Dhiman Neerupma, Awasthi Rajendra, Sharma Bhupesh, Kharkwal Harsha, Kulkarni Giriraj T
Amity Institute of Pharmacy, Amity University Uttar Pradesh, Noida, India.
Amity Institute of Phytomedicine and Phytochemistry, Amity University Uttar Pradesh, Noida, India.
Front Chem. 2021 Apr 23;9:580118. doi: 10.3389/fchem.2021.580118. eCollection 2021.
Nanotechnology has made a great impact on the pharmaceutical, biotechnology, food, and cosmetics industries. More than 40% of the approved drugs are lipophilic and have poor solubility. This is the major rate-limiting step that influences the release profile and bioavailability of drugs. Several approaches have been reported to administer lipophilic drugs with improved solubility and bioavailability. Nanotechnology plays a crucial role in the targeted delivery of poorly soluble drugs. Nanotechnology-based drug delivery systems can be classified as solid lipid nanoparticulate drug delivery systems, emulsion-based nanodrug delivery systems, vesicular drug delivery systems, etc. Nanotechnology presents a new frontier in research and development to conquer the limitations coupled with the conventional drug delivery systems through the formation of specific functionalized particles. This review presents a bird's eye view on various aspects of lipid nanoparticles as carriers of bioactive molecules that is, synthesis, characterization, advantage, disadvantage, toxicity, and application in the medical field. Update on recent development in terms of patents and clinical trials of solid lipid nanoparticles (SLNs) and nanostructure lipid carriers (NLCs) have also been discussed in this article.
纳米技术已对制药、生物技术、食品和化妆品行业产生了巨大影响。超过40%的已批准药物具有亲脂性且溶解度差。这是影响药物释放曲线和生物利用度的主要限速步骤。据报道,有几种方法可用于给药亲脂性药物,以提高其溶解度和生物利用度。纳米技术在难溶性药物的靶向递送中起着关键作用。基于纳米技术的药物递送系统可分为固体脂质纳米粒药物递送系统、基于乳液的纳米药物递送系统、囊泡药物递送系统等。纳米技术为研发开辟了一个新领域,通过形成特定的功能化颗粒来克服传统药物递送系统的局限性。本综述全面介绍了脂质纳米粒作为生物活性分子载体的各个方面,即合成、表征、优点、缺点、毒性以及在医学领域的应用。本文还讨论了固体脂质纳米粒(SLN)和纳米结构脂质载体(NLC)在专利和临床试验方面的最新进展。