Cell therapies for pancreatic beta-cell replenishment

被引:12
作者
Okere, Bernard [1 ]
Lucaccioni, Laura [1 ,2 ]
Dominici, Massimo [3 ]
Iughetti, Lorenzo [1 ]
机构
[1] Univ Modena & Reggio Emilia, Div Pediat Oncol Hematol & Marrow Transplantat, Dept Med & Surg Sci Children & Adults, Modena Policlin, I-41100 Modena, Italy
[2] Univ Glasgow, Sch Med Dent & Nursing, Child Hlth, Glasgow, Lanark, Scotland
[3] Univ Modena & Reggio Emilia, Dept Med & Surg Sci Children & Adults, Div Oncol, Modena Policlin, I-41100 Modena, Italy
关键词
Diabetes; Regenerative medicine; Cell therapy; Insulin-producing cells; Stem cells; MESENCHYMAL STEM-CELLS; AMNIOTIC EPITHELIAL-CELLS; INSULIN-PRODUCING CELLS; IN-VITRO CULTIVATION; ISLET TRANSPLANTATION; PROGENITOR CELLS; DIABETES-MELLITUS; EDMONTON PROTOCOL; RECENT PROGRESS; STROMAL CELLS;
D O I
10.1186/s13052-016-0273-4
中图分类号
R72 [儿科学];
学科分类号
100202 ;
摘要
The current treatment approach for type 1 diabetes is based on daily insulin injections, combined with blood glucose monitoring. However, administration of exogenous insulin fails to mimic the physiological activity of the islet, therefore diabetes often progresses with the development of serious complications such as kidney failure, retinopathy and vascular disease. Whole pancreas transplantation is associated with risks of major invasive surgery along with side effects of immunosuppressive therapy to avoid organ rejection. Replacement of pancreatic beta-cells would represent an ideal treatment that could overcome the above mentioned therapeutic hurdles. In this context, transplantation of islets of Langerhans is considered a less invasive procedure although long-term outcomes showed that only 10 % of the patients remained insulin independent five years after the transplant. Moreover, due to shortage of organs and the inability of islet to be expanded ex vivo, this therapy can be offered to a very limited number of patients. Over the past decade, cellular therapies have emerged as the new frontier of treatment of several diseases. Furthermore the advent of stem cells as renewable source of cell-substitutes to replenish the beta cell population, has blurred the hype on islet transplantation. Breakthrough cellular approaches aim to generate stem-cell-derived insulin producing cells, which could make diabetes cellular therapy available to millions. However, to date, stem cell therapy for diabetes is still in its early experimental stages. This review describes the most reliable sources of stem cells that have been developed to produce insulin and their most relevant experimental applications for the cure of diabetes.
引用
收藏
页数:9
相关论文
共 93 条
[1]   Immunomodulation by mesenchymal stem cells - A potential therapeutic strategy for type 1 diabetes [J].
Abdi, Reza ;
Fiorina, Paolo ;
Adra, Chaker N. ;
Atkinson, Mark ;
Sayegh, Mohamed H. .
DIABETES, 2008, 57 (07) :1759-1767
[2]  
AKLE CA, 1981, LANCET, V2, P1003
[3]   Defining stem cell types: understanding the therapeutic potential of ESCs, ASCs, and iPS cells [J].
Alvarez, Clara V. ;
Garcia-Lavandeira, Montserrat ;
Garcia-Rendueles, Maria E. R. ;
Diaz-Rodriguez, Esther ;
Garcia-Rendueles, Angela R. ;
Perez-Romero, Sihara ;
Vila Vila, Tania ;
Rodrigues, Joana S. ;
Lear, Pamela V. ;
Bravo, Susana B. .
JOURNAL OF MOLECULAR ENDOCRINOLOGY, 2012, 49 (02) :R89-R111
[4]   Islet-after-failed-pancreas and pancreas-after-failed islet transplantation: Two complementary rescue strategies to control diabetes [J].
Andres, Axel ;
Livingstone, Scott ;
Kin, Tatsuya ;
Campbell, Patricia M. ;
Senior, Peter A. ;
Kneteman, Norman M. ;
Bigam, David ;
Shapiro, A. M. James .
ISLETS, 2015, 7 (06) :1-6
[5]   In vitro generation of insulin-producing beta cells from adult exocrine pancreatic cells [J].
Baeyens, L ;
De Breuck, S ;
Lardon, J ;
Mfopou, JK ;
Rooman, I ;
Bouwens, L .
DIABETOLOGIA, 2005, 48 (01) :49-57
[6]   Functional, persistent, and extended liver to pancreas transdifferentiation [J].
Ber, I ;
Shternhall, K ;
Perl, S ;
Ohanuna, Z ;
Goldberg, I ;
Barshack, I ;
Benvenisti-Zarum, L ;
Meivar-Levy, I ;
Ferber, S .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (34) :31950-31957
[7]   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
[8]   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
[9]   Long-Term Immunosuppression After Solitary Islet Transplantation Is Associated With Preserved C-Peptide Secretion for More Than a Decade [J].
Blau, J. E. ;
Abegg, M. R. ;
Flegel, W. A. ;
Zhao, X. ;
Harlan, D. M. ;
Rother, K. I. .
AMERICAN JOURNAL OF TRANSPLANTATION, 2015, 15 (11) :2995-3001
[10]   In vitro cultivation of human islets from expanded ductal tissue [J].
Bonner-Weir, S ;
Taneja, M ;
Weir, GC ;
Tatarkiewicz, K ;
Song, KH ;
Sharma, A ;
O'Neil, JJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (14) :7999-8004