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独特尺寸的纳米凝胶交联聚合。

Uniquely sized nanogels crosslinking polymerization.

作者信息

Kusmus Disraëli N M, van Veldhuisen Thijs W, Khan Anzar, Cornelissen Jeroen J L M, Paulusse Jos M J

机构信息

MESA+ Institute for Nanotechnology and TechMed Institute for Health and Biomedical Technologies, Department of Biomolecular Nanotechnology, University of Twente Drienerlolaan 5 7522 Enschede NB Netherlands

Korea University 145 Anam-ro, Anam-dong Seoul Seongbuk-gu Korea.

出版信息

RSC Adv. 2022 Oct 14;12(45):29423-29432. doi: 10.1039/d2ra04123e. eCollection 2022 Oct 11.

Abstract

Nanogels are very promising carriers for nanomedicine, as they can be prepared in the favorable nanometer size regime, can be functionalized with targeting agents and are responsive to stimuli, temperature and pH. This induces shrinking or swelling, resulting in controlled release of a therapeutic cargo. Our interest lies in the controlled synthesis of functional nanogels, such as those containing epoxide moieties, that can be subsequently functionalized. Co-polymerization of glycidyl methacrylate and a bifunctional methacrylate crosslinker under dilute conditions gives rise to well-defined epoxide-functional nanogels, of which the sizes are controlled by the degree of polymerization. Nanogels with well-defined sizes (polydispersity of 0.2) ranging from 38 nm to 95 nm were prepared by means of controlled radical polymerization. The nanogels were characterized in detail by FT-IR, DLS, size exclusion chromatography, NMR spectroscopy, AFM and TEM. Nucleophilic attack with functional thiols or amines on the least hindered carbon of the epoxide provides water-soluble nanogels, without altering the backbone structure, while reaction with sodium azide provides handles for further functionalization click chemistry.

摘要

纳米凝胶是纳米医学中非常有前景的载体,因为它们可以在有利的纳米尺寸范围内制备,可以用靶向剂进行功能化修饰,并且对温度和pH等刺激有响应。这会引起收缩或膨胀,从而实现治疗性药物的控释。我们感兴趣的是功能化纳米凝胶的可控合成,例如含有环氧基团的纳米凝胶,其后续可以进行功能化修饰。甲基丙烯酸缩水甘油酯与双功能甲基丙烯酸交联剂在稀释条件下进行共聚,可得到尺寸明确的环氧官能化纳米凝胶,其尺寸由聚合度控制。通过可控自由基聚合制备了尺寸明确(多分散指数为0.2)、范围在38纳米至95纳米之间的纳米凝胶。通过傅里叶变换红外光谱(FT-IR)、动态光散射(DLS)、尺寸排阻色谱、核磁共振光谱(NMR)、原子力显微镜(AFM)和透射电子显微镜(TEM)对纳米凝胶进行了详细表征。用功能性硫醇或胺对环氧基团中位阻最小的碳进行亲核攻击,可提供水溶性纳米凝胶,而不会改变主链结构,同时与叠氮化钠反应可为进一步的功能化修饰(点击化学)提供连接点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8199/9562763/d7cc8dd49ae6/d2ra04123e-s1.jpg

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