pH-Responsive Nanocomposite Based Hydrogels for the Controlled Delivery of Ticagrelor; In Vitro and In Vivo Approaches

生物利用度 壳聚糖 替卡格雷 自愈水凝胶 体内 肿胀 的 药物输送 膨胀能力 材料科学 化学 药理学 纳米技术 高分子化学 有机化学 医学 生物化学 氯吡格雷 复合材料 阿司匹林 生物技术 生物
作者
Nariman Shahid,Alia Erum,Muhammad Zaman,Ume Ruqia Tulain,Qurat-ul-ain Shoaib,Abdul Majeed,Muhammad Fawad Rasool,Imran Imran,Sultan Alshehri,Behnam Noorani,Faleh Alqahtani
出处
期刊:International Journal of Nanomedicine [Dove Medical Press]
卷期号:Volume 16: 6345-6366 被引量:13
标识
DOI:10.2147/ijn.s330186
摘要

Ticagrelor (TG), an antiplatelet drug is employed to treat patients with acute coronary syndrome, but its inadequate oral bioavailability due to poor solubility and low permeability restricts its effectiveness.This contemporary work was aimed to design a novel pH-sensitive nanocomposite hydrogel (NCH) formulation incorporating thiolated chitosan (TCH) based nanoparticles (NPs) of Ticagrelor (TG), to enhance its oral bioavailability for effectively inhibiting platelet aggregation.NCHs were prepared by free radical polymerization technique, using variable concentrations of chitosan (CH) as biodegradable polymer, acrylic acid (AA) as a monomer, N,N-methylene bisacrylamide (MBAA) as cross-linker, and potassium persulphate (KPS) as initiator.The optimum hydrogel formulation was selected for fabricating NCHs, considering porosity, sol-gel fraction, swelling studies, drug loading capacity, and TG's in vitro release as determining factors. Outcomes of the studies have shown that the extent of hydrogel swelling and drug release was comparatively greater at higher pH (7.4). Moreover, an amplifying trend was observed for drug loading and hydrogel swelling by increasing AA content, while it declined by increasing MBAA. The NCHs were evaluated by various physicochemical techniques and the selected formulation was subjected to in vivo bioavailability studies, confirming enhancement of bioavailability as indicated by prolonged half-life and multifold increase in area under the curve (AUC) as compared to pure TG.The results suggest that NCHs demonstrated a pH-responsive, controlled behavior along with enhanced bioavailability. Thus NCHs can be effectively utilized as efficient delivery systems for oral delivery of TG to reduce the risk of myocardial infarction.
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