Department of Biology, College of Science, Imam Muhammad bin Saud Islamic University, Riyadh 11623, Saudi Arabia.
Petrochemicals Department, Egyptian Petroleum Research Institute, Nasr City, Cairo 11727, Egypt.
Molecules. 2023 Apr 25;28(9):3692. doi: 10.3390/molecules28093692.
Brown macroalgae (BMG) were used as carriers for ZnO (ZnO/BMG) and cobalt-doped ZnO (Co-ZnO/BMG) via facile microwave-assisted hydrothermal synthesis. The multifunctional structures of synthesized composites were evaluated as enhanced antioxidant and anti-diabetic agents based on the synergistic effects of ZnO, Co-ZnO, and BMG. BMG substrate incorporation and cobalt doping notably enhanced the bioactivity of the synthesized ZnO nanoparticles. As an antioxidant, the Co-ZnO/BMG composite exhibited highly effective scavenging properties for the common free reactive oxygen radicals (DPPH [89.6 ± 1.5%], nitric oxide [90.2 ± 1.3%], ABTS [87.7 ± 1.8%], and O [46.7 ± 1.9%]) as compared to ascorbic acid. Additionally, its anti-diabetic activity was enhanced significantly and strongly inhibited essential oxidative enzymes (porcine α-amylase (90.6 ± 1.5%), crude α-amylase (84.3 ± 1.8%), pancreatic α-glucosidase (95.7 ± 1.4%), crude intestinal α-glucosidase (93.4 ± 1.8%), and amyloglucosidase (96.2 ± 1.4%)). Co-ZnO/BMG inhibitory activity was higher than that of miglitol, and in some cases, higher than or close to that of acarbose. Therefore, the synthetic Co-ZnO/BMG composite can be used as a commercial anti-diabetic and antioxidant agent, considering the cost and adverse side effects of current drugs. The results also demonstrate the impact of cobalt doping and BMG integration on the biological activity of ZnO.
采用简便的微波辅助水热合成法,将棕色大型藻类(BMG)作为载体用于制备氧化锌(ZnO/BMG)和钴掺杂氧化锌(Co-ZnO/BMG)。基于 ZnO、Co-ZnO 和 BMG 的协同作用,评估了合成复合材料的多功能结构,将其作为增强抗氧化和抗糖尿病药物。BMG 基质的掺入和钴掺杂显著提高了合成 ZnO 纳米粒子的生物活性。作为一种抗氧化剂,Co-ZnO/BMG 复合材料对常见的自由基(DPPH[89.6±1.5%]、一氧化氮[90.2±1.3%]、ABTS[87.7±1.8%]和 O[46.7±1.9%])具有高效的清除性能,优于抗坏血酸。此外,其抗糖尿病活性显著增强,并强烈抑制关键氧化酶(猪α-淀粉酶(90.6±1.5%)、粗α-淀粉酶(84.3±1.8%)、胰腺α-葡萄糖苷酶(95.7±1.4%)、粗肠α-葡萄糖苷酶(93.4±1.8%)和淀粉葡萄糖苷酶(96.2±1.4%))。Co-ZnO/BMG 的抑制活性高于米格列醇,在某些情况下,高于或接近阿卡波糖。因此,考虑到现有药物的成本和不良反应,合成的 Co-ZnO/BMG 复合材料可用作商业抗糖尿病和抗氧化剂。研究结果还表明了钴掺杂和 BMG 集成对 ZnO 生物活性的影响。