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Photosensitive Aminoacid-Monomer Linkage and Bioconjugation Applications in Life Sciences and Biotechnology

机译:感光氨基酸-单体连接和生物缀合在生命科学和生物技术中的应用

摘要

This invention is related to preparation of photosensitive ruthenium based aminoacid monomers and oligomers, aminoacid monomer-protein cross-linking using photo sensitat ion and conjugation on micro and nano-structures by ruthenium-chelate based monomers. Its vast range biotechnolgy applications of multifunctional, biocompatible, stabilE and specific micro and nanobio-conjugates, which will stand-alone or simultaneously enable (i) both purification and determination, (ii) both targeting and imaging and theranostics and (iii) catalysis and determination. The construction and method of preparation is applicable to silica materials, superparamagnetic particles, QDs, CNTs, Ag/Au nanoparticles and Au surfaces and polymeric materials. The photosensitive aminoacid monomer linkers can react via chemically and biocompatible to a lot of different micro and nano-surface and then to the protein when they act as a single-step cross-linking reaction using irradiation. The photosensitive conjugation based on click biochemistry can be carried out at mild conditions, independent of pH and temperature, without affecting conformation and function of protein.
机译:本发明涉及光敏钌基氨基酸单体和低聚物的制备,使用光敏离子的氨基酸单体-蛋白质交联以及钌-螯合物基单体在微和纳米结构上的缀合。它在多功能,生物相容性,稳定剂以及特定的微生物和纳米生物缀合物的广泛生物技术应用中,将独立或同时实现(i)纯化和测定,(ii)靶向和成像以及诊断学和(iii)催化和决心。制备的结构和方法适用于二氧化硅材料,超顺磁性颗粒,量子点,碳纳米管,银/金纳米颗粒和金表面以及聚合材料。当光敏氨基酸单体接头通过辐射进行一步一步交联反应时,它们可以通过化学和生物相容性与许多不同的微米和纳米表面发生反应,然后与蛋白质发生反应。基于点击生化的光敏偶联可以在温和的条件下进行,与pH和温度无关,而不会影响蛋白质的构象和功能。

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