School of Pharmacy, University of Nottingham, University Park, Nottingham NG7 2RD, UK.
School of Pharmacy, University of Nottingham Malaysia, Jalan Broga, 43500 Semenyih, Selangor, Malaysia.
Int J Pharm. 2022 Apr 25;618:121605. doi: 10.1016/j.ijpharm.2022.121605. Epub 2022 Feb 26.
Chemopreventive properties of resveratrol has been studied for decades. Despite its potential for chemotherapeutic advancement, the compound has pharmaceutical limitations, such as, the drug has a poor pharmacokinetic profile and low bioavailability. Studies have comforting results that that the nano-formulations may aid the future resveratrol drug development. Resveratrol can also be encapsulated as co-drug with an anticipation of gaining improved targeting and pharmacokinetic parameters, as well as achieving desired therapeutic plasma levels. It has been envisaged that the nanoformulations can also address the issue of drug accumulation, which may lead to hepatotoxicity. Nanoformulations can bring a major improvement in the bioavailability of resveratrol but still the formulation still suffers with pharmacokinetics issues clinically. This review encompasses the pharmacokinetics barriers associated with resveratrol and a possible suggestion to overcome those barriers for improving absorbance, reducing toxicity andimproving the drug releaseand encapsulation efficiency. The article also suggest that co-administration of resveratrol with chemotherapeutic drugsmust be tested in vivo on a wide range of cancers to avoid accidental proliferation exacerbation. The review's focusses on the resveratrol formulation and make suggestions for improvements in order to overcome the pharmacokinetic and toxicity issues.
白藜芦醇的化学预防特性已经研究了几十年。尽管它有可能推动化疗的发展,但该化合物存在药物方面的限制,例如药物的药代动力学特性不佳,生物利用度低。研究结果令人欣慰,纳米制剂可能有助于未来白藜芦醇药物的开发。白藜芦醇也可以作为共药物进行封装,以期获得改善的靶向性和药代动力学参数,并达到所需的治疗血浆水平。人们设想纳米制剂还可以解决药物积累的问题,这可能导致肝毒性。纳米制剂可以大大提高白藜芦醇的生物利用度,但在临床实践中,该制剂仍然存在药代动力学问题。本文综述了与白藜芦醇相关的药代动力学障碍,并提出了一种可能的解决方案,以克服这些障碍,提高吸收率,降低毒性,改善药物释放和包封效率。文章还建议,必须在广泛的癌症范围内对与化疗药物联合使用的白藜芦醇进行体内测试,以避免意外的增殖加剧。本综述的重点是白藜芦醇的配方,并提出了改进的建议,以克服药代动力学和毒性问题。