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General Reagent Free Route to pH Responsive Polyacryloyl Hydrazide Capped Metal Nanogels for Synergistic Anticancer Therapeutics

机译:用于增效抗癌治疗的pH值敏感的聚丙烯酰肼基帽金属纳米凝胶的一般免试剂路线

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Herewith, we report a facile synthesis of pH responsive polyacryloyl hydrazide (Pi) capped silver (Ag) or gold (Au) nanogels for anticancer therapeutic applications. A cost-effective instant synthesis of PAH-Ag or PAH-Au nano-particles (NPs) possessing controllable particle diameter and narrow size distribution was accomplished by adding AgNO3 or AuCl to the aqueous solution of PAR under ambient conditions without using any additional reagent. PAR possessing carbonyl hydrazide pendant functionality served as both reducing and capping agent to produce and stabilize the NPs, The stability analysis by UV-vis, dynamic light scattering, and transmission electron microscopy techniques suggested that these NPs may be stored in a refrigerator for at least lip to 2 weeks with negligible change in conformation. The average hydrodynamic size of PAH-Ag NPs synthesized using 0.2 mmol/L AgNO3 changed from 122 to 226 nm on changing the pH of the medium from 5.4 to 7.4, which is a characteristic property of pH responsive nanogel. Camptothecin (CPT) with adequate loading efficiency (6.3%) was encapsulated in the PAH-Ag nanogels. Under pH 5.4 conditions, these nanogels released 78% of the originally loaded CPT over a period of 70 h. The antiproliferative potential of PAR-Ag-CPT nanogels (at [CPT] = 0.6 mu g/mL) against MCF-7 breast adenocarcinoma cells were similar to 350% higher Compared to that of the free CPT as evidenced by high cellular internalization of these nanogels. Induction of apoptosis in MCF-7 breast adeno-carcinoma cells by PAH-Ag-CPT nanogels was evidenced by accumulation of late apoptotic cell population. Drug along with the PAH-Ag NPs were also encapsulated in a pH responsive hydrogel through in situ gelation at room temperature using acrylic acid as the cross-linker. The resulting hydrogel released quantitative amounts of both drug and PAH-Ag NPs over a period of 16 h. The simplicity Of synthesis and ease of drug loading with efficient release render these NPs a viable candidate for various biomedical applications, and moreover this synthetic procedure may be extended to Other metal NPs.
机译:据此,我们报告了用于抗癌治疗应用的pH响应型聚丙烯酰肼(Pi)盖银(Ag)或金(Au)纳米凝胶的简便合成。通过在环境条件下将AgNO3或AuCl添加到PAR水溶液中,无需使用任何额外的试剂,即可实现具有成本可控的粒径和窄尺寸分布的PAH-Ag或PAH-Au纳米颗粒(NPs)的经济高效即时合成。具有羰基酰肼侧基官能团的PAR既可以作为还原剂也可以作为封端剂来生产和稳定NPs。通过紫外可见光,动态光散射和透射电子显微镜技术进行的稳定性分析表明,这些NPs可以至少在冰箱中储存至少唇部至2周的构象变化可忽略不计。当介质的pH值从5.4改变为7.4时,使用0.2 mmol / L AgNO3合成的PAH-Ag NPs的平均流体动力学尺寸从122 nm改变为226 nm,这是pH响应纳米凝胶的特征。喜树碱(CPT)具有足够的负载效率(6.3%)被封装在PAH-Ag纳米凝胶中。在pH 5.4的条件下,这些纳米凝胶在70小时内释放了最初装载的CPT的78%。 PAR-Ag-CPT纳米凝胶(在[CPT] = 0.6μg / mL时)对MCF-7乳腺癌细胞的抗增殖潜力比游离CPT高约350%,这是由于这些细胞的高度细胞内在化所证明的纳米凝胶。 PAH-Ag-CPT纳米凝胶对MCF-7乳腺癌细胞的凋亡诱导作用是由晚期凋亡细胞群的积累证明的。药物和PAH-Ag NPs也通过在室温下使用丙烯酸作为交联剂原位凝胶化而封装在pH响应水凝胶中。所得水凝胶在16小时内释放了定量的药物和PAH-Ag NP。合成的简单性和有效释放药物的简便性使这些NPs成为各种生物医学应用的可行候选者,此外,该合成程序还可扩展到其他金属NPs。

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