Developmental Biology Lab, Department of Biotechnology, School of Bioengineering, SRM Institute of Science and Technology, Kattankulathur, 603203, Tamil Nadu, India.
Sci Rep. 2024 Sep 11;14(1):21182. doi: 10.1038/s41598-024-72200-w.
Acrylamide (ACR) with its extensive industrial applications is a classified occupational hazard toxin and carcinogenic compound. Its formation in fried potatoes, red meat and coffee during high-temperature cooking is a cause for consideration. The fabrication of chitosan-coated probiotic nanoparticles (CSP NPs) aims to enhance the bioavailability of probiotics in the gut, thereby improving their efficacy against ACR-induced toxicity in Drosophila melanogaster. Nanoencapsulation, a vital domain of the medical nanotechnology field plays a key role in targeted drug delivery, bioavailability, multi-drug load delivery systems and synergistic treatment options. Our study exploited the nanoencapsulation technology to coat Lactobacillus fermentum (probiotic) with chitosan (prebiotic), both with substantial immunomodulatory effects, to ensure the stability and sustained release of microbial load and its secondary metabolites in the gut. The combination of pre-and probiotic components, called synbiotic formulations establishes the correlation between the gut microbiota and the overall well-being of an organism. Our study aimed to develop a potent synbiotic to alleviate the impacts of heat-processed dietary toxins that significantly influence behaviour, development, and survival. Our synbiotic co-treatment with ACR in fruit flies normalised neuro-behavioural, survival, redox status, and restored ovarian mitochondrial activity, contrasting with several physiological deficits observed in the ACR-treated model.
丙烯酰胺(ACR)具有广泛的工业应用,是一种分类职业危害毒素和致癌化合物。在高温烹饪过程中,它会在炸薯条、红肉和咖啡中形成,这是需要考虑的一个因素。壳聚糖包被益生菌纳米粒(CSP NPs)的制备旨在提高益生菌在肠道中的生物利用度,从而提高其对黑腹果蝇中 ACR 诱导毒性的功效。纳米封装是医学纳米技术领域的一个重要领域,在靶向药物输送、生物利用度、多药物负载输送系统和协同治疗方案中发挥着关键作用。我们的研究利用纳米封装技术将具有显著免疫调节作用的乳酸杆菌(益生菌)用壳聚糖(益生元)进行包被,以确保微生物负荷及其在肠道中的次级代谢物的稳定性和持续释放。将预生物和益生菌成分结合起来的称为合生元配方,建立了肠道微生物群与生物体整体健康之间的相关性。我们的研究旨在开发一种有效的合生元,以减轻热加工饮食毒素对行为、发育和生存的影响。我们在果蝇中用 ACR 进行合生元共同处理,使神经行为、生存、氧化还原状态正常化,并恢复卵巢线粒体活性,与在 ACR 处理模型中观察到的几种生理缺陷形成对比。