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Nanogels as Pharmaceutical Carriers: Finite Networks of Infinite Capabilities

机译:纳米凝胶作为药物载体:无限能力的有限网络

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摘要

Nanogels are swollen nanosized networks composed of hydrophilic or amphiphilic polymer chains. They are developed as carriers for the transport of drugs, and can be designed to spontaneously incorporate biologically active molecules through formation of salt bonds, hydrogen bonds, or hydrophobic interactions. Polyelectrolyte nano-gels can readily incorporate oppositely charged low-molecular-mass drugs and biomacromolecules such as oligo- and polynucleotides (siRNA, DNA) as well as proteins. The guest molecules interact electrostatically with the ionic polymer chains of the gel and become bound within the finite nanogel. Multiple chemical functionalities can be employed in the nanogels to introduce imaging labels and to allow targeted drug delivery. The latter can be achieved, for example, with degradable or cleavable cross-links. Recent studies suggest that nanogels have a very promising future in biomedical applications.
机译:纳米凝胶是由亲水或两亲性聚合物链组成的溶胀的纳米级网络。它们被开发为用于药物运输的载体,并且可以设计成通过形成盐键,氢键或疏水相互作用自发地掺入生物活性分子。聚电解质纳米凝胶可以很容易地掺入带相反电荷的低分子药物和生物大分子,例如寡核苷酸和多核苷酸(siRNA,DNA)以及蛋白质。客体分子与凝胶的离子聚合物链发生静电相互作用,并结合在有限的纳米凝胶中。纳米凝胶中可以采用多种化学功能,以引入成像标记并允许靶向药物递送。后者可以例如通过可降解或可裂解的交联来实现。最近的研究表明,纳米凝胶在生物医学应用中具有非常有前途的未来。

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