Effect of cholesterol on distribution, cell uptake, and protein corona of lipid microspheres at sites of cardiovascular inflammatory injury.

IF 8.9
Journal of pharmaceutical analysis Pub Date : 2025-07-01 Epub Date: 2025-01-03 DOI:10.1016/j.jpha.2024.101182
Lingyan Li, Xingjie Wu, Qianqian Guo, Yu'e Wang, Zhiyong He, Guangqiong Zhang, Shaobo Liu, Liping Shu, Babu Gajendran, Ying Chen, Xiangchun Shen, Ling Tao
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Abstract

Cholesterol (CH) plays a crucial role in enhancing the membrane stability of drug delivery systems (DDS). However, its association with conditions such as hyperlipidemia often leads to criticism, overshadowing its influence on the biological effects of formulations. In this study, we reevaluated the delivery effect of CH using widely applied lipid microspheres (LM) as a model DDS. We conducted comprehensive investigations into the impact of CH on the distribution, cell uptake, and protein corona (PC) of LM at sites of cardiovascular inflammatory injury. The results demonstrated that moderate CH promoted the accumulation of LM at inflamed cardiac and vascular sites without exacerbating damage while partially mitigating pathological damage. Then, the slow cellular uptake rate observed for CH@LM contributed to a prolonged duration of drug efficacy. Network pharmacology and molecular docking analyses revealed that CH depended on LM and exerted its biological effects by modulating peroxisome proliferator-activated receptor gamma (PPAR-γ) expression in vascular endothelial cells and estrogen receptor alpha (ERα) protein levels in myocardial cells, thereby enhancing LM uptake at cardiovascular inflammation sites. Proteomics analysis unveiled a serum adsorption pattern for CH@LM under inflammatory conditions showing significant adsorption with CH metabolism-related apolipoprotein family members such as apolipoprotein A-V (Apoa5); this may be a major contributing factor to their prolonged circulation in vivo and explains why CH enhances the distribution of LM at cardiovascular inflammatory injury sites. It should be noted that changes in cell types and physiological environments can also influence the biological behavior of formulations. The findings enhance the conceptualization of CH and LM delivery, providing novel strategies for investigating prescription factors' bioactivity.

胆固醇对心血管炎症损伤部位脂质微球分布、细胞摄取和蛋白冠的影响。
胆固醇(CH)在提高药物传递系统(DDS)的膜稳定性方面起着至关重要的作用。然而,它与高脂血症等疾病的联系经常引起批评,掩盖了它对配方生物效应的影响。在本研究中,我们使用广泛应用的脂质微球(LM)作为DDS模型,重新评估了CH的递送效果。我们全面研究了CH对心血管炎症损伤部位LM的分布、细胞摄取和蛋白冠(PC)的影响。结果表明,适度的CH促进了LM在炎症心脏和血管部位的积累,而不会加重损伤,同时部分减轻了病理性损伤。然后,观察到CH@LM缓慢的细胞摄取率有助于延长药物疗效的持续时间。网络药理学和分子对接分析显示,CH依赖于LM,通过调节血管内皮细胞中过氧化物酶体增殖物激活受体γ (PPAR-γ)表达和心肌细胞中雌激素受体α (ERα)蛋白水平发挥其生物学作用,从而增强LM在心血管炎症部位的摄取。蛋白质组学分析揭示了炎症条件下CH@LM的血清吸附模式,显示与CH代谢相关的载脂蛋白家族成员(如载脂蛋白a - v (Apoa5))显著吸附;这可能是其在体内循环延长的一个主要因素,并解释了CH为什么会增强LM在心血管炎症损伤部位的分布。应该指出的是,细胞类型和生理环境的变化也会影响制剂的生物学行为。这些发现增强了中药和中药给药的概念化,为研究处方因子的生物活性提供了新的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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