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In situ regeneration of bioactive coatings enabled by an evolved Staphylococcus aureus sortase A

机译:进化的金黄色葡萄球菌分选酶A促成的生物活性涂层的原位再生

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摘要

Surface immobilization of bioactive molecules is a central paradigm in the design of implantable devices and biosensors with improved clinical performance capabilities. However, in vivo degradation or denaturation of surface constituents often limits the long-term performance of bioactive films. Here we demonstrate the capacity to repeatedly regenerate a covalently immobilized monomolecular thin film of bioactive molecules through a two-step stripping and recharging cycle. Reversible transpeptidation by a laboratory evolved Staphylococcus aureus sortase A (eSrtA) enabled the rapid immobilization of an anti-thrombogenic film in the presence of whole blood and permitted multiple cycles of film regeneration in vitro that preserved its biological activity. Moreover, eSrtA transpeptidation facilitated surface re-engineering of medical devices in situ after in vivo implantation through removal and restoration film constituents. These studies establish a rapid, orthogonal and reversible biochemical scheme to regenerate selective molecular constituents with the potential to extend the lifetime of bioactive films.
机译:生物活性分子的表面固定化是可植入设备和生物传感器设计中的核心范式,具有改进的临床性能。然而,体内表面成分的降解或变性通常限制了生物活性膜的长期性能。在这里,我们展示了通过两步汽提和充电循环重复再生共价固定的生物活性分子单分子薄膜的能力。实验室进化的金黄色葡萄球菌分选酶A(eSrtA)可逆转肽能够在全血存在下快速固定抗血栓形成膜,并允许在体外进行多个膜再生循环,从而保留了其生物活性。此外,在体内植入后,eSrtA转肽通过去除和修复膜成分促进了原位医疗器械的表面再造。这些研究建立了快速,正交和可逆的生化方案,以再生选择性分子成分,并有可能延长生物活性膜的寿命。

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