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Multifunctional biodegradable polyacrylamide nanocarriers for cancer theranostics-A 'see and treat' strategy

机译:用于癌症治疗学的多功能可生物降解聚丙烯酰胺纳米载体-“观察与治疗”策略

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We describe here the development of multifunctional nanocarriers, based on amine-functionalized biodegradable polyacrylamide nanoparticles (NPs), for cancer theranostics, including active tumor targeting, fluorescence imaging, and photodynamic therapy. The structural design involves adding primary amino groups and biodegradable cross-linkers during the NP polymerization, while incorporating photodynamic and fluorescent imaging agents into the NP matrix, and conjugating PEG and tumor-targeting ligands onto the surface of the NPs. The as-synthesized NPs are spherical, with an average diameter of 44 nm. An accelerated biodegradation study, using sodium hydroxide or porcine liver esterase, indicated a hydrogel polymer matrix chain collapse within several days. By using gel permeation chromatography, small molecules were detected, after the degradation. In vitro targeting studies on human breast cancer cells indicate that the targeted NPs can be transported efficiently into tumor cells. Incubating the multifunctional nanocarriers into cancer cells enabled strong fluorescence imaging. Irradiation of the photosensitizing drug, incorporated within the NPs, with light of a suitable wavelength, causes significant but selective damage to the impregnated tumor cells, but only inside the illuminated areas. Overall, the potential of polymeric-based NPs as biodegradable, multifunctional nanocarriers, for cancer theranostics, is demonstrated here.
机译:我们在这里描述了基于胺官能化的可生物降解聚丙烯酰胺纳米颗粒(NPs)的多功能纳米载体的开发,用于癌症治疗学,包括活性肿瘤靶向,荧光成像和光动力疗法。结构设计涉及在NP聚合过程中添加伯氨基和可生物降解的交联剂,同时将光动力和荧光成像剂掺入NP基质中,并将PEG和靶向肿瘤的配体缀合到NP的表面上。合成后的NP为球形,平均直径为44 nm。使用氢氧化钠或猪肝酯酶进行的加速生物降解研究表明,水凝胶聚合物基质链在数天内会崩溃。通过使用凝胶渗透色谱法,降解后检测到小分子。对人乳腺癌细胞的体外靶向研究表明,靶向的NP可以有效地转运到肿瘤细胞中。将多功能纳米载体温育到癌细胞中可实现强大的荧光成像。用适当波长的光辐照掺入NP中的光敏药物会对浸渍的肿瘤细胞产生明显但选择性的损害,但仅限于被照射的区域内。总体而言,此处展示了基于聚合物的NPs作为可生物降解的多功能纳米载体用于癌症治疗的潜力。

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