Department of Chemistry, University of Torino, Via P. Giuria 7, 10125 Torino, Italy.
Int J Mol Sci. 2022 Apr 7;23(8):4102. doi: 10.3390/ijms23084102.
Nutraceuticals are bioactive or chemical compounds acclaimed for their valuable biological activities and health-promoting effects. The global community is faced with many health concerns such as cancers, cardiovascular and neurodegenerative diseases, diabetes, arthritis, osteoporosis, etc. The effect of nutraceuticals is similar to pharmaceuticals, even though the term nutraceutical has no regulatory definition. The usage of nutraceuticals, to prevent and treat the aforementioned diseases, is limited by several features such as poor water solubility, low bioavailability, low stability, low permeability, low efficacy, etc. These downsides can be overcome by the application of the field of nanotechnology manipulating the properties and structures of materials at the nanometer scale. In this review, the linear and cyclic dextrin, formed during the enzymatic degradation of starch, are highlighted as highly promising nanomaterials- based drug delivery systems. The modified cyclic dextrin, cyclodextrin (CD)-based nanosponges (NSs), are well-known delivery systems of several nutraceuticals such as quercetin, curcumin, resveratrol, thyme essential oil, melatonin, and appear as a more advanced drug delivery system than modified linear dextrin. CD-based NSs prolong and control the nutraceuticals release, and display higher biocompatibility, stability, and solubility of poorly water-soluble nutraceuticals than the CD-inclusion complexes, or uncomplexed nutraceuticals. In addition, the well-explored CD-based NSs pathways, as drug delivery systems, are described. Although important progress is made in drug delivery, all the findings will serve as a source for the use of CD-based nanosystems for nutraceutical delivery. To sum up, our review introduces the extensive literature about the nutraceutical concepts, synthesis, characterization, and applications of the CD-based nano delivery systems that will further contribute to the nutraceutical delivery with more potent nanosystems based on linear dextrins.
功能性食品是具有生物活性或化学化合物的物质,因其具有有价值的生物活性和促进健康的作用而受到赞誉。全球社会面临着许多健康问题,如癌症、心血管和神经退行性疾病、糖尿病、关节炎、骨质疏松症等。尽管“功能性食品”一词没有监管定义,但它的作用与药物相似。由于水溶性差、生物利用度低、稳定性低、渗透性低、疗效低等特点,功能性食品的使用受到限制,无法预防和治疗上述疾病。通过应用纳米技术领域,可以改变材料的特性和结构,从而克服这些缺点。在这篇综述中,线性和环状糊精是由淀粉酶解形成的,被认为是很有前途的基于纳米材料的药物传递系统。经过修饰的环状糊精(CD)-纳米海绵(NS)是几种功能性食品的知名药物传递系统,如槲皮素、姜黄素、白藜芦醇、百里香精油、褪黑素等,它们作为一种更先进的药物传递系统,优于修饰的线性糊精。CD 基 NS 可以延长和控制功能性食品的释放,并且比 CD 包合物或未结合的功能性食品具有更高的生物相容性、稳定性和水溶性。此外,还描述了 CD 基 NS 作为药物传递系统的探索途径。尽管在药物传递方面取得了重要进展,但所有这些发现都将为基于 CD 的纳米系统在功能性食品传递中的应用提供依据。总之,我们的综述介绍了广泛的文献,涉及基于 CD 的纳米药物传递系统的功能性食品概念、合成、表征和应用,这将进一步为基于线性糊精的更有效的纳米系统在功能性食品传递方面做出贡献。