作者
Richard P Tan, Nicole Hallahan, Elena Kosobrodova, Praveesuda L Michael, Fei Wei, Miguel Santos, Yuen Ting Lam, Alex HP Chan, Yin Xiao, Marcela MM Bilek, Peter Thorn, Steven G Wise
发表日期
2020/12/14
期刊
ACS Applied Materials & Interfaces
卷号
12
期号
51
页码范围
56908-56923
出版商
American Chemical Society
简介
Encapsulation devices are an emerging barrier technology designed to prevent the immunorejection of replacement cells in regenerative therapies for intractable diseases. However, traditional polymers used in current devices are poor substrates for cell attachment and induce fibrosis upon implantation, impacting long-term therapeutic cell viability. Bioactivation of polymer surfaces improves local host responses to materials, and here we make the first step toward demonstrating the utility of this approach to improve cell survival within encapsulation implants. Using therapeutic islet cells as an exemplar cell therapy, we show that internal surface coatings improve islet cell attachment and viability, while distinct external coatings modulate local foreign body responses. Using plasma surface functionalization (plasma immersion ion implantation (PIII)), we employ hollow fiber semiporous poly(ether sulfone) (PES …
引用总数
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RP Tan, N Hallahan, E Kosobrodova, PL Michael… - ACS Applied Materials & Interfaces, 2020