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High-strength and fibrous capsule–resistant zwitterionic elastomers

机译:高强度和纤维状胶囊抗性的两性离子弹性体

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The high mechanical strength and long-term resistance to the fibrous capsule formation are two major challenges for implantable materials. Unfortunately, these two distinct properties do not come together and instead compromise each other. Here, we report a unique class of materials by integrating two weak zwitterionic hydrogels into an elastomer-like high-strength pure zwitterionic hydrogel via a “swelling” and “locking” mechanism. These zwitterionic-elastomeric-networked (ZEN) hydrogels are further shown to efficaciously resist the fibrous capsule formation upon implantation in mice for up to 1 year. Such materials with both high mechanical properties and long-term fibrous capsule resistance have never been achieved before. This work not only demonstrates a class of durable and fibrous capsule–resistant materials but also provides design principles for zwitterionic elastomeric hydrogels.
机译:对纤维状胶囊形成的高机械强度和长期抗性是植入材料的两个主要挑战。 不幸的是,这两个不同的属性不融合,而是互相妥协。 在这里,我们通过将两个弱两性离子水凝胶与“膨胀”和“锁定”机构相容通过将两个弱两性离子水凝胶整合到弹性体的高强度纯两性离子水凝胶中来报告一类独特的材料。 进一步示出了这些倍噻噻虫 - 弹性体网络(ZEN)水凝胶,以在植入小鼠中致致抗纤维胶囊形成长达1年。 以前从未达到过高机械性能和长期纤维囊性抗性的这种材料。 这项工作不仅展示了一类耐用纤维和纤维状胶囊材料,而且还提供了两性离子弹性体水凝胶的设计原理。

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