Design Principles Of Inorganic-Protein Hybrid Materials for Biomedicine

IF 22.5
Hao Liu, Xiaohui Liu, Hui Jiang, Xuemei Wang
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引用次数: 0

Abstract

Inorganic protein hybrid materials (IPHMs) due to editable structure present unrivalled potential at the intersection of synthetic biology and materials science. The synthesis of IPHMs with a high degree of biosafety from bioactive units represents a shift in material design and synthesis. This paper focuses on a review of the structural basis and design principles of proteins for the synthesis of IPHMs with specific physical and chemical functions. It also provides a valuable reference for the design of emerging IPHMs through the conformational relationship of the IPHMs, which extends the potential applications of IPHMs. In addition, the construction strategy of the reaction system for the synthesis of hybrid materials is analyzed from the perspective of synthetic biology. The possibility of engineering and batch synthesis of IPHMs is discussed. Based on the physicochemical properties of different hybrid materials and the applied-oriented research on biomedical optical imaging and multimodal therapy, the idea of synthesis of in situ hybrid materials is proposed. Ultimately, the trends and challenges of synthetic biology for IPHMs are speculated in detail.

Abstract Image

生物医学用无机-蛋白质杂化材料的设计原理
无机蛋白质杂化材料由于其可编辑的结构,在合成生物学和材料科学的交叉领域呈现出无与伦比的潜力。从生物活性单位合成具有高度生物安全性的iphm代表了材料设计和合成的转变。本文综述了合成具有特定物理和化学功能的外源干扰素所需蛋白质的结构基础和设计原则。同时,本文还通过对分子间构象关系的研究,为新型分子间构象的设计提供了有价值的参考,拓展了分子间构象的潜在应用领域。此外,从合成生物学的角度分析了杂化材料合成反应体系的构建策略。讨论了工程合成和批量合成iphm的可能性。基于不同杂化材料的物理化学性质,以及在生物医学光学成像和多模态治疗方面的应用研究,提出了原位杂化材料合成的思路。最后,对合成生物学的发展趋势和挑战进行了详细的推测。
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CiteScore
17.20
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