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基于红细胞膜的靶向纳米释药系统抗乳腺癌的肺转移研究

批准号:
81630052
项目类别:
重点项目
资助金额:
275.0 万元
负责人:
李亚平
学科分类:
医用生物材料与仿生材料
结题年份:
2021
批准年份:
2016
项目状态:
已结题
项目参与者:
张鹏程、苏婧晗、王当歌、王亭亭、冉伟、郎天群、邹莉莉

项目摘要

结项摘要

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中文摘要
肺转移是导致乳腺癌死亡的主要原因,本项目拟选择聚(ε-己内酯)(PCL)等包载紫杉烷类药物或共载以肿瘤转移EMT中所涉及的MMPs、Snail及Twist等为靶点的抗转移药物(Ator或DSF等)的纳米粒为内核,将光敏剂DiR或Ce6包入红细胞膜中,并采用RGD或MMP-9酶敏感的ACPP多肽等对其进行靶向性修饰,设计构建基于红细胞膜的靶向共输送乳腺癌化疗药物和光疗剂的新型功能化纳米载药系统(PN@tDRV)。选择乳腺癌高转移性4T1和MDA-MB-231细胞等,采用冷冻电镜、Western Blot等技术揭示PN@tDRV的结构、理化特性与抗转移效果和细胞毒性关系,阐明PN@tDRV的细胞内和体内转运过程,抗乳腺癌肺转移机理及抗转移药与化疗药协同增效的机制,并评价其抗原位瘤生长和抗乳腺癌肺转移的效果及初步生物安全性。项目思路新颖,有望在新型药物靶向控释系统抗乳腺癌肺转移方面取得重大突破。
英文摘要
Lung metastasis is the leading cause of death for patients with breast cancer. In this project, poly(ε-caprolactone) (PCL) nanoparticles as core, loading with taxanes alone or together with anti-metastasis drugs (Ator and DSF.) that target key players (MMPs, Snail and Twist) in the EMT process during the lung metastasis of breast cancer, will be coated with red blood cell (RBC) membranes containing photosensitizers (such as DiR or Ce6) and targeting ligands (RGD or MMP-9-responsive ACCP) to construct RBC membrane-based breast cancer targeting and chemotherapeutics/photosensitizers co-delivery system (PN@tDRV). Highly metastatic breast cancer 4T1 cells, et al. will be chosen as models, and techniques such as cryo-TEM and Western blot, et al. will be applied to reveal the relationship between the structures, physicochemical properties of PN@tDRV and their anti-metastasis effects or cytotoxicity, explore the intracellular and in vivo performance of PN@tDRNs, demonstrate the mechanisms that PN@tDRV inhibit the lung metastasis of breast cancer, achieve synergistic effect between anti-metastasis drugs and chemotherapeutic agents, and evaluate the activity in suppressing the growth of primary tumors, the lung metastasis and the preliminary biological safety. The idea of this project is new, and it is hopeful to obtain a major breakthrough in the study on anti-cancer drugs based on nanotechnology and provide valuable references for improving the therapeutic efficacy against metastatic breast cancer.
肺转移是导致乳腺癌死亡的主要原因,发展易被肿瘤细胞摄取、药物释放可控的红细胞膜包覆的纳米载药系统有望在抗乳腺癌肺转移方面取得突破。本项目构建了4种基于红细胞膜的新型纳米递药系统,显著延长了紫杉醇、阿霉素、多西他赛和顺铂等药物的血液循环时间,增加了瘤内药物蓄积,显著抑制了乳腺癌原发灶肿瘤生长和肺转移。证明了红细胞膜包覆与光敏剂的光热和光动力效应结合,能够增强药物的瘤内渗透性和控制药物释放;证明乙酰肝素酶敏感性药物释放机制可实现肿瘤特异性细胞毒性;证明基于红细胞膜的化疗药-光敏剂联合递药系统能够实现化疗和光热、光动力疗法的协同增效。相关研究在国际重要学术刊物上发表高质量论文21篇,其中SCI论文19篇,IF>30的3篇,20<IF<30的1篇,10<IF<20的12篇。申请相关专利3项,获授权2项。培养博士研究生9人,硕士研究生6人。获2020年国家自然科学二等奖1项,获2020年中国药学会科学技术一等奖1项。该研究成果为利用新型纳米载药系统治疗转移性乳腺癌提供了新的思路和手段,对有效提高乳腺癌治疗效果、降低乳腺癌的死亡率具有重要参考意义。
期刊论文列表
专著列表
科研奖励列表
会议论文列表
专利列表
DOI: 10.7150/thno.20118
发表时间: 2017
期刊: Theranostics
影响因子: 12.4
作者: [Zhai Y, Su J, Ran W, Zhang P, Yin Q, Zhang Z, Yu H, Li Y]
通讯作者: Li Y
Ternary Regulation of Tumor Microenvironment by Heparanase-Sensitive Micelle-Loaded Monocytes Improves Chemo-Immunotherapy of Metastatic Breast Cancer
乙酰肝素酶敏感胶束负载单核细胞对肿瘤微环境的三元调节改善了转移性乳腺癌的化学免疫治疗
DOI: 10.1002/adfm.202007402
发表时间: 2020-12-16
期刊: ADVANCED FUNCTIONAL MATERIALS
影响因子: 19
作者: [Lang, Tianqun, Zheng, Zhong, Yin, Qi]
通讯作者: Yin, Qi
Progress on cells-derived biomimetic drug delivery systems for cancer therapy
细胞源性仿生药物递送系统用于癌症治疗的研究进展
DOI: --
发表时间: 2018
期刊: Advanced Therapeutics
影响因子: 4.6
作者: [Tianqun Lang, Qi Yin, Yaping Li]
通讯作者: Yaping Li
Self-assembling mertansine prodrug improves tolerability and efficacy of chemotherapy against metastatic triple-negative breast cancer
自组装美坦辛前药可改善转移性三阴性乳腺癌化疗的耐受性和疗效
DOI: 10.1016/j.jconrel.2019.12.027
发表时间: 2020-02-01
期刊: JOURNAL OF CONTROLLED RELEASE
影响因子: 10.8
作者: [Ran, Wei, Liu, Xiaoyu, Zhang, Pengcheng]
通讯作者: Zhang, Pengcheng
21
    编码CLDN6/CD3双特异性抗体的膜脂复合物仿生递送系统增强实体瘤免疫治疗
    靶向肿瘤的仿生纳米囊泡提高表观遗传抗癌疗效
    三元协同的酶敏感纳米载药系统改善肿瘤免疫检查点阻断治疗效果的研究
    靶向治疗肿瘤的新型阳离子聚(β-氨基酯)/RNA自组装纳米粒的研究
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