研究概要
本研究克服了既往仿生策略中细胞来源不足和细胞异质性的问题,开发出可高效穿越血脑屏障的抗胶质瘤靶向药物仿生纳米颗粒。
中文摘要
胶质瘤术后极易复发,目前缺乏有效的术后辅助药物。开发能够高效穿过血脑屏障并靶向术后胶质瘤的药物,对于克服胶质瘤治疗挑战至关重要。细胞膜修饰纳米材料在穿越血脑屏障治疗胶质瘤方面显示潜力,但细胞来源和异质性是当前策略的瓶颈。我们此前证明,永生化间充质干细胞膜保留天然肿瘤归巢能力,可提供稳定、可规模化且均一的持续肿瘤靶向来源。本研究提出使用具有肿瘤归巢能力的永生化间充质干细胞质膜作为载体,制备负载shCD73和多柔比星的仿生纳米颗粒,命名为Lipo-PM@shCD73@DOX。借助肿瘤归巢因子,该仿生纳米颗粒可有效穿过血脑屏障并靶向术后残留胶质瘤组织,实现基因治疗和化疗。研究显示,该仿生纳米颗粒可抑制细胞增殖并诱导凋亡,从而延缓胶质瘤进展;体内外生物安全性也得到确认。总之,本研究克服了既往仿生策略中细胞来源不足和细胞异质性的问题,开发出一种能够有效穿越血脑屏障的抗胶质瘤靶向仿生药物纳米颗粒,为增强术后治疗、延缓复发提供了新型辅助方案。
展开英文摘要原文
Glioma is highly prone to recurrence post-surgery, and effective postoperative adjuvant therapeutic agents are lacking. Developing drugs that can efficiently cross the blood-brain barrier and target postoperative glioma is crucial for overcoming the challenges associated with the treatment of glioma. Nanomaterials modified with cell membranes have shown promise in crossing the blood-brain barrier for the treatment of glioma, but the origin of the cells as well as their heterogeneity are the current bottlenecks of this strategy. Previously, we demonstrated that immortalized mesenchymal stem cell membranes retain natural tumor-homing capability and offer a stable, scalable, and uniform source for sustained tumor targeting. Here, we proposed the use of immortalized mesenchymal stem cell plasma membranes with tumor-homing properties as carriers to develop biomimetic nanoparticles loaded with shCD73 and doxorubicin, named Lipo-PM@shCD73@DOX. By harnessing the tumor-homing factors, the developed biomimetic nanoparticles effectively crossed the blood-brain barrier and targeted postoperative residual glioma tissues to achieve postoperative gene therapy and chemotherapy for glioma. The present study demonstrates the therapeutic efficacy of biomimetic nanoparticles in delaying glioma progression by inhibiting cellular proliferation and inducing apoptosis. Additionally, we confirmed the in vitro and in vivo biosafety of biomimetic nanoparticles. In conclusion, this study overcame the problems of insufficient cell source and cellular heterogeneity in previous mimetic strategies and developed anti-glioma targeting drug biomimetic nanoparticles that efficiently cross the blood-brain barrier. It constitutes a novel anti-glioma adjuvant that enhances postoperative therapy and delays recurrence.
论文信息
- 作者
- Zhang Y、Wang Y、Li B、Han Y、Du J、Chen Y、Ye J、Luo C
- 第一作者单位
- Department of Neurosurgery, Institute of Neuroscience, The Second Affiliated Hospital of Guangzhou Medical University, Guangzhou, China; The National Key Clinical Specialty, Department of Neurosurgery, Zhujiang Hospital, Southern Medical University, Guangzhou, China.China
- 通讯作者单位
- Department of Neurosurgery, Institute of Neuroscience, The Second Affiliated Hospital of Guangzhou Medical University, Guangzhou, China. Electronic address: jiyunxiang@gzhmu.edu.cn.China
- 文献类型
- 非美国政府资助研究
- 期刊
- Journal of controlled release : official journal of the Controlled Release Society2025 Dec 10