Rehman Fiza Ur, Farid Arshad, Shah Shefaat Ullah, Dar Muhammad Junaid, Rehman Asim Ur, Ahmed Naveed, Rashid Sheikh Abdur, Shaukat Irfan, Shah Muddaser, Albadrani Ghadeer M, Kamel Mohamed, Altyar Ahmed E, Abdel-Daim Mohamed M, Shah Kifayat Ullah
Department of Pharmacy, Faculty of Biological Sciences, Quaid-i-Azam University, Islamabad 45320, Pakistan.
Gomal Center of Biochemistry and Biotechnology, Gomal University, Dera Ismail Khan 29050, Pakistan.
Pharmaceuticals (Basel). 2022 Aug 26;15(9):1064. doi: 10.3390/ph15091064.
This research was designed to identify thermodynamically and kinetically stable lipidic self-emulsifying formulations through simple energy dynamics in addition to highlighting and clarifying common ambiguities in the literature in this regard. Proposing a model study, this research shows how most of the professed energetically stable systems are actually energetically unstable, subjected to indiscriminate and false characterization, leading to significant effects for their pharmaceutical applications. A self-emulsifying drug delivery system (SEDDS) was developed and then solidified (S-SEDDS) using a model drug finasteride. Physical nature of SEDDS was identified by measuring simple dynamics which showed that the developed dispersion was thermodynamically unstable. An in vivo study of albino rats showed a three-fold enhanced bioavailability of model drug with SEDDS as compared to the commercial tablets. The study concluded that measuring simple energy dynamics through inherent properties can distinguish between thermodynamically stable and unstable lipidic systems. It might lead to correct identification of a specific lipidic formulation and the application of appropriate characterization techniques accordingly. Future research strategies include improving their pharmaceutical applications and understanding the basic differences in their natures.
本研究旨在通过简单的能量动力学来识别热力学和动力学稳定的脂质自乳化制剂,此外还将突出并澄清这方面文献中常见的模糊之处。通过提出一个模型研究,本研究展示了大多数声称能量稳定的系统实际上在能量上是不稳定的,它们受到随意且错误的表征,这对其药物应用产生了重大影响。使用模型药物非那雄胺开发了一种自乳化药物递送系统(SEDDS),然后将其固化(S-SEDDS)。通过测量简单的动力学来确定SEDDS的物理性质,结果表明所开发的分散体在热力学上是不稳定的。对白化病大鼠的体内研究表明,与市售片剂相比,使用SEDDS时模型药物的生物利用度提高了三倍。该研究得出结论,通过固有性质测量简单的能量动力学可以区分热力学稳定和不稳定的脂质系统。这可能有助于正确识别特定的脂质制剂,并相应地应用适当的表征技术。未来的研究策略包括改善它们的药物应用以及理解它们性质上的基本差异。