Morparia Saurabh, Metha Chaitanya, Suvarna Vasanti
Department of Pharmaceutical Analysis & Quality Assurance, SVKM's Dr. Bhanuben Nanavati College of Pharmacy, Mumbai, Maharashtra, India.
Nat Prod Res. 2025 Jun;39(11):3260-3280. doi: 10.1080/14786419.2024.2412838. Epub 2024 Oct 10.
Betulinic acid, a compound classified as a pentacyclic triterpenoid, is found in abundance in a variety of medicinal plants and natural substances. Its broad spectrum of biological and medicinal properties, particularly its potent antitumor activity, has gained significant attention in recent years. The anticancer properties of betulinic acid are governed by mitochondrial signalling pathways and it exhibit selectivity for cancerous tissue, leaving non-cancerous cells and normal tissue unharmed. This characteristic is particularly valuable in chemo-resistant cases. Nevertheless, the medicinal potential of betulinic acid is hindered by its poor water solubility and short half-life, leading to sub-optimal effectiveness. This issue is being tackled by a variety of nano-sized drug delivery systems, such as polymeric nanoparticles, magnetic nanoparticles, polymeric conjugates, nanoemulsions, liposomes, nanosuspensions, carbon nanotubes, and cyclodextrin complexes. This article focuses on recent advances in nanoformulations that are tailored to the delivery of betulinic acid with enhanced effectiveness.
桦木酸是一种归类为五环三萜类的化合物,在多种药用植物和天然物质中大量存在。其广泛的生物学和药用特性,尤其是强大的抗肿瘤活性,近年来受到了极大关注。桦木酸的抗癌特性由线粒体信号通路调控,它对癌组织具有选择性,不会伤害非癌细胞和正常组织。这一特性在化疗耐药的情况下尤为重要。然而,桦木酸的药用潜力因其水溶性差和半衰期短而受到阻碍,导致效果欠佳。各种纳米级药物递送系统,如聚合物纳米颗粒、磁性纳米颗粒、聚合物缀合物、纳米乳剂、脂质体、纳米混悬液、碳纳米管和环糊精复合物,正在解决这一问题。本文重点关注为提高桦木酸递送效果而量身定制的纳米制剂的最新进展。