Synthesis, characterization, and in vitro-in ovo toxicological screening of silibinin fatty acids conjugates as prodrugs with potential biomedical applications.

0 MEDICINE, RESEARCH & EXPERIMENTAL
Cristina Dehelean, Ersilia Alexa, Iasmina Marcovici, Andrada Iftode, Geza Lazar, Andrea Simion, Vasile Chis, Adrian Pirnau, Simona Cinta Pinzaru, Estera Boeriu
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Abstract

Silibinin (SIL), the most active phytocompound from Silybum marianum (L.), exerts many biological effects but has low stability and bioavailability. To overcome these drawbacks, the current research proposed the synthesis of silibilin oleate (SIL-O) and silibilin linoleate (SIL-L) derivatives as prodrugs with potentially optimized properties for biomedical applications, and the establishment of their in vitro-in ovo safety profiles. The physicochemical characterization of the obtained compounds using density functional theory (DFT) calculations, and Raman and 1H liquid-state nuclear magnetic resonance (NMR) spectroscopy confirmed the formation of SIL-O and SIL-L complexes. Computational predictions revealed that these lipophilic derivatives present a lower drug-likeness score (-29.96 for SIL-O and -23.55 for SIL-L) compared to SIL, but an overall positive drug score (0.07) and no risk for severe adverse effects. SIL-O and SIL-L showed no cytotoxicity or impairment in cell migration at low concentrations, but at the highest concentration (100 μM), they displayed distinct toxicological profiles. SIL-L was more cytotoxic (on cardiomyoblasts - H9c2(2-1), hepatocytes - HepaRG, and keratinocytes - HaCaT) than SIL-O or SIL, significantly inhibiting cell viability (<60%), altering cellular morphology, reducing cell confluence (<70%), and inducing prominent apoptotic-like nuclear features. At the concentration of 100 μM, SIL-O presented an irritation score (IS) of 0.61, indicating a lack of irritant effect on the chorioallantoic membrane (CAM), while SIL-L was classified as a slight irritant with an IS of 1.99. These findings outline a more favorable in vitro and in ovo biocompatibility for SIL-O compared to SIL L, whose applications are dosage limited due to potential toxicity.

具有生物医学应用潜力的原药 Silibinin 脂肪酸共轭物的合成、表征和体外-体内毒理学筛选。
水飞蓟宾(SIL)是水飞蓟(Silybum marianum (L.))中最具活性的植物化合物,具有多种生物效应,但稳定性和生物利用度较低。为了克服这些缺点,目前的研究提出合成油酸水飞蓟素(SIL-O)和亚油酸水飞蓟素(SIL-L)衍生物,作为具有生物医学应用潜在优化特性的原药,并建立其体外-体内安全性概况。利用密度泛函理论(DFT)计算、拉曼光谱和 1H 液态核磁共振(NMR)光谱对所获化合物进行了物理化学表征,证实了 SIL-O 和 SIL-L 复合物的形成。计算预测结果表明,与 SIL 相比,这些亲脂衍生物的药物相似度得分较低(SIL-O 为 -29.96,SIL-L 为 -23.55),但总体药物得分呈正值(0.07),且没有出现严重不良反应的风险。在低浓度下,SIL-O 和 SIL-L 没有显示细胞毒性或细胞迁移障碍,但在最高浓度(100 µM)下,它们显示出不同的毒理学特征。与 SIL-O 或 SIL 相比,SIL-L 的细胞毒性(对心肌母细胞 - H9c2(2-1)、肝细胞 - HepaRG 和角质细胞 - HaCaT)更强,能显著抑制细胞活力(< 60%)、改变细胞形态、降低细胞融合度(< 70%)并诱导明显的细胞凋亡样核特征。在 100 µM 浓度下,SIL-O 的刺激性评分(IS)为 0.61,表明对绒毛膜(CAM)没有刺激作用,而 SIL-L 的刺激性评分(IS)为 1.99,被归类为轻微刺激。这些研究结果表明,与 SIL-L 相比,SIL-O 的体外和体内生物相容性更佳,而 SIL-L 由于潜在的毒性,其应用剂量受到限制。
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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