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Immunocompatible elastomer with increased resistance to the foreign body response

Xianchi Zhou, Zhouyu Lu, Wenzhong Cao, Zihao Zhu, Yifeng Chen, Yanwen Ni, Zuolong Liu, Fan Jia, Ye Yang, Haijie Han, Ke Yao, Weifeng Liu, Youxiang Wang, Jian Ji, Peng Zhang

Nature Communications · 2024 · ▲ 23 citations

Abstract

Polymeric elastomers are extensively employed to fabricate implantable medical devices. However, implantation of the elastomers can induce a strong immune rejection known as the foreign body response (FBR), diminishing their efficacy. Herein, we present a group of immunocompatible elastomers, termed easy-to-synthesize vinyl-based anti-FBR dense elastomers (EVADE). EVADE materials effectively suppress the inflammation and capsule formation in subcutaneous models of rodents and non-human primates for at least one year and two months, respectively. Implantation of EVADE materials significantly reduces the expression of inflammation-related proteins S100A8/A9 in adjacent tissues compared to polydimethylsiloxane. We also show that inhibition or knockout of S100A8/A9 leads to substantial attenuation of fibrosis in mice, suggesting a target for fibrosis inhibition. Continuous subcutaneous insulin infusion (CSII) catheters constructed from EVADE elastomers demonstrate significantly improved longevity and performance compared to commercial catheters. The EVADE materials reported here may enhance and extend function in various medical devices by resisting the local immune responses. Fibrous capsule formation limits the lifetime of implanted devices. Here, the authors report on an elastomer designed to reduce the immune response which shows enhanced device utility in both mice and non-human primate models, including in an insulin infusion catheter model.

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Provenance

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OpenAlex
DOI
10.1038/s41467-024-52023-z
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2026-07-15 MST

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APA
Zhou, X., Lu, Z., Cao, W., Zhu, Z., Chen, Y., Ni, Y., Liu, Z., Jia, F., Yang, Y., Han, H., Yao, K., Liu, W., Wang, Y., Ji, J., &amp; Zhang, P. (2024). Immunocompatible elastomer with increased resistance to the foreign body response. <em>Nature Communications</em>. https://doi.org/10.1038/s41467-024-52023-z
Vancouver
Zhou X, Lu Z, Cao W, Zhu Z, Chen Y, Ni Y, et al. Immunocompatible elastomer with increased resistance to the foreign body response. Nature Communications. 2024. doi:10.1038/s41467-024-52023-z.
BibTeX
@article{xianchi2024Immuno, title = {Immunocompatible elastomer with increased resistance to the foreign body response}, author = {Xianchi Zhou and Zhouyu Lu and Wenzhong Cao and Zihao Zhu and Yifeng Chen and Yanwen Ni and Zuolong Liu and Fan Jia and Ye Yang and Haijie Han and Ke Yao and Weifeng Liu and Youxiang Wang and Jian Ji and Peng Zhang}, journal = {Nature Communications}, year = {2024}, doi = {10.1038/s41467-024-52023-z}, }

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