graduate Course of Nursing Science, Division of Health Sciences, Graduate School of Medical Sciences, Kanazawa University, Kanazawa, Japan
3 Faculty of Health Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kan-azawa, Japan
4 Division of Clinical Radiology Service, Kyoto University Hospital, Kyoto, Japan
5 Department of Clinical Nursing, Graduate Course of Nursing Science, Division of Health Sciences, Graduate School of Medical Sciences, Kanazawa University, Kanazawa, Japan
6 Department of Clinical Nursing, Graduate Course of Nursing Science, Division of Health Sciences, Graduate School of Medical Sciences, Kanazawa University, Kanazawa, Japan
7 Faculty of Health Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kan-azawa, Japan
8 Wellness Promotion Science Center, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa Uni-versity, Kanazawa, Japan
9 Faculty of Health Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kan-azawa, Japan
Purpose: Not all obese people have hyperglycemia. We wondered about the healing progress in obese people without hyperglycemia. The purpose of this study is to observe the cutaneous wound healing process. Methods: Three-week-old male mice were fed high-fat diets (containing 60% fat) in the diet group, and commercial diets in the control group, ad libitum for 15 weeks. Circle-full-thickness cutaneous wounds were made on the dorsal skin of mice. From day 0 to day 15 after wounding, we analyzed wound healing process. We measured the blood concentration of leptin, and observed the distribution of leptin-positive cells in each wound. Results: Mean body weight, the areas of subcutaneous fat and visceral fat, and the weight of epididymal fat in the diet group were significantly greater than those in the control group at 15 weeks after feeding. The diet group did not feed on the diet after wounding; their body weight decreased remarkably to the level of the control group. The ratio of wound area, re-epithelialization, and collagen fibers did not differ between the diet and control groups on each day. The blood concentration of leptin in the diet group was significantly greater than that in the control group before wounding and until day 6 after wounding (day 0, 10 hour and day 1: p < 0.01, day 6: p < 0.05). Conclusion: The results show that the wound healing process is similar between obese and non-obese mice, and that the decrease in the leptin level in the obese mouse to that in the non-obese mouse may depend on the decrease of body weight of obese mouse.
Kanazawa, M., Yoshiike, N., Osaka, T., Numba, Y., Zimmet, P. and Inoue, S. (2002) Criteria and Classification of Obesity in Japan and Asia-Oceania. Asia Pacific Journal of Clinical Nutrition, 11, S732-S737. http://dx.doi.org/10.1046/j.1440-6047.11.s8.19.x
Examination Committee of Criteria for “Obesity Disease” in Japan; Japan Society for the Study of Obesity (2002) New Criteria for “Obesity Disease” in Japan. Circulation Journal, 66, 987-992.
Organization, W.H. (2000) Obesity: Preventing and Managing the Global Epidemic. Report of a WHO Consultation. World Health Organization Technical Report Series, 894, 1-253.
Martyn, J.A.J., Kaneki, M. and Yasuhara, S. (2008) Obesity-Induced Insulin Resistance and Hyperglycemia: Etiologic Factors and Molecular Mechanisms. Anesthesiology, 109, 137-148. http://dx.doi.org/10.1097/ALN.0b013e3181799d45
Chan, J.M., Rimm, E.B., Colditz, G.A., Stampfer, M.J. and Willett, W.C. (1994) Obesity, Fat Distributin and Weight Gain as Risk Factors for Clinical Diabetes in Men. Diabetes Care, 17, 961-969. http://dx.doi.org/10.2337/diacare.17.9.961
Colditz, G.A., Willett, W.C., Rotnitzky, A. and Manson, J.E. (1995) Weight Gain as a Risk Factor for Clinical Diabetes Mellitus in Women. Annals of Internal Medicine, 122, 481-486. http://dx.doi.org/10.7326/0003-4819-122-7-199504010-00001
Yoshiike, N., Nishi, N., Matsushima, S., Itou, C., Ikeda, Y., Kashihara, H., Yoshinaga, H., Ogura, H., Komine, S., Sato, Y., Sato, N., Sasaki, A., Fujioka, S., Oku, J., Amemiya, T., Sakata, T. and Inoue, S. (2000) Relation between Body Mass Index and Risk for Diabetes, Hypertension, Hyperlipidemia—An Epidemiological Study by Multicenter Cooperative Study. Himan Kenkyu, 6, 4-17.
Jerant, A., Bertakis, K.D. and Franks, P. (2015) Body Mass Index and Health Care Utilization in Diabetic and Nondiabetic Individuals. Medical Care, 53, 409-416. http://dx.doi.org/10.1097/MLR.0000000000000343
Guo, S. and Dipietro, L.A. (2010) Factors Affecting Wound Healing. Journal of Dental Research, 89, 219-229. http://dx.doi.org/10.1177/0022034509359125
Goodson, W.H. and Hunt, T.K. (1986) Wound Collagen Accumulation in Obese Hyperglycemic Mice. Diabetes, 35, 491-495. http://dx.doi.org/10.2337/diab.35.4.491
Huang, L., Nakagami, G., Minematsu, T., Kinoshita, A., Sugama, J., Nakatani, T., Sagara, H. and Sanada, H. (2010) Ulceration and Delayed Healing Following Pressure Loading in Hyperglycemic Rats with an Immature Dermal Collagen Fiber Network. Wounds, 22, 237-244.
