Novel Approaches to Enhance Solubility Medicine

Anurag Kumar Yadav, Harsh Kumar Pandey, Aditya Shiven
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Abstract

The solubility enhancement of poorly aqueous soluble drugs presents a significant challenge in pharmaceuticalformulation. Liquisolid technology, also known as powdered solution technology, has emerged as a promising approach toenhance the solubility and bioavailability of such drugs. This paper provides a detailed discussion of the novel approachesemployed within the framework of Liquisolid technology to overcome solubility limitations. The study explores the principles,advantages, and applications of Liquisolid technology in drug formulation, highlighting its potential to revolutionize oralmedication delivery. This research aims to investigate the effectiveness of Liquisolid technology in enhancing drug solubility,elucidate its underlying mechanisms, and evaluate its impact on drug dissolution, bioavailability, and therapeutic outcomes. Theobjectives are to review the background and challenges associated with poor solubility of drugs, introduce the concept ofLiquisolid technology and its principles, discuss the advantages and benefits of Liquisolid technology in solubility enhancement,explore the formulation strategies and key components involved in Liquisolid formulations, evaluate the in vitro and in vivoperformance of Liquisolid systems, and identify future research directions and potential applications of Liquisolid technology inpharmaceutical development. Through this comprehensive analysis, the study aims to provide valuable insights into the novelapproaches based on Liquisolid technology for enhancing drug solubility, facilitating the development of effective and efficientdrug delivery systems. Liquisolid technology, a novel approach to solubility enhancement, offers promising advantages overconventional techniques. It involves solubilizing poorly aqueous soluble drugs using surfactants, then incorporating thesesolubilized drugs into a carrier system or powdered solution. The powdered solution facilitates the conversion of the solubilizeddrug into solid residues, which can be further processed into different dosage forms.
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提高溶解度药物的新方法
提高难溶性药物的溶解度是目前制剂研究的一个重要课题。液体固体技术,也称为粉末溶液技术,已成为提高这类药物的溶解度和生物利用度的一种有前途的方法。本文详细讨论了在液态固体技术框架内采用的新方法来克服溶解度限制。本研究探讨了液体固体技术在药物配方中的原理、优势和应用,强调了其在口服给药方面的革命性潜力。本研究旨在探讨液体固体技术提高药物溶解度的有效性,阐明其潜在机制,并评估其对药物溶出度、生物利用度和治疗效果的影响。本文综述了药物溶解度差的背景和挑战,介绍了液体固体技术的概念及其原理,讨论了液体固体技术在提高溶解度方面的优势和益处,探讨了液体固体制剂的配方策略和关键成分,评价了液体固体系统的体外和体内性能。确定未来的研究方向和液体固体技术在药物开发中的潜在应用。通过这一综合分析,本研究旨在为基于液体固体技术的新方法提供有价值的见解,以提高药物的溶解度,促进有效和高效药物递送系统的发展。液体固体技术是一种新型的提高溶解度的方法,与传统的技术相比具有很好的优势。它包括使用表面活性剂溶解水溶性差的药物,然后将这些溶解的药物纳入载体系统或粉末状溶液。粉末状溶液有助于将溶解的药物转化为固体残留物,可进一步加工成不同的剂型。
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