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Tedizolid-Cyclodextrin System as Delayed-Release Drug Delivery with Antibacterial Activity

机译:泰迪佐里德 - 环糊精系统作为延迟释放药物递送抗菌活性

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摘要

Progressive increase in bacterial resistance has caused an urgent need to introduce new antibiotics, one of them being oxazolidinones with their representative tedizolid. Despite the broad spectrum of activity of the parent tedizolid, it is characterized by low water solubility, which limits its use. The combination of the active molecule with a multifunctional excipient, which is cyclodextrins, allows preservation of its pharmacological activity and modification of its physicochemical properties. Therefore, the aim of the study was to change the dissolution rate and permeability through the model membrane of tedizolid by formation of solid dispersions with a cyclodextrin. The research included identification of tedizolid-hydroxypropyl-β-cyclodextrin (tedizolid/HP-β-CD) inclusion complex by thermal method (Differential Scanning Colorimetry), spectroscopic methods (powder X-ray diffraction, Fourier-Transform Infrared spectroscopy), and molecular docking. The second part of the research concerned the physicochemical properties (dissolution and permeability) and the biological properties of the system in terms of its microbiological activity. An increase in the dissolution rate was observed in the presence of cyclodextrin, while maintaining a high permeation coefficient and high microbiological activity. The proposed approach is an opportunity to develop drug delivery systems used in the treatment of resistant bacterial infections, in which, in addition to modifying the physicochemical properties caused by cyclodextrin, we observe a favorable change in the pharmacological potential of the bioactives.
机译:细菌抗性的渐进式增加导致迫切需要引入新的抗生素,其中一个是恶唑烷酮与其代表性泰迪唑啉。尽管母肽玉米蛋白的纤维活性广泛,但它的特征在于水溶解度低,这限制了其使用。活性分子与多功能赋形剂的组合是环糊精,允许保存其药理活性和其物理化学性质的修饰。因此,该研究的目的是通过与环糊精形成固体分散体来改变肽膜的模型膜来改变溶出速率和渗透性。该研究包括通过热法(差示扫描比色法),光谱法(粉末X射线衍射,傅里叶变换红外光谱)和分子通过热法(差示扫描比色法)鉴定肽 - 羟基丙基-β-环糊精(Tedizolid / HP-β-CD)包含复合物。和分子对接。研究的第二部分涉及物理化学性质(溶解和渗透率)和系统的生物学特性,在其微生物活性方面。在环糊精存在下观察到溶出速率的增加,同时保持高渗透系数和高微生物活性。该方法是开发用于治疗抗性细菌感染的药物递送系统的机会,除了改变由环糊精引起的物理化学性质外,我们还观察到生物术的药理潜力的有利变化。

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