Cell and organ bioengineering technology as applied to gastrointestinal diseases

被引:25
作者
Orlando, Giuseppe [1 ,2 ]
Bendala, Juan Dominguez [3 ,4 ]
Shupe, Thomas [1 ]
Bergman, Christopher [1 ]
Bitar, Khalil N. [1 ]
Booth, Christopher [1 ]
Carbone, Marco [5 ]
Koch, Kenneth L. [1 ]
Lerut, Jan P. [6 ]
Neuberger, James M. [5 ]
Petersen, Bryon [1 ]
Ricordi, Camillo [3 ,4 ]
Atala, Anthony [1 ,7 ]
Stratta, Robert J. [2 ]
Soker, Shay [1 ]
机构
[1] Wake Forest Univ, Bowman Gray Sch Med, Wake Forest Inst Regenerat Med, Winston Salem, NC 27109 USA
[2] Wake Forest Univ, Bowman Gray Sch Med, Dept Gen Surg, Sect Transplantat, Winston Salem, NC USA
[3] Univ Miami, Diabet Res Inst, Leonard M Miller Sch Med, Miami, FL USA
[4] Univ Miami, Dept Surg, Leonard M Miller Sch Med, Miami, FL USA
[5] Queen Elizabeth Hosp, Liver Unit, Birmingham B15 2TH, W Midlands, England
[6] Catholic Univ Louvain, St Luc Univ Hosp, Dept Abdominal & Transplant Surg, Abdominal Transplant Unit, B-1200 Brussels, Belgium
[7] Wake Forest Univ, Bowman Gray Sch Med, Dept Urol, Winston Salem, NC 27103 USA
关键词
TISSUE-ENGINEERED STOMACH; COLONY-STIMULATING FACTOR; HEMATOPOIETIC STEM-CELLS; PANCREATIC BETA-CELLS; REGENERATIVE MEDICINE APPROACH; INSULIN-SECRETING CELLS; BONE-MARROW; ADULT-MOUSE; IN-VITRO; SUCCESSFUL IMPLANTATION;
D O I
10.1136/gutjnl-2011-301111
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
This review illustrates promising regenerative medicine technologies that are being developed for the treatment of gastrointestinal diseases. The main strategies under validation to bioengineer or regenerate liver, pancreas, or parts of the digestive tract are twofold: engineering of progenitor cells and seeding of cells on supporting scaffold material. In the first case, stem cells are initially expanded under standard tissue culture conditions. Thereafter, these cells may either be delivered directly to the tissue or organ of interest, or they may be loaded onto a synthetic or natural three-dimensional scaffold that is capable of enhancing cell viability and function. The new construct harbouring the cells usually undergoes a maturation phase within a bioreactor. Within the bioreactor, cells are conditioned to adopt a phenotype similar to that displayed in the native organ. The specific nature of the scaffold within the bioreactor is critical for the development of this high-function phenotype. Efforts to bioengineer or regenerate gastrointestinal tract, liver and pancreas have yielded promising results and have demonstrated the immense potential of regenerative medicine. However, a myriad of technical hurdles must be overcome before transplantable, engineered organs become a reality.
引用
收藏
页码:774 / 786
页数:13
相关论文
共 137 条
[41]   Insulin-producing cells derived from stem/progenitor cells: therapeutic implications for diabetes mellitus [J].
Hori, Yuichi .
MEDICAL MOLECULAR MORPHOLOGY, 2009, 42 (04) :195-200
[42]   Plasticity of stem cells derived from adult periodontal ligament [J].
Huang, C-Y Charles ;
Pelaez, Daniel ;
Bendala, Juan Dominguez ;
Garcia-Godoy, Franklin ;
Cheung, Herman S. .
REGENERATIVE MEDICINE, 2009, 4 (06) :809-821
[43]   Copy number variation and selection during reprogramming to pluripotency [J].
Hussein, Samer M. ;
Batada, Nizar N. ;
Vuoristo, Sanna ;
Ching, Reagan W. ;
Autio, Reija ;
Narva, Elisa ;
Ng, Siemon ;
Sourour, Michel ;
Hamalainen, Riikka ;
Olsson, Cia ;
Lundin, Karolina ;
Mikkola, Milla ;
Trokovic, Ras ;
Peitz, Michael ;
Bruestle, Oliver ;
Bazett-Jones, David P. ;
Alitalo, Kari ;
Lahesmaa, Riitta ;
Nagy, Andras ;
Otonkoski, Timo .
NATURE, 2011, 471 (7336) :58-U67
[44]   Hematopoietic stem cells convert into liver cells within days without fusion [J].
Jang, YY ;
Collector, MI ;
Baylin, SB ;
Diehl, AM ;
Sharkis, SJ .
NATURE CELL BIOLOGY, 2004, 6 (06) :532-539
[45]  
Jia FJ, 2010, NAT METHODS, V7, P197, DOI [10.1038/NMETH.1426, 10.1038/nmeth.1426]
[46]   Islet neogenesis from the constitutively nestin expressing human umbilical cord matrix derived mesenchymal stem cells [J].
Kadam, Sachin S. ;
Bhonde, Ramesh R. .
ISLETS, 2010, 2 (02) :112-120
[47]   A crucial role of MafA as a novel therapeutic target for diabetes [J].
Kaneto, H ;
Matsuoka, T ;
Nakatani, Y ;
Miyatsuka, T ;
Matsuhisa, M ;
Hori, M ;
Yamasaki, Y .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (15) :15047-15052
[48]   Insulin-Secreting Cells from Human Eyelid-Derived Stem Cells Alleviate Type I Diabetes in Immunocompetent Mice [J].
Kang, Hyun Mi ;
Kim, Jiyoung ;
Park, Seah ;
Kim, Jinyoung ;
Kim, Haekwon ;
Kim, Kyung Sik ;
Lee, Eun Jig ;
Seo, Sung Ig ;
Kang, Sung Goo ;
Lee, Jong-Eun ;
Lim, Hyunjung .
STEM CELLS, 2009, 27 (08) :1999-2008
[49]   Liver regeneration: Prospects for therapy based on new technologies [J].
Kay, MA ;
Fausto, N .
MOLECULAR MEDICINE TODAY, 1997, 3 (03) :108-115
[50]   Generation of Human Induced Pluripotent Stem Cells by Direct Delivery of Reprogramming Proteins [J].
Kim, Dohoon ;
Kim, Chun-Hyung ;
Moon, Jung-Il ;
Chung, Young-Gie ;
Chang, Mi-Yoon ;
Han, Baek-Soo ;
Ko, Sanghyeok ;
Yang, Eungi ;
Cha, Kwang Yul ;
Lanza, Robert ;
Kim, Kwang-Soo .
CELL STEM CELL, 2009, 4 (06) :472-476