Literature DB >> 20400892

Biocompatibility investigation of polyethylene glycol and alginate-poly-L-lysine for islet encapsulation.

Xiang Y Liu1, Jean-Manuel Nothias, Andrew Scavone, Marc Garfinkel, J Michael Millis.   

Abstract

The use of microencapsulation with alginate-poly-l-lysine (PLL) as the encapsulation material has been hampered by overgrowth of collagen around implanted capsules. Studies have shown that poly(ethylene glycol) (PEG) has higher biocompatibility than PLL. In this project, we examined the biocompatibility of PEG in comparison with PLL in the Lewis rat model. Capsules made from either PEG or PLL were implanted into Lewis rats in three anatomical sites: subcutaneous (SC), intramuscular (IM), and intra-epididymis (IE). After 2 or 4 weeks, capsules were retrieved, sectioned, and stained with Sirius Red for analysis of fibrotic overgrowth with ImageJ software. The results were statistically analyzed using either unpaired t test or analysis of variance (ANOVA). PEG demonstrated significantly better biocompatibility in SC, at both 2 and 4 weeks, and IE at 2 weeks (p < 0.0001). No significant differences were found in IM implantation at either time point (p = 0.36) between the two materials. However, there was significantly heavier fibrotic overgrowth around PEG capsules in IE than PLL capsules at 4 weeks (p < 0.01). When compared among the anatomical sites, IM implantation demonstrated significantly less fibrotic overgrowth than other sites for both materials (p < 0.01). In conclusion, PLL and PEG may induce different levels of fibrosis based on anatomical location and duration of implantation.

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Year:  2010        PMID: 20400892     DOI: 10.1097/MAT.0b013e3181d7b8e3

Source DB:  PubMed          Journal:  ASAIO J        ISSN: 1058-2916            Impact factor:   2.872


  13 in total

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Review 2.  Engineering the Surface of Therapeutic "Living" Cells.

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3.  Biomedical Applications of Biodegradable Polymers.

Authors:  Bret D Ulery; Lakshmi S Nair; Cato T Laurencin
Journal:  J Polym Sci B Polym Phys       Date:  2011-06-15

4.  Engineering Strategies to Improve Islet Transplantation for Type 1 Diabetes Therapy.

Authors:  Alisa M White; James G Shamul; Jiangsheng Xu; Samantha Stewart; Jonathan S Bromberg; Xiaoming He
Journal:  ACS Biomater Sci Eng       Date:  2019-12-02

5.  Developing a Rapid Algorithm to Enable Rapid Characterization of Alginate Microcapsules.

Authors:  Ka Hei Chan; Rahul Krishnan; Michael Alexander; Jonathan R T Lakey
Journal:  Cell Transplant       Date:  2016-10-10       Impact factor: 4.064

6.  A Novel Polyurethane Expandable Root Canal Sealer.

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7.  Rapid Heterotrophic Ossification with Cryopreserved Poly(ethylene glycol-) Microencapsulated BMP2-Expressing MSCs.

Authors:  Jennifer Mumaw; Erin T Jordan; Corinne Sonnet; Ronke M Olabisi; Elizabeth A Olmsted-Davis; Alan R Davis; John F Peroni; Jennifer L West; Franklin West; Yangqing Lu; Steven L Stice
Journal:  Int J Biomater       Date:  2012-02-07

Review 8.  Designing biomaterials for the modulation of allogeneic and autoimmune responses to cellular implants in Type 1 Diabetes.

Authors:  Magdalena M Samojlik; Cherie L Stabler
Journal:  Acta Biomater       Date:  2021-06-05       Impact factor: 10.633

9.  Microfluidic enrichment for the single cell analysis of circulating tumor cells.

Authors:  Trifanny Yeo; Swee Jin Tan; Chew Leng Lim; Dawn Ping Xi Lau; Yong Wei Chua; Sai Sakktee Krisna; Gopal Iyer; Gek San Tan; Tony Kiat Hon Lim; Daniel S W Tan; Wan-Teck Lim; Chwee Teck Lim
Journal:  Sci Rep       Date:  2016-02-29       Impact factor: 4.379

Review 10.  Cell microencapsulation with synthetic polymers.

Authors:  Ronke M Olabisi
Journal:  J Biomed Mater Res A       Date:  2014-08-18       Impact factor: 4.396

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