Cargando…

Human Melanocyte-Derived Spheroids: A Precise Test System for Drug Screening and a Multicellular Unit for Tissue Engineering

Pigmentation is the result of melanin synthesis, which takes place in melanocytes, and its further distribution. A dysregulation in melanocytes' functionality can result in the loss of pigmentation, the appearance of pigment spots and melanoma development. Tissue engineering and the screening o...

Descripción completa

Detalles Bibliográficos
Autores principales: Zurina, Irina M., Gorkun, Anastasiya A., Dzhussoeva, Ekaterina V., Kolokoltsova, Tamara D., Markov, Dmitriy D., Kosheleva, Nastasia V., Morozov, Sergey G., Saburina, Irina N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7287162/
https://www.ncbi.nlm.nih.gov/pubmed/32582665
http://dx.doi.org/10.3389/fbioe.2020.00540
_version_ 1783545011563921408
author Zurina, Irina M.
Gorkun, Anastasiya A.
Dzhussoeva, Ekaterina V.
Kolokoltsova, Tamara D.
Markov, Dmitriy D.
Kosheleva, Nastasia V.
Morozov, Sergey G.
Saburina, Irina N.
author_facet Zurina, Irina M.
Gorkun, Anastasiya A.
Dzhussoeva, Ekaterina V.
Kolokoltsova, Tamara D.
Markov, Dmitriy D.
Kosheleva, Nastasia V.
Morozov, Sergey G.
Saburina, Irina N.
author_sort Zurina, Irina M.
collection PubMed
description Pigmentation is the result of melanin synthesis, which takes place in melanocytes, and its further distribution. A dysregulation in melanocytes' functionality can result in the loss of pigmentation, the appearance of pigment spots and melanoma development. Tissue engineering and the screening of new skin-lightening drugs require the development of simple and reproducible in vitro models with maintained functional activity. The aim of the study was to obtain and characterize spheroids from normal human melanocytes as a three-dimensional multicellular structure and as a test system for skin-lightening drug screening. Melanocytes are known to lose their ability to synthesize melanin in monolayer culture. When transferred under non-adhesive conditions in agarose multi-well plates, melanocytes aggregated and formed spheroids. As a result, the amount of melanin elevated almost two times within seven days. MelanoDerm™ (MatTek) skin equivalents were used as a comparison system. Cells in spheroids expressed transcription factors that regulate melanogenesis: MITF and Sox10, the marker of developed melanosomes—gp100, as well as tyrosinase (TYR)—the melanogenesis enzyme and melanocortin receptor 1 (MC1R)—the main receptor regulating melanin synthesis. Expression was maintained during 3D culturing. Thus, it can be stated that spheroids maintain melanocytes' functional activity compared to that in the multi-layered MelanoDerm™ skin equivalents. Culturing both spheroids and MelanoDerm™ for seven days in the presence of the skin-lightening agent fucoxanthin resulted in a more significant lowering of melanin levels in spheroids. Significant down-regulation of gp100, MITF, and Sox10 transcription factors, as well as 10-fold down-regulation of TYR expression, was observed in spheroids by day 7 in the presence of fucoxanthin, thus inhibiting the maturation of melanosomes and the synthesis of melanin. MelanoDerm™ samples were characterized by significant down-regulation of only MITF, Sox10 indicating that spheroids formed a more sensitive system allowed for quantitative assays. Collectively, these data illustrate that normal melanocytes can assemble themselves into spheroids—the viable structures that are able to accumulate melanin and maintain the initial functional activity of melanocytes. These spheroids can be used as a more affordable and easy-to-use test system than commercial skin equivalents for drug screening.
format Online
Article
Text
id pubmed-7287162
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-72871622020-06-23 Human Melanocyte-Derived Spheroids: A Precise Test System for Drug Screening and a Multicellular Unit for Tissue Engineering Zurina, Irina M. Gorkun, Anastasiya A. Dzhussoeva, Ekaterina V. Kolokoltsova, Tamara D. Markov, Dmitriy D. Kosheleva, Nastasia V. Morozov, Sergey G. Saburina, Irina N. Front Bioeng Biotechnol Bioengineering and Biotechnology Pigmentation is the result of melanin synthesis, which takes place in melanocytes, and its further distribution. A dysregulation in melanocytes' functionality can result in the loss of pigmentation, the appearance of pigment spots and melanoma development. Tissue engineering and the screening of new skin-lightening drugs require the development of simple and reproducible in vitro models with maintained functional activity. The aim of the study