PO.ET02.07 · 实验与分子治疗
评价胆固醇含量对纳米脂质体制剂抗葡萄膜黑色素瘤细胞摄取和制剂活性的影响
Evaluating the influence of cholesterol content on the cellular uptake and formulation activity of nanoliposomal formulations against uveal melanoma
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摘要 Abstract
中文摘要
引言:葡萄膜黑色素瘤(UM)是一种罕见但侵袭性的眼内恶性肿瘤,对现有疗法的反应有限。纳米脂质体递送系统可增强细胞内药物转运,但其性能取决于脂质组成和肿瘤的代谢特征。UM表现出由SREBP2等酶表达改变所驱动的胆固醇代谢失调。由于胆固醇是影响脂质体性质的关键结构性膜组分,本研究评价了胆固醇的加入如何影响纳米脂质体在UM细胞中的摄取和药物效应。
方法:将MP41葡萄膜黑色素瘤细胞(ATCC®)培养于补充25% FBS的RPMI中。将细胞(2×10⁴/mL)接种于带通气口的离心管中,并暴露于含0、5、10或20 mol%胆固醇(替代DOPC)的DPPE-罗丹明标记纳米脂质体。将试管置于37 ℃振荡培养箱中60分钟,以促进脂质体-细胞相互作用。使用荧光酶标仪定量细胞摄取,并使用Quad Count™进行细胞计数、活力和生长抑制评估。
结果:在1小时时,胆固醇的加入降低了MP41葡萄膜黑色素瘤细胞对纳米脂质体的摄取。DOPC始终表现出最高的细胞摄取值(≈2594-4543 RFU),相比之下,95/5和90/10制剂表现出较低的值(≈800-3451 RFU)。这些发现揭示了胆固醇含量与细胞摄取之间可重现的反比关系,提示纳米脂质体中加入胆固醇会减少细胞摄取。正在进行的研究将评估更多的时间点和条件,以及这些发现是否与细胞毒性研究相关联。
结论:纳米脂质体制剂中胆固醇含量的降低显著增强了葡萄膜黑色素瘤细胞的摄取。DOPC(100%)始终观察到更高的内化,支持使用相对低胆固醇(或无胆固醇)制剂以增强靶向性。胆固醇的调控可能会增强针对葡萄膜黑色素瘤疗法的有效性。
查看英文原文 English abstract
Introduction: Uveal melanoma (UM) is a rare but aggressive intraocular malignancy with limited responsiveness to current therapies. Nanoliposomal delivery systems can enhance intracellular drug transport, but their performance depends on lipid composition and the tumor's metabolic profile. UM exhibits dysregulated cholesterol metabolism driven by altered expression of enzymes such as SREBP2. Because cholesterol is a key structural membrane component that influences liposome properties, this study evaluated how cholesterol inclusion affects nanoliposome uptake and drug effects in UM cells.
Methodology: MP41 uveal melanoma cells (ATCC®) were cultured in RPMI supplemented with 25% FBS. Cells (2×10⁴/mL) were seeded in vented centrifuge tubes and exposed to DPPE-rhodamine-labeled nanoliposomes containing 0, 5, 10, or 20 mol% cholesterol substituted for DOPC. Tubes were placed in an oscillating incubator at 37 °C for 60 minutes to promote liposome-cell interactions. Cellular uptake was quantified using a fluorescence microplate reader, and Quad Count™ was used for cell counting, viability, and growth-inhibition assessments.
Result: At 1 hour, the inclusion of cholesterol decreased the uptake of nanoliposomes by MP41 uveal melanoma cells. DOPC consistently demonstrated the highest cellular uptake values (≈2594-4543 RFU), while 95/5 and 90/10 formulations displayed lower values (≈800-3451 RFU) by comparison. These findings reveal a reproducible inverse relationship between cholesterol content and cellular uptake, suggesting that the inclusion of cholesterol in nanoliposome diminishes cellular uptake. Ongoing studies will evaluate additional time points and conditions, and whether the findings correlate with cytotoxicity studies.
Conclusion: Reduced cholesterol content in nanoliposomal formulations markedly enhanced cellular uptake by uveal melanoma cells. The consistently higher internalization observed with DOPC (100%) supports the use of relatively low-cholesterol (or cholesterol-free) preparations to enhance targeting. Cholesterol modulation could potentially enhance the effectiveness of therapeutics against uveal melanoma.
利益披露 Disclosure
S. Patel, None..
F. Mourisso, None..
B. Habibeh, None..
A. Kleckerova, None..
R. B. Campbell, None.