Clinical Evaluation after Introduction of Stem Cell Supernatant Biocell Shot 65 by Electroporation
- 1 Division of Life Science and Engineering, School of Science and Engineering, Tokyo Denki University, Saitama, Japan
- 2 Suzuki Plastic Surgery Clinic, Kyoto, Japan
- 3 Yokogawa Dermatological Clinic, Kochi, Japan
- 4 Pure Code Inc., Osaka, Japan
Abstract
Objectives : The objective of this study is clinical evaluation after introduction of stem cell supernatant Biocell Shot 65 by electroporation. Background: There is a clinical report of psoriasis treatment by umbilical cord blood-derived stem cells, in which there was a beneficial result. These clinical results are the result of cord blood-derived cell growth factors. The umbilical cord blood-derived stem cell culture supernatant contains a high amount of TGF- β , PDGA, etc., and promotes wound healing. In addition, we suppose that the supernatant has the esthetic effect of improving skin condition, thus, we planned to make a clinical evaluation. However, it is difficult to set judgement criteria, and human judgement tends to be subjective. Therefore, in this study, as a new clinical evaluator, we used an AI skin diagnostic device with learning function. Methods: Stem cell culture supernatant Biocell Shot 65 was used as an introduction solution. After it was applied to the full faces of four patients, electroporation with BeBe pinocchio DM-5 SUPER DX Plus promoted infiltration deep in the keratinized layer. The patients were all healthy women in their forties. This procedure was performed every two weeks for three months. Wrinkles, fine lines around eyes, stains, pores, and 4V, which is considered as one diagnostic criteria, were evaluated at baseline and after each procedure with the skin diagnostic device HiMirror-Professional. In this study, macroscopic findings were not examined. Results: In all four patients, 4V did not change remarkably. Patient 1 showed improvement after the procedure in wrinkles, fine lines around eyes, stains, and pores. Patient 2 revealed improvement only in fine lines around eyes, but did not show improvement in other items. Patient 3 improved in wrinkles, stains, and pores only after the second procedure, but did not show improvement in the other procedures. Patient 4 improved in all items except 4V after the fourth procedure. In addition, when the mean values of all the patients were plotted and compared before and after each procedure, there was a trend toward improvements after the fifth procedure. Conclusion: In addition to application of supernatant culture to the skin, introduction of the solution to the skin by electroporation might improve stains, wrinkles, and pores. Our evaluation was performed with a facial diagnostic device three months after the start of the procedure.
- Coutts, M., Soriano, R., Naidoo, R. and Torfi, H. (2017) Umbilical Cord Blood Stem Cell Treatment for a Patient with Psoriatic Arthritis. World Journal of Stem Cells, 9, 235-240. https://doi.org/10.4252/wjsc.v9.i12.235
- Rizk, M., Aziz, J., Shorr, R. and Allan, D.S. (2017) Cell-Based Therapy Using Umbilical Cord Blood for Novel Indications in Regenerative Therapy and Immune Modulation: An Updated Systematic Scoping Review of the Literature. Biology of Blood and Marrow Transplantation, 23, 1607-1613. https://doi.org/10.1016/j.bbmt.2017.05.032
- Yu, A., Takeda, A., Kumazawa, K., Miyoshi, H., Kuroyanagi, M., Yoshitake, T., Uchinuma, E., Suzuki, R. and Kuroyanagi, Y. (2015) Preliminary Clinical Study Using a Novel Wound Dressing Composed of Hyaluronic Acid and Collagen Containing EGF. Open Journal of Regenerative Medicine, 4, 6-13.
- Jin, H.J., Bae, Y.K., Kim, M., Kwon, S.J., Jeon, H.B., Choi, S.J., Kim, S.W., Yang, Y.S., Oh, W. and Chang, J.W. (2013) Comparative Analysis of Human Mesenchymal Stem Cells from Bone Marrow, Adipose Tissue, and Umbilical Cord Blood as Sources of Cell Therapy. International Journal of Molecular Sciences, 14, 17986-18001. https://doi.org/10.3390/ijms140917986
- Kern, S., Eichler, H., Stoeve, J., Kluter, H. and Bieback, K. (2006) Comparative Analysis of Mesenchymal Stem Cells from Bone Marrow, Umbilical Cord Blood, or Adipose Tissue. Stem Cells, 24, 1294-1301. https://doi.org/10.1634/stemcells.2005-0342
- Ding, D.C., Chang, Y.H., Shyu, W.C. and Lin, S.Z. (2015) Human Umbilical Cord Mesenchymal Stem Cells: A New Era for Stem Cell Therapy. Cell Transplant, 24, 339-347. https://doi.org/10.3727/096368915X686841
- Rivers, J.K. (2014) Stem Cells for Skin Rejuvenation: Are We There Yet? Journal of Cutaneous Medicine and Surgery, 18, 75-76. https://doi.org/10.2310/7750.2014.EDIT18.2
- Kim, W.S., Park, B.S., Sung, J.H., Yang, J.M., Park, S.B., Kwak, S.J. and Park, J.S. (2007) Wound Healing Effect of Adipose-Derived Stem Cells: A Critical Role of Secretory Factors on Human Dermal Fibroblasts. Journal of Dermatological Science, 48, 15-24. https://doi.org/10.1016/j.jdermsci.2007.05.018
- Sasaki, M., Abe, R., Fujita, Y., Ando, S., Inokuma, D. and Shimizu, H. (2008) Mesenchymal Stem Cells Are Recruited into Wounded Skin and Contribute to Wound Repair by Trans Differentiation into Multiple Skin Cell Type. The Journal of Immunology, 180, 2581-2587. https://doi.org/10.4049/jimmunol.180.4.2581
- Kim, W.S., Park, B.S., Park, S.H., Kim, H.K. and Sung, J.H. (2009) Antiwrinkle Effect of Adipose-Derived Stem Cell: Activation of Dermal Fibroblast by Secretory Factors. Journal of Dermatological Science, 53, 96-102. https://doi.org/10.1016/j.jdermsci.2008.08.007