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In vitro lipolysis and physicochemical characterization of unconventional star anise oil towards the development of new lipid-based drug delivery systems

机译:对非传统八八角油的体外脂解和物理化学表征朝新脂质的药物递送系统发展

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摘要

Lipid-based drug delivery systems are widely used for enhancing the bioavailability of poorly water-soluble drugs. However, following oral intake, lipid excipients often undergo gastrointestinal lipolysis, which drastically affects drugs solubility and bioavailability. That's why developing new lipid excipients which are resistant to digestion would be of great interest. We studied here the potential role of the unconventional Chinese star anise whole seedpod oil (CSAO) as an alternative multifunctional lipid excipient. Pancreatic lipase-mediated digestion of the extracted crude oil emulsion was assessed in vitro. Pancreatic lipase, being a strict sn-1,3-regioselective lipase, showed a high (16-fold) olive oil to CSAO activity ratio, which could be attributed to fatty acids composition and triglycerides intramolecular structure. For the sake of comparison, the non-regioselective lipase Novozyme® 435 exhibited higher activity than pancreatic lipase on CSAO emulsion, perhaps due to its ability to release fatty acids from the internal sn-2 position of TAGs. Apart counteracting lipolysis, CSAO oil also showed additional biopharmaceutical benefits including moderate antioxidant and antihypertensive activities. Altogether, these findings highlight for the first time the potential use of star anise unconventional whole seedpod oil as a multifunctional lipid excipient for the development of new lipid formulations.
机译:基于脂质的药物输送系统被广泛用于增强难溶性药物的生物利用度。然而,在经口摄入,血脂辅料经常发生胃肠道脂肪分解,从而大大影响药物的溶解度和生物利用度。这就是为什么开发新的脂质赋形剂是耐消化将是极大的兴趣。我们在这里学习作为一种替代多功能脂质赋形剂标新立异中国八角整个心皮油(CSAO)的潜在作用。所提取的原油乳状液的胰脂肪酶介导的消化在体外进行了评估。胰脂肪酶,是一个严格的sn-1,3-区域选择性脂肪酶,显示出高的(16倍)橄榄油CSAO活性比,脂肪酸组成和甘油三酸酯分子内的结构,其可以归因。为了比较的缘故,非区域选择性脂肪酶Novozyme®435比CSAO乳剂胰脂肪酶表现出更高的活性,可能是由于其从标签的内部的sn-2位置释放脂肪酸的能力。除了抵制脂肪分解,CSAO油也表现出更多的生物制药优势,包括适度的抗氧化剂和降压作用。总之,这些研究结果强调首次的潜在用途八角非常规的整个心皮油作为多功能脂质赋形剂的新配方脂质的发展。

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