Taha Murtada, Alhakamy Nabil A, Md Shadab, Ahmad Mohammad Zaki, Rizwanullah Md, Fatima Sana, Ahmed Naveed, Alyazedi Faisal M, Karim Shahid, Ahmad Javed
Department of Clinical Laboratory Science, Prince Sultan Military College of Health Sciences, Dhahran 31932, Saudi Arabia.
Department of Pharmaceutics, Faculty of Pharmacy, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Polymers (Basel). 2022 Oct 3;14(19):4141. doi: 10.3390/polym14194141.
Nanogel is a promising drug delivery approach to improve the pharmacokinetics and pharmacodynamic prospect of phytopharmaceuticals. In the present review, phytopharmaceuticals with astonishing therapeutic utilities are being explored. However, their in vivo delivery is challenging, owing to poor biopharmaceutical attributes that impact their drug release profile, skin penetration, and the reach of optimal therapeutic concentrations to the target site. Nanogel and its advanced version in the form of nanoemulgel (oil-in-water nanoemulsion integrated gel matrix) offer better therapeutic prospects than other conventional counterparts for improving the biopharmaceutical attributes and thus therapeutic efficacy of phytopharmaceuticals. Nanoemulgel-loaded phytopharmaceuticals could substantially improve permeation behavior across skin barriers, subsequently enhancing the delivery and therapeutic effectiveness of the bioactive compound. Furthermore, the thixotropic characteristics of polymeric hydrogel utilized in the fabrication of nanogel/nanoemulgel-based drug delivery systems have also imparted improvements in the biopharmaceutical attributes of loaded phytopharmaceuticals. This formulation approach is about to be rife in the coming decades. Thus, the current review throws light on the recent studies demonstrating the role of nanogels in enhancing the delivery of bioactive compounds for treating various disease conditions and the challenges faced in their clinical translation.
纳米凝胶是一种很有前景的药物递送方法,可改善植物药的药代动力学和药效学前景。在本综述中,正在探索具有惊人治疗效用的植物药。然而,由于其生物药剂学属性较差,影响其药物释放曲线、皮肤渗透性以及最佳治疗浓度到达靶部位的能力,其体内递送具有挑战性。纳米凝胶及其纳米乳凝胶形式(水包油纳米乳剂集成凝胶基质)的先进版本,在改善植物药的生物药剂学属性从而提高其治疗效果方面,比其他传统对应物具有更好的治疗前景。负载植物药的纳米乳凝胶可显著改善跨皮肤屏障的渗透行为,随后提高生物活性化合物的递送和治疗效果。此外,用于制备基于纳米凝胶/纳米乳凝胶的药物递送系统的聚合物水凝胶的触变性,也改善了负载植物药的生物药剂学属性。这种制剂方法在未来几十年即将盛行。因此,当前综述阐述了最近的研究,这些研究证明了纳米凝胶在增强生物活性化合物递送以治疗各种疾病状况方面的作用以及它们在临床转化中面临的挑战。