Third Generation Solid Dispersion-Based Formulation of Novel Anti-Tubercular Agent Exhibited Improvement in Solubility, Dissolution and Biological Activity.

Gourav Paudwal, Rigzin Dolkar, Summaya Perveen, Rashmi Sharma, Parvinder Pal Singh, Prem N Gupta
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Abstract

The long treatment period and development of drug resistance in tuberculosis (TB) necessitates the discovery of new anti-tubercular agents. The drug discovery program of the institute leads to the development of an anti-tubercular lead (IIIM-019), which is an analogue of nitrodihydroimidazooxazole and exhibited promising anti-tubercular action. However, IIIM-019 displays poor aqueous solubility (1.2 µg/mL), which demands suitable dosage form for its efficient oral administration. In the present study, third generation solid dispersion-based formulation was developed to increase the solubility and dissolution of IIIM-019. The solubility profile of IIIM-019 using various polymeric carriers was determined and subsequently, PVP K-30 and P-407 were selected for preparation of binary and ternary solid dispersion. The third-generation ternary solid dispersion comprising PVP K-30 and P-407 revealed a remarkable enhancement in the aqueous solubility of IIIM-019. Physicochemical characterization of the developed formulations was done by employing FTIR spectroscopy, scanning electron microscopy, X-ray diffraction analysis, differential scanning calorimetry, and dynamic light scattering analysis. The dissolution study indicated an impressive release profile with the optimized formulation. The optimized formulation was further examined for cytotoxicity, cellular uptake, and hemolytic activity. The results indicated that the formulation had no apparent cytotoxicity on Caco-2 cells and was non-hemolytic in nature. Moreover, the optimized formulation showed significantly improved anti-tubercular activity compared to the native molecule. These findings showed that the developed third generation ternary solid dispersion could be a promising option for the oral delivery of investigated anti-tubercular molecule.

Abstract Image

新型抗结核剂的第三代固体分散制剂在溶解性、溶解度和生物活性方面均有改善
肺结核(TB)的治疗周期较长,且耐药性不断发展,因此有必要发现新的抗结核药物。该研究所的药物发现项目开发出了一种抗结核先导药物(IIIM-019),它是硝基二氢咪唑恶唑的类似物,具有良好的抗结核作用。然而,IIIM-019 的水溶性较差(1.2 µg/mL),需要合适的剂型才能有效口服。本研究开发了基于第三代固体分散体的制剂,以提高 IIIM-019 的溶解度和溶出度。确定了 IIIM-019 在各种聚合物载体中的溶解度曲线,随后选择 PVP K-30 和 P-407 制备二元和三元固体分散体。由 PVP K-30 和 P-407 组成的第三代三元固体分散体显著提高了 IIIM-019 的水溶性。利用傅立叶变换红外光谱、扫描电子显微镜、X 射线衍射分析、差示扫描量热法和动态光散射分析对所开发的制剂进行了理化表征。溶解研究表明,优化配方的释放曲线令人印象深刻。对优化配方还进一步进行了细胞毒性、细胞吸收和溶血活性检测。结果表明,该制剂对 Caco-2 细胞无明显的细胞毒性,且不溶血。此外,与原生分子相比,优化配方的抗结核活性明显提高。这些研究结果表明,所开发的第三代三元固体分散体可能是口服递送所研究的抗结核分子的一种有前途的选择。
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