Nascimento, A.P. and Costa, A.M. (2006) Overweight Induced by High-Fat Diet Delays Rat Cutaneous Wound Healing. British Journal of Nutrition, 96, 1069-1077. http://dx.doi.org/10.1017/BJN20061955
Nascimento, A.P. and Costa, A.M. (2011) Both Obesity-Prone and Obesity-Resistant Rats Present Delayed Cutaneous Wound Healing. British Journal of Nutrition, 106, 603-611. http://dx.doi.org/10.1017/S0007114511000468
Pence, B.D., Dipietro, L.A. and Woods, J.A. (2012) Exercise Speeds Cutaneous Wound Healing in High-Fat Diet-In- duced Obese Mice. Medicine & Science in Sports & Exercise, 44, 1846-1854. http://dx.doi.org/10.1249/MSS.0b013e31825a5971
Cattaneo, L., Gennaro Colonna, V.D., Zoli, M., Müller, E. and Cocchi, D. (1996) Characterization of the Hypothalamo-Pituitary-IGF-I Axis in Rats Made Obese by Overfeeding. Journal of Endocrinology, 148, 347-353. http://dx.doi.org/10.1677/joe.0.1480347
Murad, A., Nath, A.K., Cha, S.T., Demir, E., Flores-Riveros, J. and Sierra-Honigmann, M.R. (2003) Leptin Is an Autocrine/Paracrine Regulator of Wound Healing. The FASEB Journal, 17, 1895-1897.
Halaas, J.L., Gajiwala, K.S., Maffei, M., Cohen, S.L., Chait, B.T., Rabinowitz, D., Lallone, R.L., Burley, S.K. and Friedman, J.M. (1995) Weight-Reducing Effects of the Plasma Protein Encoded by the Obese Gene. Science, 269, 543-546. http://dx.doi.org/10.1126/science.7624777
Zhang, Y., Proenca, R., Maffei, M., Barone, M., Leopold, L. and Friedman, J.M. (1994) Positional Cloning of the Mouse Obese Gene and Its Human Homologue. Nature, 372, 425-432. http://dx.doi.org/10.1038/372425a0
Farooqi, I.S. (2014) Defining the Neural Basis of Appetite and Obesity: From Genes to Behaviour. Clinical Medicine (London), 14, 286-289. http://dx.doi.org/10.7861/clinmedicine.14-3-286
Fine, J.B. and Fine, R.M. (1997) Leptin Levels in Obesity. International Journal of Dermatology, 36, 727-728. http://dx.doi.org/10.1046/j.1365-4362.1997.00335.x
Ronnemaa, T., Karonen, S.L., Rissanen, A., Koskenvuo, M. and Koivisto, V.A. (1997) Relation between Plasma Leptin Levels and Measures of Body Fat in Identical Twins Discordant for Obesity. Annals of Internal Medicine, 126, 26- 31. http://dx.doi.org/10.7326/0003-4819-126-1-199701010-00004
Maffei, M., Halaas, J., Ravussin, E., Pratley, R.E., Lee, G.H., Zhang, Y., Fei, H., Kim, S., Lallone, R., Ranganathan, S., Kern, P.A. and Friedman, J.M. (1995) Leptin Levels in Human and Rodent: Measurement of Plasma Leptin and ob RNA in Obese and Weight-Reduced Subjects. Nature Medicine, 1, 1155-1161. http://dx.doi.org/10.1038/nm1195-1155
Mendoza-Azpur, G., Castro, C., Pena, L., Guerrero, M.E., De La Rosa, M., Mendes, C. and Chambrone, L. (2015) Adiponectin, Leptin and TNF-α Serum Levels in Obese and Normal Weight Peruvian Adults with and without Chronic Periodontitis. Journal of Clinical and Experimental Dentistry, 7, e380-e386. http://dx.doi.org/10.4317/jced.52350
Tadokoro, S., Ide, S., Tokuyama, R., Umeki, H., Tatehara, S., Kataoka, S. and Sato-mura, K. (2015) Leptin Promotes Wound Healing in the Skin. PLoS ONE, 10, e0121242. http://dx.doi.org/10.1371/journal.pone.0121242
Frank, S., Stallmeyer, B., Kampfer, H., Kolb, N. and Pfeilschifter, J. (2000) Leptin Enhances Wound Re-Epithelialization and Constitutes a Direct Function of Leptin in Skin Repair. The Journal of Clinical Investigation, 106, 501-509. http://dx.doi.org/10.1172/JCI9148
Ezure, T. and Amano, S. (2007) Adiponectin and Leptin Up-Regulate Extracellular Matrix Production by Dermal Fibroblasts. BioFactors, 31, 229-236. http://dx.doi.org/10.1002/biof.5520310310
Suganami, T. and Ogawa, Y. (2010) Adipose Tissue Macrophages: Their Role in Adipose Tissue Remodeling. Journal of Leukocyte Biology, 88, 33-39. http://dx.doi.org/10.1189/jlb.0210072
Armstrong, M. (1998) Obesity as an Intrinsic Factor Affecting Wound Healing. Journal of Wound Care, 7, 220-221.
Wilson, J.A. and Clark, J.J. (2004) Obesity: Impediment to Postsurgical Wound Healing. Advances in Skin & Wound Care, 17, 426-435. http://dx.doi.org/10.1097/00129334-200410000-00013
Derzie, A.J., Silvestri, F., Liriano, E. and Benotti, P. (2000) Wound Closure Technique and Acute Wound Complications in Gastric Surgery for Morbid Obesity: A Prospective Randomized Trial. Journal of the American College of Surgeons, 191, 238-243. http://dx.doi.org/10.1016/S1072-7515(00)00353-7