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首页> 外文期刊>Biomacromolecules >Aromatic Nitrogen Mustard-Based Autofluorescent Amphiphilic Brush Copolymer as pH-Responsive Drug Delivery Vehicle
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Aromatic Nitrogen Mustard-Based Autofluorescent Amphiphilic Brush Copolymer as pH-Responsive Drug Delivery Vehicle

机译:基于芳族亚硝酸芥性的自发荧光两亲刷共聚物作为pH-响应药物递送载体

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摘要

Delivery of clinically approved nonfluorescent drugs is facing challenges because it is difficult to monitor the intracellular drug delivery without incorporating any integrated fluorescence moiety into the drug carrier. The present investigation reports the synthesis of a pH-responsive autofluorescent polymeric nanoscaffold for the administration of nonfluorescent aromatic nitrogen mustard chlorambucil (CBL) drug into the cancer cells. Copolymerization of poly(ethylene glycol) (PEG) appended styrene and CBL conjugated N-substituted maleimide monomers enables the formation of well-defined luminescent alternating copolymer. These amphiphilic brush copolymers self-organized in aqueous medium into 25-68 nm nanoparticles, where the CBL drug is enclosed into the core of the self-assembled nanoparticles. In vitro studies revealed similar to 70% drug was retained under physiological conditions at pH 7.4 and 37 degrees C. At endolysosomal pH 5.0, 90% of the CBL was released by the pH-induced cleavage of the aliphatic ester linkages connecting CBL to the maleimide unit. Although the nascent nanoparticle (without drug conjugation) is nontoxic, the drug conjugated nanoparticle showed higher toxicity and superior cell killing capability in cervical cancer (HeLa) cells rather than in normal cells. Interestingly, the copolymer without any conventional chromophore exhibited photoluminescence under UV light irradiation due to the presence of "through-space" is pi-pi interaction between the C=O group of maleimide unit and the adjacent benzene ring of the styrenic monomer. This property helped us intracellular tracking of CBL conjugated autofluorescent nanocarriers through fluorescence microscope imaging. Finally, the 4-(4-nitrobenzyl)pyridine (NBP) colorimetric assay was executed to examine the ability of CBL-based polymeric nanomaterials toward alkylation of DNA.
机译:临床批准的非荧光药物的递送正面临挑战,因为在不将任何一体化荧光部分纳入药物载体的情况下难以监测细胞内药物递送。本研究报告了PH-响应性自荧光聚合物纳米亚烃形的合成用于将非荧光芳族氮芥菜氯苯胺(CB1)药物施用到癌细胞中。聚(乙二醇)(PEG)附着苯乙烯和CBL缀合的N-取代的马来酰亚胺单体的共聚使得能够形成明确定义的发光交替共聚物。这些两亲刷共聚物在水性培养基中自组织成25-68nm纳米颗粒,其中CBL药物被封闭到自组装纳米颗粒的核心中。在体外研究类似于70%药物在pH 7.4和37℃下保留在pH 7.4和37℃的生理条件下。在底糖体pH 5.0中,90%的CBL被连接到马来酰亚胺的脂族酯键的pH诱导的乳化裂解释放单元。虽然新生纳米粒子(不含药物缀合)是无毒的,但药物缀合的纳米颗粒在宫颈癌(HELA)细胞中的毒性和优异的细胞杀伤能力,而不是在正常细胞中。有趣的是,由于存在“通空间”的存在,没有任何常规发色团的共聚物在UV光照射下表现出光致发光,是苯乙烯酰亚胺单元的C = O基团与苯乙烯单体的相邻苯环之间的PI-PI相互作用。该特性通过荧光显微镜成像帮助了美国CBL共轭自荧光纳米载体的细胞内跟踪。最后,进行了4-(4-硝基苄基)吡啶(NBP)比色测定以检查CBL基聚合物纳米材料对DNA烷基化的能力。

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  • 来源
    《Biomacromolecules》 |2019年第1期|共12页
  • 作者单位

    Indian Inst Sci Educ &

    Res Kolkata Polymer Res Ctr Nadia 741246 W Bengal India;

    Indian Inst Sci Educ &

    Res Kolkata Polymer Res Ctr Nadia 741246 W Bengal India;

    Indian Inst Sci Educ &

    Res Kolkata Dept Biol Sci Nadia 741246 W Bengal India;

    Indian Inst Engn Sci &

    Technol Ctr Healthcare Sci &

    Technol Sibpur 711103 W Bengal India;

    Indian Inst Sci Educ &

    Res Kolkata Polymer Res Ctr Nadia 741246 W Bengal India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
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