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干细胞-纳米医学系统作为一种治疗诊断生物钆剂,用于靶向中子俘获癌症治疗。

Stem cell-nanomedicine system as a theranostic bio-gadolinium agent for targeted neutron capture cancer therapy.

机构信息

Cell Therapy Center, China Medical University Hospital, Taichung, Taiwan.

College of Pharmacy, Taipei Medical University, Taipei, Taiwan.

出版信息

Nat Commun. 2023 Jan 18;14(1):285. doi: 10.1038/s41467-023-35935-0.

Abstract

The potential clinical application of gadolinium-neutron capture therapy (Gd-NCT) for glioblastoma multiforme (GBM) treatment has been compromised by the fast clearance and nonspecific biodistribution of gadolinium-based agents. We have developed a stem cell-nanoparticle system (SNS) to actively target GBM for advanced Gd-NCT by magnetizing umbilical cord mesenchymal stem cells (UMSCs) using gadodiamide-concealed magnetic nanoparticles (Gd-FPFNP). Nanoformulated gadodiamide shielded by a dense surface composed of fucoidan and polyvinyl alcohol demonstrates enhanced cellular association and biocompatibility in UMSCs. The SNS preserves the ability of UMSCs to actively penetrate the blood brain barrier and home to GBM and, when magnetically navigates by an external magnetic field, an 8-fold increase in tumor-to-blood ratio is achieved compared with clinical data. In an orthotopic GBM-bearing rat model, using a single dose of irradiation and an ultra-low gadolinium dose (200 μg kg), SNS significantly attenuates GBM progression without inducing safety issues, prolonging median survival 2.5-fold compared to free gadodiamide. The SNS is a cell-based delivery system that integrates the strengths of cell therapy and nanotechnology, which provides an alternative strategy for the treatment of brain diseases.

摘要

镝-中子俘获治疗(Gd-NCT)在多形性胶质母细胞瘤(GBM)治疗中的潜在临床应用受到了基于镝的制剂快速清除和非特异性生物分布的影响。我们已经开发了一种干细胞-纳米颗粒系统(SNS),通过使用钆喷替酸隐藏的磁性纳米颗粒(Gd-FPFNP)对脐带间充质干细胞(UMSC)进行磁化,从而主动靶向 GBM 以进行高级 Gd-NCT。由褐藻聚糖和聚乙烯醇组成的致密表面纳米封装的钆喷替酸显示出在 UMSC 中增强的细胞相关性和生物相容性。SNS 保留了 UMSC 主动穿透血脑屏障并归巢到 GBM 的能力,并且当通过外部磁场进行磁导航时,与临床数据相比,肿瘤与血液的比率增加了 8 倍。在荷有原位 GBM 的大鼠模型中,使用单次照射和超低剂量的镝(200μg/kg),SNS 可显著减轻 GBM 进展,而不会引发安全问题,与游离钆喷替酸相比,中位生存期延长了 2.5 倍。SNS 是一种基于细胞的递药系统,它整合了细胞治疗和纳米技术的优势,为治疗脑部疾病提供了一种替代策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d61e/9845336/3388c409f68c/41467_2023_35935_Fig1_HTML.jpg

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