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肿瘤微环境响应性载药纳米凝胶靶向抑制肿瘤淋巴道转移的应用研究

肿瘤微环境响应性载药纳米凝胶靶向抑制肿瘤淋巴道转移的应用研究
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  • 批准号:81501571
  • 批准年度: 2015年
  • 学科分类:药物、基因载体系统(H1818) |
  • 项目负责人:戴婷婷
  • 负责人职称:医师
  • 依托单位:上海交通大学
  • 资助金额:18万元
  • 项目类别:青年科学基金项目
  • 研究期限:2016年01月01日 至 2018年12月31日
  • 中文关键词: 肿瘤微环境响应性载药;纳米凝胶;靶向;肿瘤;淋巴道
  • 英文关键词:tumor-microenvironment responsive;nano-drug carrier;targeted therapy;controlled drug release;lymphat

项目摘要

中文摘要

淋巴转移是恶性肿瘤转移的主要途径,化疗是其重要治疗措施,但因无法实现靶向给药和可控释药导致治疗效果差。纳米凝胶因具有粒径可控性、环境响应性和药物负载能力,有望成为理想的肿瘤淋巴道转移抑制剂。然而,其应用主要局限于肿瘤原发灶的治疗,尚无报道在抑制肿瘤淋巴道转移方面的应用。本课题组前期已证实一定粒径范围的葡聚糖基纳米凝胶能够靶向定位淋巴道,受此启发,拟研发一种肿瘤微环境响应性载药纳米凝胶用来抑制肿瘤淋巴道转移,但尚需明确几个核心问题:1.如何调控粒径实现靶向淋巴道;2.能否实现肿瘤微环境响应性释药;3.能否有效预防和治疗肿瘤淋巴道转移。针对上述问题,本项目拟通过调控合成参数控制粒径分布以实现淋巴道靶向定位,利用细胞学实验研究其肿瘤微环境响应性释药性能及体外抑瘤能力。同时结合肿瘤淋巴道转移的动物模型,从预防和治疗两方面评估其抑制肿瘤淋巴道转移的可行性,以期为抑制恶性肿瘤的淋巴道转移提供新思路。

英文摘要

Malignant tumor metastasis mainly occurs via lymphatic ways, and chemical therapy are widely used in the treatment of lymphatic tumor metastasis but suffers from limited efficiency for non-specific distribution. With its controllable size, environment-responsiveness and drug-loading ability, nanogels are very promising carriers to load anti-cancer drugs, but currently it is mainly used for the treatment of primary tumors, the possibility of nanogels serve as tumor lymphatic metastasis inhibitor is seldom investigated. We have found that dextran-based nanogels with a certain size can selectively accumulate in lymphatic vessel in previous studies, so developing a tumor-microenvironment responsive anti-cancer drug loaded nanogels to targetedly inhibit lymphatic tumor metastasis is very worthtrying. Certain issues need to be clarified: 1. How to control nanogels’ size to target lymphatic vessels; 2. whether the nanogels can release its loaded drug in a tumor-mircoenvironment responsive way; 3. whether the nanogels can effectively prevent and treat tumor lymphatic metastasis. Based on these questions, this project is aimed to fabricate an ideal tumor lymphatic metastasis inhibitor through adjusting the fabrication parameters to guarantee a proper size range to target lymphatic vessels, investigating the tumor-microenvironment responsive release of anti-cancer drugs via in vitro drug release profile and cell-based experiments, and confirming the anti-cancer effect of the nanogels both on cell and tumor lymphatic metastasis animal models. For animal models, we would like to evaluate the ability of the nanogels to prevent tumor metastasis before metastasis actually happens and to inhibit tumor metastasis after it happens, so as to offer some new knowledge for nanogels as lymphatic metastasis inhibitors.

评估说明

    国家自然科学基金项目“肿瘤微环境响应性载药纳米凝胶靶向抑制肿瘤淋巴道转移的应用研究”发布于爱科学iikx,并永久归类于相关科学基金导航中,仅供广大科研工作者查询、学习、选题参考。国科金是根据国家发展科学技术的方针、政策和规划,以及科学技术发展方向,面向全国资助基础研究和应用研究,发挥着促进我国基础研究源头创新的作用。国科金的真正价值在于它能否为科学进步和社会发展带来积极的影响。

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