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熊果酸负载聚乳酸-乙醇酸纳米粒在胆管癌中的研发与评估

Development and evaluation of ursolic acid-loaded poly(lactic--glycolic acid) nanoparticles in cholangiocarcinoma.

作者信息

Maphanao Pornpattra, Phothikul Yaowaret, Choodet Cherdpong, Puangmali Theerapong, Katewongsa Kanlaya, Pinlaor Somchai, Thanan Raynoo, Yordpratum Umaporn, Sakonsinsiri Chadamas

机构信息

Department of Biochemistry, Faculty of Medicine, Khon Kaen University Khon Kaen 40002 Thailand

Cholangiocarcinoma Research Institute, Khon Kaen University Khon Kaen 40002 Thailand.

出版信息

RSC Adv. 2024 Aug 8;14(34):24828-24837. doi: 10.1039/d4ra03637a. eCollection 2024 Aug 5.

Abstract

Cholangiocarcinoma (CCA), an epithelial biliary tract malignancy, is a significant health concern in the Greater Mekong Subregion, particularly in northeastern Thailand. Prior to the development of advanced stages, CCA is typically asymptomatic, thereby limiting treatment options and chemotherapeutic effectiveness. Ursolic acid (UA), a triterpenoid derived from plants, was previously discovered to inhibit CCA cell growth through induction of apoptosis. Nevertheless, the therapeutic effectiveness of UA is limited by its poor solubility in water and low bioavailability; therefore, dimethyl sulfoxide (DMSO) is utilized as a solvent to treat UA with CCA cells. Enhancing cellular uptake and reducing toxicity, the utilization of polymeric nanoparticles (NPs) proves beneficial. In this study, UA-loaded PLGA nanoparticles (UA-PLGA NPs) were synthesized using nanoprecipitation and characterized through formation analysis, average particle size, surface functional groups and -potential measurements, electron microscopic imaging, drug loading efficiency and drug release studies, stability, hemo- and biocompatibility, cytotoxicity and cellular uptake assays. Molecular dynamics simulations validated the loading of UA into PLGA hydrogen bonding. The synthesized UA-PLGA NPs had a spherical shape with an average size of 240 nm, a negative -potential, good stability, great hemo- and bio-compatibility and an encapsulation efficiency of 98%. The NPs exhibited a characteristic of a simple diffusion-controlled Fickian process, as predicted by the Peppas-Sahlin drug release kinetic model. UA-PLGA NPs exhibited cytotoxic effects on KKU-213A and KKU-055 CCA cells even when dispersed in media without organic solvent, , DMSO, highlighting the ability of PLGA NPs to overcome the poor water solubility of UA. Rhodamine 6G (R6G) was loaded into PLGA NPs using the same approach as UA-PLGA NPs, demonstrating effective delivery of the dye into CCA cells. These findings suggest that UA-PLGA NPs showed promise as a potential phytochemical delivery system for CCA treatment.

摘要

胆管癌(CCA)是一种上皮性胆道恶性肿瘤,在大湄公河次区域,尤其是泰国东北部,是一个重大的健康问题。在进展到晚期之前,CCA通常没有症状,从而限制了治疗选择和化疗效果。熊果酸(UA)是一种从植物中提取的三萜类化合物,此前发现它通过诱导细胞凋亡来抑制CCA细胞生长。然而,UA的治疗效果受到其在水中溶解度低和生物利用度低的限制;因此,二甲基亚砜(DMSO)被用作溶剂来处理UA与CCA细胞。利用聚合物纳米颗粒(NPs)来增强细胞摄取并降低毒性被证明是有益的。在本研究中,采用纳米沉淀法合成了负载UA的聚乳酸-羟基乙酸共聚物纳米颗粒(UA-PLGA NPs),并通过形态分析、平均粒径、表面官能团和ζ电位测量、电子显微镜成像、载药效率和药物释放研究、稳定性、血液和生物相容性、细胞毒性和细胞摄取试验对其进行了表征。分子动力学模拟验证了UA通过氢键负载到PLGA中。合成的UA-PLGA NPs呈球形,平均粒径为240nm,ζ电位为负,稳定性好,血液和生物相容性好,包封率为98%。正如Peppas-Sahlin药物释放动力学模型所预测的,这些NPs表现出简单扩散控制的菲克过程的特征。即使分散在不含有机溶剂(即DMSO)的培养基中,UA-PLGA NPs对KKU-213A和KKU-055 CCA细胞也表现出细胞毒性作用,突出了PLGA NPs克服UA水溶性差的能力。使用与UA-PLGA NPs相同的方法将罗丹明6G(R6G)负载到PLGA NPs中,证明该染料能有效递送至CCA细胞。这些发现表明,UA-PLGA NPs有望成为一种潜在的用于CCA治疗的植物化学物质递送系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b94/11306966/5b82f00d9729/d4ra03637a-s1.jpg

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