was to obtain and characterize spheroids from normal human melanocytes as a three-dimensional multicellular structure and as a test system for skin-lightening drug screening. Melanocytes are known to lose their ability to synthesize melanin in monolayer culture. When transferred under non-adhesive conditions in agarose multi-well plates, melanocytes aggregated and formed spheroids. As a result, the amount of melanin elevated almost two times within seven days. MelanoDerm™ (MatTek) skin equivalents were used as a comparison system. Cells in spheroids expressed transcription factors that regulate melanogenesis: MITF and Sox10, the marker of developed melanosomes—gp100, as well as tyrosinase (TYR)—the melanogenesis enzyme and melanocortin receptor 1 (MC1R)—the main receptor regulating melanin synthesis. Expression was maintained during 3D culturing. Thus, it can be stated that spheroids maintain melanocytes' functional activity compared to that in the multi-layered MelanoDerm™ skin equivalents. Culturing both spheroids and MelanoDerm™ for seven days in the presence of the skin-lightening agent fucoxanthin resulted in a more significant lowering of melanin levels in spheroids. Significant down-regulation of gp100, MITF, and Sox10 transcription factors, as well as 10-fold down-regulation of TYR expression, was observed in spheroids by day 7 in the presence of fucoxanthin, thus inhibiting the maturation of melanosomes and the synthesis of melanin. MelanoDerm™ samples were characterized by significant down-regulation of only MITF, Sox10 indicating that spheroids formed a more sensitive system allowed for quantitative assays. Collectively, these data illustrate that normal melanocytes can assemble themselves into spheroids—the viable structures that are able to accumulate melanin and maintain the initial functional activity of melanocytes. These spheroids can be used as a more affordable and easy-to-use test system than commercial skin equivalents for drug screening. Frontiers Media S.A. 2020-06-04 /pmc/articles/PMC7287162/ /pubmed/32582665 http://dx.doi.org/10.3389/fbioe.2020.00540 Text en Copyright © 2020 Zurina, Gorkun, Dzhussoeva, Kolokoltsova, Markov, Kosheleva, Morozov and Saburina. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Bioengineering and Biotechnology
Zurina, Irina M.
Gorkun, Anastasiya A.
Dzhussoeva, Ekaterina V.
Kolokoltsova, Tamara D.
Markov, Dmitriy D.
Kosheleva, Nastasia V.
Morozov, Sergey G.
Saburina, Irina N.
Human Melanocyte-Derived Spheroids: A Precise Test System for Drug Screening and a Multicellular Unit for Tissue Engineering
title Human Melanocyte-Derived Spheroids: A Precise Test System for Drug Screening and a Multicellular Unit for Tissue Engineering
title_full Human Melanocyte-Derived Spheroids: A Precise Test System for Drug Screening and a Multicellular Unit for Tissue Engineering
title_fullStr Human Melanocyte-Derived Spheroids: A Precise Test System for Drug Screening and a Multicellular Unit for Tissue Engineering
title_full_unstemmed Human Melanocyte-Derived Spheroids: A Precise Test System for Drug Screening and a Multicellular Unit for Tissue Engineering
title_short Human Melanocyte-Derived Spheroids: A Precise Test System for Drug Screening and a Multicellular Unit for Tissue Engineering
title_sort human melanocyte-derived spheroids: a precise test system for drug screening and a multicellular unit for tissue engineering
topic Bioengineering and Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7287162/
https://www.ncbi.nlm.nih.gov/pubmed/32582665
http://dx.doi.org/10.3389/fbioe.2020.00540
work_keys_str_mv AT zurinairinam humanmelanocytederivedspheroidsaprecisetestsystemfordrugscreeningandamulticellularunitfortissueengineering
AT gorkunanastasiyaa humanmelanocytederivedspheroidsaprecisetestsystemfordrugscreeningandamulticellularunitfortissueengineering
AT dzhussoevaekaterinav humanmelanocytederivedspheroidsaprecisetestsystemfordrugscreeningandamulticellularunitfortissueengineering
AT kolokoltsovatamarad humanmelanocytederivedspheroidsaprecisetestsystemfordrugscreeningandamulticellularunitfortissueengineering
AT markovdmitriyd humanmelanocytederivedspheroidsaprecisetestsystemfordrugscreeningandamulticellularunitfortissueengineering
AT koshelevanastasiav humanmelanocytederivedspheroidsaprecisetestsystemfordrugscreeningandamulticellularunitfortissueengineering
AT morozovsergeyg humanmelanocytederivedspheroidsaprecisetestsystemfordrugscreeningandamulticellularunitfortissueengineering
AT saburinairinan humanmelanocytederivedspheroidsaprecisetestsystemfordrugscreeningandamulticellularunitfortissueengineering