Novacutan preparations as potential dermatogeroprotectors: molecular-microscopic study
- Authors: Gazitaeva Z.I.1,2, Drobintseva A.O.3, Polyakova V.O.3, Kvetnoy I.M.4, Prokopov A.Y.5
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Affiliations:
- Institute of Beauty Fijie
- St. Petersburg Institute of Bioregulation and Gerontology Russian Federation
- St. Petersburg State Pediatric Medical University
- Saint-Petersburg Federal Research Institute of Phthisiology and Pulmonology, Healthcare Ministry of Russia
- ROS-Chimia Ltd
- Issue: Vol 19, No 4 (2021)
- Pages: 34-41
- Section: Articles
- URL: https://journals.eco-vector.com/1728-2918/article/view/113445
- DOI: https://doi.org/10.29296/24999490-2021-04-06
- ID: 113445
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Abstract
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About the authors
Zarema Ibragimovna Gazitaeva
Institute of Beauty Fijie; St. Petersburg Institute of Bioregulation and Gerontology Russian Federation
Email: gaz.itaevadoctor@gmail.com
Head of the Department of Medical Support
Anna Olegovna Drobintseva
St. Petersburg State Pediatric Medical University
Email: anna.drobintseva@gmail.com
assistant professor. Department of medical biology.
Victoria Olegovna Polyakova
St. Petersburg State Pediatric Medical University
Email: vopol@yandex.ru
head of research center
Igor Moiseevich Kvetnoy
Saint-Petersburg Federal Research Institute of Phthisiology and Pulmonology, Healthcare Ministry of Russia
Email: igor.kvetnoy@yandex.ru
head of molecular biomedicine center
Aleksei Yurevich Prokopov
ROS-Chimia Ltd
Email: a.prokopov@ros-chimia.ru
director
References
- Vademecum впервые подсчитал объем рынка «уколов красоты», VADEMECUM. 2017; 03. https://vademec.ru/projects/magazines/2017/03/
- Hess J., Angel P., Schorpp-Kistner M. AP-1 subunits: quarrel and harmony among siblings. J. of Cell Science. 2004; 117 (25): 5965-73.
- База знаний по биологии человека. Онкогенетика. AP-1 транскрипционный фактор: общие сведения. Дата обращения: 01.10.2020 URL: http://humbio.ru/humbio/oncogenetics/000b3f5f.htm
- Qin Z., Robichaud P., He T., Fisher G.J., Voorhees J.J., Quan T. Oxidant exposure induces cysteine-rich protein 61 (CCN1) via c-Jun/AP-1 to reduce collagen expression in human dermal fibroblasts. PLoS One. 2014; 9 (12): e115402. https://doi.org/0.1371/journal.pone.0115402
- Hwang K.A., Yi B.R., Choi K.C. Molecular mechanisms and in vivo mouse models of skin aging associated with dermal matrix alterations. Send to Lab Anim. Res. 2011; 27 (1): 1-8.
- Kuro-o M., Matsumura Y., Aizawa H., Kawaguchi H., Suga T., Utsugi T., Ohyama Y., Kurabayashi M., Kaname T., Kume E., Iwasaki H., Iida A. «Mutation of the mouse klotho gene leads to a syndrome resembling ageing». Nature. 1997; 390 (6655): 45-51.
- Бокша И.С., Прохорова Т.А., Савушкина О.К., Терешкина Е.Б. Биохимия. 2017; 82 (9): 1278-95.
- Koyama D., Sato Y., Aizawa M., Maki T., Kurosawa M., Kuro-o M., Furukawa Y. Soluble aKlotho as a candidate for the biomarker of aging. Biochem Biophys Res Commun. 2015; 467 (4): 1019-25. https://doi.org/10.18632/aging.102771
- Dalton G.D., Xie J., An S.W., Huang C.L. New Insights into the Mechanism of Action of Soluble Klotho. Front Endocrinol. 2017; 17 (8): 323.
- Sopjani M., Rinnerthaler M., Kruja J., Dermaku-Sopjani M. Intracellular signaling of the aging suppressor protein Klotho. Curr Mol Med. 2015; 15 (1): 27-37.
- Sakumi K., Furuichi M., Tsuzuki T., Kakuma T., Kawabata S., Maki H., Sekiguchi M. Cloning and expression of cDNA for a human enzyme that hydrolyzes 8-oxo-dGTP, a mutagenic substrate for DNA synthesis. The Journal of Biological Chemistry. 1993; 268 (31): 23524-30.
- Yoshimura D., Sakumi K., Ohno M., Sakai Y., Furuichi M., Iwai S., Nakabeppu Y. An oxidized purine nucleoside triphosphatase, MTH1, suppresses cell death caused by oxidative stress. J. Biol Chem. 2003; 278 (39): 37965-73.
- Rai P., Onder T., Young J. J.,. McFaline J.L., Pang B. Continuous elimination of oxidized nucleotides is necessary to prevent rapid onset of cellular senescence. Send to Proc Natl Acad Sci USA. 2009; 106 (1): 169-74.
- De Luca G., Ventura I., Sanghez V., Russo M.T., Ajmone-Cat M.A. Prolonged lifespan with enhanced exploratory behavior in mice overexpressing the oxidized nucleoside triphosphatase hMTH1. Aging Cell. 2013; 12 (4): 695-705.
- Avila Rodriguez M.I., Rodriguez Barroso L.G., Sanchez M.L. Collagen: A review on its sources and potential cosmetic applications. J. Cosmet Dermatol. 2018; 17 (1): 20-6. https://doi.org/10.1111/jocd.12450.
- Zhang M., Hwang E., Lin P., Gao W., Ngo H.T.T., Yi T.H. Prunella vulgaris L. Exerts a Protective Effect Against Extrinsic Aging Through NF-κb, mapks, AP-1, and TGF-β/ Smad Signaling Pathways in UVB-Aged Normal Human Dermal Fibroblasts. Rejuvenation Res. 2018; 21 (4): 313-22. https://doi.org/10.1089/rej.2017.1971
- Смирнова И.О. Фотостарение кожи и базально-клеточный рак: роль тучных клеток. Клиническая медицина. 2005; 83 (7): 55-8.
- Целуйко C.C., Малюк Е.А., Корнеева Л.С., Красавина Н.П. Морфофункциональная характеристика дермы кожи и ее изменения при старении (обзор литературы). Бюллетень. 2016; 60: 111-6.
- Zhang S., Duan E. Fighting against skin aging: the way from bench to bedside. Cell Transplant. 2018; 27 (5): 729-38. https://doi.org/10.1177/0963689717725755.
- Mora Huertas A.C., Schmelzer C.E., Hoehenwarter W., Heyroth F., Heinz A. Molecular-level insights into aging processes of skin elastin. Biochimie. 2016; 128-129: 163-73. https://doi.org/10.10Wj.biochi.2016.08.010.
- Газитаева З.А., Дробинцева А.О., Чанг Й., Полякова В.О., Кветной И.М. Молекулярные механизмы дермального геропротективного действия препаратов на основе биомиметических пептидов. Молекулярная медицина. 2015; 5: 16-9.
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