PEGylation Enhances the Oral Bioavailability of γ-Tocotrienol Isomer of Vitamin E

Ahmed Abu Fayyad, Mohammad M. Kamal, A. Kaddoumi, S. Alqahtani, S. Nazzal
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Abstract

Objective: To Synthesize and characterize PEGylated γ-T3 with m-PEG molecular weights of 350 (γ-T3PGS 350) and 1000 (γ-T3PGS 1000) and to Determine the oral bioavailability of the PEGylated γ-T3 in rats. Methods: γ-T3 was extracted from a 500 g batch of TocotrolTM L50P. γ-T3PGS 350 and γ-T3PGS 1000 were synthesized by a simple single ring-opening of half acid ester precursor, followed by controlled coupling to the terminally methylated PEG. Succination and subsequent PEGylation of γ -T3 were confirmed by HPLC, MS, and 1H-NMR studies. The effect of PEGylation on the oral bioavailability was tested in rats. Results: The succination of γ-T3 was confirmed by the appearance of the ethyl protons of the succinate at 2.75-2.86 ppm and the disappearance of the proton chemical shift from the hydroxyl group of γ-T3 at 4.7 ppm. Subsequent PEGylation was confirmed by the chemical shift at 4.23 ppm, which corresponds to the protons of the ethylene group of PEG that is directly linked to γ-T3S, and confirmed by MS and HPLC. Thee most interesting is that PEGylation significantly enhanced the oral bioavailability of γ-T3 as compared with regular formula and no significant difference was observed between the two molecular variants of mPEG 350 or mPEG 1000. Conclusion: Results from this study suggest that PEGylation of γ-T3 represents a viable platform for the oral and parenteral delivery of γ-T3 for potential use in the prevention of breast cancer.
聚乙二醇化提高维生素E -生育三烯醇异构体的口服生物利用度
目的:合成m-PEG分子量分别为350 (γ-T3PGS 350)和1000 (γ-T3PGS 1000)的聚乙二醇化γ-T3并对其进行表征,并测定其在大鼠体内的口服生物利用度。方法:从500 g TocotrolTM L50P中提取γ-T3。γ-T3PGS 350和γ-T3PGS 1000是通过半酸酯前体的单环开环合成的,然后与末端甲基化的PEG进行控制偶联。通过HPLC, MS和1H-NMR研究证实了γ -T3的琥珀化和随后的聚乙二醇化。在大鼠体内测试了聚乙二醇化对口服生物利用度的影响。结果:在2.75 ~ 2.86 ppm时,琥珀酸酯的乙基质子出现,在4.7 ppm时,γ-T3羟基上的质子化学位移消失,证实了γ-T3的琥珀酸化。随后的聚乙二醇化反应通过4.23 ppm的化学位移得到证实,该化学位移对应于与γ-T3S直接连接的聚乙二醇乙烯基团的质子,并通过质谱和HPLC得到证实。最有趣的是,与常规配方相比,聚乙二醇化显著提高了γ-T3的口服生物利用度,而mPEG 350和mPEG 1000两种分子变体之间没有显著差异。结论:本研究结果表明,聚乙二醇化的γ-T3为口服和肠外输送γ-T3提供了一个可行的平台,可能用于预防乳腺癌。
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