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首页> 外文期刊>Biomacromolecules >Tumor Specific and Renal Excretable Star-like Triblock Polymer-Doxorubicin Conjugates for Safe and Efficient Anticancer Therapy
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Tumor Specific and Renal Excretable Star-like Triblock Polymer-Doxorubicin Conjugates for Safe and Efficient Anticancer Therapy

机译:肿瘤特异性和肾外外恒星样Triblock聚合物 - 多柔比星缀合物,用于安全和有效的抗癌治疗

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摘要

Efficient tumor accumulation and body clearance are two paralleled requirements for ideal nanomedicines. However, it is hard for both to be met simultaneously. The inefficient clearance often restrains the application of drug delivery systems (DDSs), especially for high-dosage administration. In this study, the star-like and block structures are combined to enhance the tumor specific targeting of the parent structures and obtain additional renal excretion property. The influences of polymer architectures and chemical compositions on the physicochemical and biological properties, particularly the simultaneous achievement of tumor accumulation and renal clearance, have been investigated. Among the tested conjugates, an eight-arm triblock star polymer based on poly(ethylene glycol) (PEG) and poly(N-(2-hydroxyl) methacrylamide) (PHPMA) is found to simultaneously fulfill the requirements of superior tumor accumulation and efficient renal clearance due to the appropriate micelle size and reversible aggregation process. On the basis of this conjugate, 60 mg/kg of Dox equivalent (much higher than the maximum tolerated dose (MTD) of Dox) can be administered to efficiently suppress tumor growth without causing any obvious toxicity. This work provides a new approach to design polymer-drug conjugates for tumor specific application, which can simultaneously address the efficacy and safety concerns.
机译:高效的肿瘤积累和身体间隙是理想纳米型素的两个平行要求。但是,两者都很难同时满足。效率低下的间隙通常限制药物递送系统(DDS)的应用,特别是对于高剂量给药。在该研究中,组合星状和嵌段结构以增强母体结构的肿瘤特异性靶向并获得额外的肾脏排泄性能。研究了聚合物架构和化学组成对物理化学和生物学性质的影响,特别是同时实现肿瘤积聚和肾间隙。在测试的缀合物中,发现基于聚(乙二醇)(PEG)和聚(N-(2-羟基)甲基丙烯酰胺)(PHPMA)的八臂三嵌段恒星聚合物同时满足优异的肿瘤积累和有效的要求由于适当的胶束尺寸和可逆聚集过程导致的肾间隙。在该缀合物的基础上,可以给予60mg / kg DOX等效物(远高于DOX的最大耐受剂量(MTD)以有效地抑制肿瘤生长而不会引起任何明显的毒性。这项工作提供了一种新方法来设计肿瘤特异性应用的聚合物 - 药物缀合物,其可以同时解决疗效和安全问题。

著录项

  • 来源
    《Biomacromolecules 》 |2018年第7期| 共14页
  • 作者单位

    Beijing Univ Chem Technol State Key Lab Organ Inorgan Composites Beijing Lab Biomed Mat Coll Life Sci &

    Technol Beijing 100029 Peoples R China;

    Chinese Minist Hlth Beijing Hosp Key Lab Geriatr Beijing 100730 Peoples R China;

    Beijing Univ Chem Technol State Key Lab Organ Inorgan Composites Beijing Lab Biomed Mat Coll Life Sci &

    Technol Beijing 100029 Peoples R China;

    Beijing Univ Chem Technol State Key Lab Organ Inorgan Composites Beijing Lab Biomed Mat Coll Life Sci &

    Technol Beijing 100029 Peoples R China;

    Beijing Univ Chem Technol State Key Lab Organ Inorgan Composites Beijing Lab Biomed Mat Coll Life Sci &

    Technol Beijing 100029 Peoples R China;

    Beijing Univ Chem Technol State Key Lab Organ Inorgan Composites Beijing Lab Biomed Mat Coll Life Sci &

    Technol Beijing 100029 Peoples R China;

    Beijing Univ Chem Technol State Key Lab Organ Inorgan Composites Beijing Lab Biomed Mat Coll Life Sci &

    Technol Beijing 100029 Peoples R China;

    Beijing Univ Chem Technol State Key Lab Organ Inorgan Composites Beijing Lab Biomed Mat Coll Life Sci &

    Technol Beijing 100029 Peoples R China;

    Beijing Univ Chem Technol State Key Lab Organ Inorgan Composites Beijing Lab Biomed Mat Coll Life Sci &

    Technol Beijing 100029 Peoples R China;

    Beijing Univ Chem Technol State Key Lab Organ Inorgan Composites Beijing Lab Biomed Mat Coll Life Sci &

    Technol Beijing 100029 Peoples R China;

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

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