Methacrylic acid copolymer coating of polypropylene mesh chamber improves subcutaneous islet engraftment

被引:22
作者
Coindre, Virginie F. [1 ]
Kinney, Sean M. [1 ,2 ]
Sefton, Michael, V [1 ,2 ]
机构
[1] Univ Toronto, Inst Biomat & Biomed Engn, Toronto, ON, Canada
[2] Univ Toronto, Dept Chem Engn & Appl Chem, Toronto, ON, Canada
基金
加拿大自然科学与工程研究理事会; 加拿大健康研究院;
关键词
Methacrylic acid copolymer; Coating; Vascularization; Cell delivery; Islet transplantation; TRANSPLANTATION; VASCULARIZATION; CELLS; BEADS; ANGIOGENESIS; SCAFFOLD; NETWORK;
D O I
10.1016/j.biomaterials.2020.120324
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Subcutaneous devices can be used to house therapeutic cells such as pancreatic islets so that the cells can be retrieved. However, a high number of cells may be required to reverse diabetes, since a portion of the graft can be lost after transplantation due to ischemia and therefore the right device design is important. Increasing the vascularity of the subcutaneous space prior to cell transplantation is a strategic goal for cell transplantation, as it promotes islet survival, glucose-sensing and insulin secretion. In this study, a porous cell transplantation device was coated with 40% methacrylic acid-co-isodecyl acrylate (MAA-co-IDA), a biomaterial which promotes a vascular response without additional biologics. Three weeks after device implantation, the vessel density surrounding the device was double that of an uncoated device. The vasculature was mature and connected to the host bloodstream, as demonstrated by perfusion studies and histology. The tissue response to coated devices demonstrated lower levels of inflammation, measured by reduced gene expression of i-NOS and IL1 beta, and increased expression of IL4. Syngeneic islets (300 islet equivalents) transplanted into the prevascularized coated device were able to return diabetic animals to normoglycemia for up to 11 weeks and resolve a glucose bolus similarly to non-diabetic mice by 3 weeks post-transplantation. We expect that the vessels and microenvironment resulting from the device coating are permissive to islet survival and thus enabled islets to reverse diabetes.
引用
收藏
页数:12
相关论文
共 35 条
[1]   Poly(butyl methacrylate-co-methacrylic acid) tissue engineering scaffold with pro-angiogenic potential in vivo [J].
Butler, Mark J. ;
Sefton, Michael V. .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2007, 82A (02) :265-273
[2]   Methacrylic Acid Copolymer Coating Enhances Constructive Remodeling of Polypropylene Mesh by Increasing the Vascular Response [J].
Coindre, Virginie F. ;
Carleton, Miranda M. ;
Sefton, Michael, V .
ADVANCED HEALTHCARE MATERIALS, 2019, 8 (18)
[3]   Alginate-based microcapsules for immunoisolation of pancreatic islets [J].
de Vos, Paul ;
Faas, Marijke M. ;
Strand, Berit ;
Calafiore, Ricardo .
BIOMATERIALS, 2006, 27 (32) :5603-5617
[4]   A Preliminary Study of the Effect of Poly(Methacrylic Acid-Co-Methyl Methacrylate) Beads on Angiogenesis in Rodent Skin Grafts and the Quality of the Panniculus Carnosus [J].
Eckhaus, Allan A. ;
Fish, Joel S. ;
Skarja, Gary ;
Semple, John L. ;
Sefton, Michael V. .
PLASTIC AND RECONSTRUCTIVE SURGERY, 2008, 122 (05) :1361-1370
[5]   Live encapsulated porcine islets from a type 1 diabetic patient 9.5 yr after xenotransplantation [J].
Elliott, Robert B. ;
Escobar, Livia ;
Tan, Paul L. J. ;
Muzina, Maria ;
Zwain, Sahar ;
Buchanan, Christina .
XENOTRANSPLANTATION, 2007, 14 (02) :157-161
[6]   Contemporary Strategies and Barriers to Transplantation Tolerance [J].
Ezekian, Brian ;
Schroder, Paul M. ;
Freischlag, Kyle ;
Yoon, Janghoon ;
Kwun, Jean ;
Knechtle, Stuart J. .
TRANSPLANTATION, 2018, 102 (08) :1213-1222
[7]   Creation of a Rich Subcutaneous Vascular Network with Implanted Adipose Tissue-Derived Stromal Cells and Adipose Tissue Enhances Subcutaneous Grafting of Islets in Diabetic Mice [J].
Fumimoto, Yuichi ;
Matsuyama, Akifumi ;
Komoda, Hiroshi ;
Okura, Hanayuki ;
Lee, Chun Man ;
Nagao, Anna ;
Nishida, Toshirou ;
Ito, Toshinori ;
Sawa, Yoshiki .
TISSUE ENGINEERING PART C-METHODS, 2009, 15 (03) :437-444
[8]   Diabetic impairments in NO-mediated endothelial progenitor cell mobilization and homing are reversed by hyperoxia and SDF-1α [J].
Gallagher, Katherine A. ;
Liu, Zhao-Jun ;
Xiao, Min ;
Chen, Haiying ;
Goldstein, Lee J. ;
Buerk, Donald G. ;
Nedeau, April ;
Thom, Stephen R. ;
Velazquez, Omaida C. .
JOURNAL OF CLINICAL INVESTIGATION, 2007, 117 (05) :1249-1259
[9]   Improved islet recovery and efficacy through co-culture and co-transplantation of islets with human adipose-derived mesenchymal stem cells [J].
Gamble, Anissa ;
Pawlick, Rena ;
Pepper, Andrew R. ;
Bruni, Antonio ;
Adesida, Adetola ;
Senior, Peter A. ;
Korbutt, Gregory S. ;
Shapiro, A. M. James .
PLOS ONE, 2018, 13 (11)
[10]   A role for VEGF as a negative regulator of pericyte function and vessel maturation [J].
Greenberg, Joshua I. ;
Shields, David J. ;
Barillas, Samuel G. ;
Acevedo, Lisette M. ;
Murphy, Eric ;
Huang, Jianhua ;
Scheppke, Lea ;
Stockmann, Christian ;
Johnson, Randall S. ;
Angle, Niren ;
Cheresh, David A. .
NATURE, 2008, 456 (7223) :809-U101