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聚乙二醇化 pH 响应脂质体增强紫杉醇在 MCF-7 乳腺癌细胞中的细胞内摄取和细胞毒性。

PEGylated pH-Responsive Liposomes for Enhancing the Intracellular Uptake and Cytotoxicity of Paclitaxel in MCF-7 Breast Cancer Cells.

机构信息

Shobhaben Pratapbhai Patel School of Pharmacy & Technology Management, SVKM's NMIMS (Deemed to Be University), Mumbai, India.

出版信息

AAPS PharmSciTech. 2024 Sep 17;25(7):216. doi: 10.1208/s12249-024-02930-7.

Abstract

This study aimed to develop paclitaxel (PTX)-loaded PEGylated (PEG)-pH-sensitive (SpH) liposomes to enhance drug delivery efficiency and cytotoxicity against MCF-7 breast cancer cells. PTX-loaded PEG-SpH liposomes were prepared using the thin film hydration method. ATR-FTIR compatibility studies revealed no significant interactions among liposome formulation components. TEM images confirmed spherical morphology, stability, and an ideal size range (180-200 nm) for improved blood circulation. At pH 5.5, liposomes exhibited increased size and positive zeta potential, indicating pH-sensitive properties due to CHEMS response to the acidic tumor microenvironment. Conversely, at pH 7.4, liposomes showed a slightly larger size (199.25 ± 1.64 nm) and a more negative zeta potential (-36.94 ± 0.32 mV), suggesting successful PEG-SpH surface modification, enhancing stability, and reducing aggregation. PTX-loaded PEG-SpH liposomes demonstrated high encapsulation efficiency (84.57 ± 0.92% w/w) and drug loading capacity (4.12 ± 0.26% w/w). In-vitro drug release studies revealed accelerated first-order PTX release at pH 5.5 and a controlled zero-order release at pH 7.4. Cellular uptake studies on MCF-7 cells demonstrated enhanced PTX uptake, attributed to mPEG-PCL incorporation prolonging circulation time and CHEMS facilitating PTX release in the tumor microenvironment. Furthermore, PTX-loaded PEG-SpH liposomes exhibited significantly improved cytotoxicity with an IC value of 1.107 µM after 72-h incubation, approximately 90% lower than plain PTX solution. Stability studies confirmed the robustness of the liposomal formulation under various storage conditions. These findings highlight the potential of PEGylated pH-responsive liposomes as effective nanocarriers for enhancing PTX therapy against breast cancer.

摘要

本研究旨在开发紫杉醇(PTX)负载的聚乙二醇化(PEG)-pH 敏感(SpH)脂质体,以提高药物传递效率和对 MCF-7 乳腺癌细胞的细胞毒性。采用薄膜水化法制备载紫杉醇的 PEG-SpHLiposomes。ATR-FTIR 相容性研究表明脂质体制剂成分之间没有明显的相互作用。TEM 图像证实了球形形态、稳定性和理想的尺寸范围(180-200nm),以改善血液循环。在 pH5.5 时,脂质体表现出增大的粒径和正的 zeta 电位,表明由于 CHEMS 对酸性肿瘤微环境的响应,具有 pH 敏感性。相反,在 pH7.4 时,脂质体的粒径稍大(199.25±1.64nm),zeta 电位更负(-36.94±0.32mV),表明成功进行了 PEG-SpHLiposome 的表面修饰,增强了稳定性并减少了聚集。载紫杉醇的 PEG-SpHLiposomes 表现出高的包封效率(84.57±0.92%w/w)和载药量(4.12±0.26%w/w)。体外药物释放研究表明,在 pH5.5 时,PTX 以快速的一级释放,在 pH7.4 时以控制的零级释放。MCF-7 细胞的细胞摄取研究表明,由于 mPEG-PCL 的掺入延长了循环时间,并且 CHEMS 促进了 PTX 在肿瘤微环境中的释放,因此增强了 PTX 的摄取。此外,载紫杉醇的 PEG-SpHLiposomes 在 72 小时孵育后表现出显著提高的细胞毒性,IC 值为 1.107µM,约比普通 PTX 溶液低 90%。稳定性研究证实了在各种储存条件下脂质体制剂的稳健性。这些发现突显了聚乙二醇化 pH 响应脂质体作为增强紫杉醇治疗乳腺癌的有效纳米载体的潜力。

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