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生物金属有机骨架中的轨迹:生物传感和可持续策略——展望与挑战。

Trajectory in biological metal-organic frameworks: Biosensing and sustainable strategies-perspectives and challenges.

机构信息

Department of Medicinal and Applied Chemistry, Kaohsiung Medical University, Kaohsiung City 807, Taiwan.

Department of Chemistry, Amity Institute of Applied Sciences, Amity University Uttar Pradesh, Noida 201301, India.

出版信息

Int J Biol Macromol. 2023 Dec 31;253(Pt 6):127120. doi: 10.1016/j.ijbiomac.2023.127120. Epub 2023 Oct 10.

Abstract

The ligand attribute of biomolecules to form coordination bonds with metal ions led to the discovery of a novel class of materials called biomolecule-associated metal-organic frameworks (Bio-MOFs). These biomolecules coordinate in multiple ways and provide versatile applications. Far-spread bio-ligands include nucleobases, amino acids, peptides, cyclodextrins, saccharides, porphyrins/metalloporphyrin, proteins, etc. Low-toxicity, self-assembly, stability, designable and selectable porous size, the existence of rigid and flexible forms, bio-compatibility, and synergistic interactions between metal ions have led Bio-MOFs to be commercialized in industries such as sensors, food, pharma, and eco-sensing. The rapid growth and commercialization are stunted by absolute bio-compatibility issues, bulk morphology that makes it rigid to alter shape/porosity, longer reaction times, and inadequate research. This review elucidates the structural vitality, biocompatibility issues, and vital sensing applications, including challenges for incorporating bio-ligands into MOF. Critical innovations in Bio-MOFs' applicative spectrum, including sustainable food packaging, biosensing, insulin and phosphoprotein detection, gas sensing, CO capture, pesticide carriers, toxicant adsorptions, etc., have been elucidated. Emphasis is placed on biosensing and biomedical applications with biomimetic catalysis and sensitive sensor designing.

摘要

生物分子与金属离子形成配位键的配体属性导致了一类新型材料的发现,称为生物分子关联的金属有机骨架(Bio-MOFs)。这些生物分子以多种方式配位,提供了多种应用。广泛存在的生物配体包括核苷酸碱基、氨基酸、肽、环糊精、糖、卟啉/金属卟啉、蛋白质等。低毒性、自组装、稳定性、可设计和可选择的多孔大小、刚性和柔性形式的存在、生物相容性以及金属离子之间的协同相互作用,使得 Bio-MOFs 在传感器、食品、制药和生态感应等行业中实现了商业化。绝对生物相容性问题、使其难以改变形状/孔隙率的块状形态、较长的反应时间和研究不足,阻碍了其快速增长和商业化。本综述阐明了结构活力、生物相容性问题以及重要的传感应用,包括将生物配体纳入 MOF 的挑战。Bio-MOFs 在应用领域的关键创新,包括可持续食品包装、生物传感、胰岛素和磷蛋白检测、气体传感、CO 捕获、农药载体、毒物吸附等,已经被阐明。重点是生物仿生催化和敏感传感器设计的生物传感和生物医学应用。

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