Differentiation of Human Deceased Donor, Adipose-Derived, Mesenchymal Stem Cells into Functional Beta Cells

被引:5
作者
Rao, P. [1 ]
Deo, D. [1 ]
Marchioni, M. [1 ]
机构
[1] NJ Sharing Network, Personalized Transplant Med Inst, New Providence, NJ 07974 USA
关键词
Adipose; Deceased Donor; Mesenchymal; Diabetes; IN-VITRO; STROMAL CELLS; ISLET TRANSPLANTATION; INTERNATIONAL-SOCIETY; INSULIN-SECRETION; TISSUE; PANCREAS; GENERATION; GLUCAGON; IDENTIFICATION;
D O I
10.46582/jsrm.1602010
中图分类号
Q813 [细胞工程];
学科分类号
摘要
There is an emerging need for the rapid generation of functional beta cells that can be used in cell replacement therapy for the treatment of type 1 diabetes (T1D). Differentiation of stem cells into insulin-producing cells provides a promising strategy to restore pancreatic endocrine function. Stem cells can be isolated from various human tissues including adipose tissue (AT). Our study outlines a novel, non-enzymatic process to harvest mesenchymal stem cells (MSC) from research-consented, deceased donor AT. Following their expansion, MSC were characterised morphologically and phenotypically by flow cytometry to establish their use for downstream differentiation studies. MSC were induced to differentiate into insulin-producing beta cells using a step-wise differentiation medium. The differentiation was evaluated by analysing the morphology, dithizone staining, immunocytochemistry, and expression of pancreatic beta cell marker genes. We stimulated the beta cells with different concentrations of glucose and observed a dose-dependent increase in gene expression. In addition, an increase in insulin and c-Peptide secretion as a function of glucose challenge confirmed the functionality of the differentiated beta cells. The differentiation of adipose-derived MSC into beta cells has been well established. However, our data demonstrates, for the first time, that the ready availability and properties of MSC isolated from deceased donor adipose tissue render them well-suited as a source for increased production of functional beta cells. Consequently, these cells can be a promising therapeutic approach for cell replacement therapy to treat patients with T1D.
引用
收藏
页码:63 / 72
页数:10
相关论文
共 50 条
[1]  
Adeyemi DO, 2010, FOLIA MORPHOL, V69, P92
[2]   ESTABLISHMENT OF 2-MERCAPTOETHANOL-DEPENDENT DIFFERENTIATED INSULIN-SECRETING CELL-LINES [J].
ASFARI, M ;
JANJIC, D ;
MEDA, P ;
LI, GD ;
HALBAN, PA ;
WOLLHEIM, CB .
ENDOCRINOLOGY, 1992, 130 (01) :167-178
[3]   Taurine Supplementation Restores Insulin Secretion and Reduces ER Stress Markers in Protein-Malnourished Mice [J].
Batista, Thiago Martins ;
Ribeiro da Silva, Priscilla Muniz ;
Amaral, Andressa Godoy ;
Ribeiro, Rosane Aparecida ;
Boschero, Antonio Carlos ;
Carneiro, Everardo Magalhaes .
TAURINE 8, VOL 2: NUTRITION AND METABOLISM, PROTECTIVE ROLE, AND ROLE IN REPRODUCTION, DEVELOPMENT, AND DIFFERENTIATION, 2013, 776 :129-139
[4]   Bioengineering the Endocrine Pancreas: Intraomental Islet Transplantation Within a Biologic Resorbable Scaffold [J].
Berman, Dora M. ;
Molano, Damaris ;
Fotino, Carmen ;
Ulissi, Ulisse ;
Gimeno, Jennifer ;
Mendez, Armando J. ;
Kenyon, Norman M. ;
Kenyon, Norma S. ;
Andrews, David M. ;
Ricordi, Camillo ;
Pileggi, Antonello .
DIABETES, 2016, 65 (05) :1350-1361
[5]   The simplest method for in vitro β-cell production from human adult stem cells [J].
Bhandari, Dilli Ram ;
Seo, Kwang-Won ;
Sun, Bo ;
Seo, Min-Soo ;
Kim, Hyung-Sik ;
Seo, Yoo-Jin ;
Marcin, Jurga ;
Forraz, Nicolas ;
Le Roy, Helene ;
Larry, Denner ;
Colin, McGuckin ;
Kang, Kyung-Sun .
DIFFERENTIATION, 2011, 82 (03) :144-152
[6]   A novel pancreatic β-cell targeting bispecific-antibody (BsAb) can prevent the development of Type 1 diabetes in NOD mice [J].
Bhattacharya, Palash ;
Fan, Jilao ;
Haddad, Christine ;
Essani, Abdul ;
Gopisetty, Anupama ;
Elshabrawy, Hatem A. ;
Vasu, Chenthamarakshan ;
Prabhakar, Bellur S. .
CLINICAL IMMUNOLOGY, 2014, 153 (01) :187-198
[7]   Type 1 diabetes immunotherapy using polyclonal regulatory T cells [J].
Bluestone, Jeffrey A. ;
Buckner, Jane H. ;
Fitch, Mark ;
Gitelman, Stephen E. ;
Gupta, Shipra ;
Hellerstein, Marc K. ;
Herold, Kevan C. ;
Lares, Angela ;
Lee, Michael R. ;
Li, Kelvin ;
Liu, Weihong ;
Long, S. Alice ;
Masiello, Lisa M. ;
Vinh Nguyen ;
Putnam, Amy L. ;
Rieck, Mary ;
Sayre, Peter H. ;
Tang, Qizhi .
SCIENCE TRANSLATIONAL MEDICINE, 2015, 7 (315)
[8]   Stromal cells from the adipose tissue-derived stromal vascular fraction and culture expanded adipose tissue-derived stromal/stem cells: a joint statement of the International Federation for Adipose Therapeutics and Science (IFATS) and the International Society for Cellular Therapy (ISCT) [J].
Bourin, Philippe ;
Bunnell, Bruce A. ;
Casteilla, Louis ;
Dominici, Massimo ;
Katz, Adam J. ;
March, Keith L. ;
Redl, Heinz ;
Rubin, J. Peter ;
Yoshimura, Kotaro ;
Gimble, Jeffrey M. .
CYTOTHERAPY, 2013, 15 (06) :641-648
[9]   Islet cell transplantation today [J].
Bretzel, Reinhard G. ;
Jahr, Henning ;
Eckhard, Michael ;
Martin, Isabel ;
Winter, Daniel ;
Brendel, Mathias D. .
LANGENBECKS ARCHIVES OF SURGERY, 2007, 392 (03) :239-253
[10]   An improved clinical model to predict stimulated C-peptide in children with recent-onset type 1 diabetes [J].
Buchanan, Kerry ;
Mehdi, Ahmed M. ;
Hughes, Ian ;
Cotterill, Andrew ;
Le Cao, Kim-Anh ;
Thomas, Ranjeny ;
Harris, Mark .
PEDIATRIC DIABETES, 2019, 20 (02) :166-171