用于乳腺癌和肝癌治疗以及肿瘤相关巨噬细胞免疫调节的酶反应甘露糖接枝磁性纳米粒子。

Expert opinion on drug delivery Pub Date : 2024-04-01 Epub Date: 2024-05-06 DOI:10.1080/17425247.2024.2347300
Gholam Hossein Darya, Omid Zare, Hamid Reza Karbalaei-Heidari, Sedighe Zeinali, Heather Sheardown, Banafsheh Rastegari
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引用次数: 0

摘要

背景:化疗免疫疗法可改变肿瘤微环境,从而增强免疫反应,改善化疗效果。本研究介绍了一种双臂化疗免疫疗法策略,即使用前列地辛负载甘露聚糖包被的磁性纳米颗粒(PG@M-MNPs),在抗击乳腺肿瘤进展的同时重新极化肿瘤相关巨噬细胞(TAM):方法:分析了一步法合成的M-MNPs的理化性质,包括X射线衍射、傅立叶变换红外光谱、DLS、VSM、TEM、ZETA电位分析和药物负载含量。利用荧光显微镜、激光共聚焦扫描显微镜和流式细胞术研究了 PG@M-MNPs 的生物相容性、癌症特异性、细胞摄取和分布。此外,还研究了PG和PG@M-MNPs处理M1和M2巨噬细胞亚群后IL-6和ARG-1的表达水平:结果:成功合成了 M-MNPs,并对其进行了表征,其尺寸低于 100 nm。M-MNPs释放PG的动力学表现出持续和可控的模式,酶触发释放。细胞毒性评估显示,PG@M-MNPs 对癌细胞的选择性增强,而对正常细胞的影响极小。此外,免疫调节活性表明 PG@M-MNPs 具有改变巨噬细胞极化动态的潜力:这些发现凸显了乳腺癌靶向治疗的潜力,为改善治疗效果和提高患者生存率提供了新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enzyme-responsive mannose-grafted magnetic nanoparticles for breast and liver cancer therapy and tumor-associated macrophage immunomodulation.

Background: Chemo-immunotherapy modifies the tumor microenvironment to enhance the immune response and improve chemotherapy. This study introduces a dual-armed chemo-immunotherapy strategy combating breast tumor progression while re-polarizing Tumor-Associated Macrophage (TAM) using prodigiosin-loaded mannan-coated magnetic nanoparticles (PG@M-MNPs).

Methods: The physicochemical properties of one-step synthetized M-MNPs were analyzed, including X-ray diffraction, FTIR, DLS, VSM, TEM, zeta potential analysis, and drug loading content were carried out. Biocompatibility, cancer specificity, cellular uptake, and distribution of PG@M-MNPs were investigated using fluorescence and confocal laser scanning microscopy, and flow cytometry. Furthermore, the expression levels of IL-6 and ARG-1 after treatment with PG and PG@M-MNPs on M1 and M2 macrophage subsets were studied.

Results: The M-MNPs were successfully synthesized and characterized, demonstrating a size below 100 nm. The release kinetics of PG from M-MNPs showed sustained and controlled patterns, with enzyme-triggered release. Cytotoxicity assessments revealed an enhanced selectivity of PG@M-MNPs against cancer cells and minimal effects on normal cells. Additionally, immuno-modulatory activity demonstrates the potential of PG@M-MNPs to change the polarization dynamics of macrophages.

Conclusion: These findings highlight the potential of a targeted approach to breast cancer treatment, offering new avenues for improved therapeutic outcomes and patient survival.

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