Kaur Kirandeep, Al-Khazaleh Ahmad K, Bhuyan Deep Jyoti, Li Feng, Li Chun Guang
NICM Health Research Institute, Western Sydney University, Penrith, NSW 2751, Australia.
School of Science, Western Sydney University, Parramatta, NSW 2150, Australia.
Antioxidants (Basel). 2024 Sep 6;13(9):1092. doi: 10.3390/antiox13091092.
Curcumin, as the main active component of turmeric (), has been demonstrated with various bioactivities. However, its potential therapeutic applications are hindered by challenges such as poor solubility and bioavailability, rapid metabolism, and pan-assay interference properties. Recent advancements have aimed to overcome these limitations by developing novel curcumin analogues and modifications. This brief review critically assesses recent studies on synthesising different curcumin analogues, including metal complexes, nano particulates, and other curcumin derivatives, focused on the antioxidant, anti-inflammatory, and anticancer effects of curcumin and its modified analogues. Exploring innovative curcumin derivatives offers promising strategies to address the challenges associated with its bioavailability and efficacy and valuable insights for future research directions.
姜黄素作为姜黄的主要活性成分,已被证明具有多种生物活性。然而,其潜在的治疗应用受到诸如溶解度和生物利用度差、代谢迅速以及泛分析干扰特性等挑战的阻碍。最近的进展旨在通过开发新型姜黄素类似物和修饰方法来克服这些限制。本简要综述批判性地评估了近期关于合成不同姜黄素类似物的研究,包括金属配合物、纳米颗粒和其他姜黄素衍生物,重点关注姜黄素及其修饰类似物的抗氧化、抗炎和抗癌作用。探索创新的姜黄素衍生物为应对与其生物利用度和疗效相关的挑战提供了有前景的策略,并为未来的研究方向提供了有价值的见解。