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Enlightening advances in polymer bioconjugate chemistry: light-based techniques for grafting to and from biomacromolecules

机译:聚合物生物缀合物化学的启示推进:基于光的嫁接和从生物致摩擦的技术

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Photochemistry has revolutionized the field of polymer–biomacromolecule conjugation. Ligation reactions necessitate biologically benign conditions, and photons have a significant energy advantage over what is available thermally at ambient temperature, allowing for rapid and unique reactivity. Photochemical reactions also afford many degrees of control, specifically, spatio-temporal control, light source tunability, and increased oxygen tolerance. Light-initiated polymerizations, in particular photo-atom-transfer radical polymerization (photo-ATRP) and photoinduced electron/energy transfer reversible addition–fragmentation chain transfer polymerization (PET-RAFT), have been used for grafting from proteins, DNA, and cells. Additionally, the spatio-temporal control inherent to light-mediated chemistry has been utilized for grafting biomolecules to hydrogel networks for many applications, such as 3-D cell culture. While photopolymerization has clear advantages, there are factors that require careful consideration in order to obtain optimal control. These factors include the photocatalyst system, light intensity, and wavelength. This Perspective aims to discuss recent advances of photochemistry for polymer biomacromolecule conjugation and potential considerations while tailoring these systems.
机译:光化学已经彻底改变了聚合物 - 生物致瘤缀合的领域。连接反应需要生物良好的条件,并且光子在环境温度下热量可用的内容具有显着的能量优势,允许快速和独特的反应性。光化学反应还提供多程度的控制,特别是时空控制,光源可调性和增加的氧气耐受性。用于从蛋白质,DNA和细胞移植的光学原子转移自由基聚合(Photo-ATRP)和光抑制的电子/能量转移添加 - 碎片链转移聚合(PET-筏)的光引发聚合。 。另外,已经利用了光介质化学固有的时空对照用于将生物分子移植到水凝胶网络中,用于许多应用,例如3-D细胞培养。虽然光聚合具有明显的优势,但有需要仔细考虑的因素以获得最佳控制。这些因素包括光催化剂系统,光强度和波长。这种观点旨在讨论聚合物生物致瘤共轭的光化学的最近进步以及衡量这些系统的潜在考虑。

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