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首页> 外文期刊>RSC Advances >Encapsulation of erythromycin and bacitracin antibiotics into natural sporopollenin microcapsules: antibacterial, cytotoxicity, in vitro and in vivo release studies for enhanced bioavailability
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Encapsulation of erythromycin and bacitracin antibiotics into natural sporopollenin microcapsules: antibacterial, cytotoxicity, in vitro and in vivo release studies for enhanced bioavailability

机译:将红霉素和杆菌肽抗生素封装到天然孢粉微胶囊中:抗菌,细胞毒性,体外和体内释放研究可提高生物利用度

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Nature produces large quantities of superbly complex and highly reliable microcapsules. The micrometre-sized Lycopodium clavatum spores are one example of these robust capsules. The encapsulation of erythromycin (EM) and bacitracin (BAC) antibiotics into the Lycopodium clavatum sporopollenin (LCS) extracted from these spore species is explored for the first time. The LCS microparticles are extensively characterised before and after loading using SEM, CLSM, TGA and FTIR techniques. The loading capacity and entrapping efficiency of EM were 16.2 and 32.4%, respectively. The antibacterial activities of pure antibiotics, empty LCS and the antibiotic-loaded LCS were evaluated against Staphylococcus aureus (Gram-positive), Pseudomonas aeruginosa (Gram-negative), and Klebsiella pneumoniae (Gram-negative) human pathogenic bacterial strains. A remarkable increase in the antibacterial fold activity of both EM- and BAC-loaded LCS compared to that of the pure antibiotics is observed. Crucial for drug delivery applications, empty LCS, EM- and BAC-loaded LCS were found to be nontoxic against human epithelial colorectal adenocarcinoma cells Caco-2 as revealed by the cytotoxicity evaluation. The in vitro release mechanism of EM in pH 7.4 showed a deviation from Fick's law. In vivo release of EM from EM-loaded LCS (an oral dose of 50 mg kg ~(?1) ) revealed high values of the area under the plasma concentration–time curve (AUC _(0–6 h) and AUC _(0–∞) were 1620 and 2147 μg h L ~(?1) , respectively) indicative of the enhanced EM bioavailability. The successful loading of antibiotics into the nontoxic LCS and the enhanced bioavailability can open up intriguing applications in oral and topical drug delivery strategies.
机译:大自然会产生大量极复杂和高度可靠的微胶囊。微米大小的石蒜子孢子孢子是这些坚固胶囊的一个例子。首次探索了将红霉素(EM)和杆菌肽(BAC)抗生素包封到从这些孢子物种中提取的狼蛛孢子粉(LCS)中。使用SEM,CLSM,TGA和FTIR技术对LCS微粒在装载前后进行了广泛的表征。 EM的负载能力和包封效率分别为16.2%和32.4%。评估了纯抗生素,空LCS和载有LCS的抗生素对金黄色葡萄球菌(革兰氏阳性),铜绿假单胞菌(革兰氏阴性)和肺炎克雷伯菌(革兰氏阴性)的致病细菌菌株的抗菌活性。与纯抗生素相比,EM和BAC的LCS的抗菌折叠活性均显着提高。如细胞毒性评估所揭示,发现对于药物递送应用而言,空的LCS,EM和BAC装载的LCS对人上皮结肠直肠腺癌细胞Caco-2无毒。 EM在pH 7.4下的体外释放机理表明与菲克定律有偏差。从装载有EM的LCS(口服剂量为50 mg kg〜(?1))体内释放EM表明,血浆浓度-时间曲线(AUC _(0-6 h)和AUC _( 0–∞)分别为1620和2147μgh L〜(?1)),表明EM生物利用度增强。将抗生素成功地装载到无毒的LCS中并提高生物利用度可以为口服和局部药物递送策略开辟有趣的应用。

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