蓝藻——从海洋到潜在的生物技术和生物医学应用。
Cyanobacteria-From the Oceans to the Potential Biotechnological and Biomedical Applications.
机构信息
Department of Molecular Biosciences, Wenner-Gren Institute, Stockholm University, SE-106 91 Stockholm, Sweden.
Department of Chemistry, Faculty of Science, Menoufia University, Shebin El-Kom 32512, Egypt.
出版信息
Mar Drugs. 2021 Apr 24;19(5):241. doi: 10.3390/md19050241.
Cyanobacteria are photosynthetic prokaryotic organisms which represent a significant source of novel, bioactive, secondary metabolites, and they are also considered an abundant source of bioactive compounds/drugs, such as dolastatin, cryptophycin 1, curacin toyocamycin, phytoalexin, cyanovirin-N and phycocyanin. Some of these compounds have displayed promising results in successful Phase I, II, III and IV clinical trials. Additionally, the cyanobacterial compounds applied to medical research have demonstrated an exciting future with great potential to be developed into new medicines. Most of these compounds have exhibited strong pharmacological activities, including neurotoxicity, cytotoxicity and antiviral activity against HCMV, HSV-1, HHV-6 and HIV-1, so these metabolites could be promising candidates for COVID-19 treatment. Therefore, the effective large-scale production of natural marine products through synthesis is important for resolving the existing issues associated with chemical isolation, including small yields, and may be necessary to better investigate their biological activities. Herein, we highlight the total synthesized and stereochemical determinations of the cyanobacterial bioactive compounds. Furthermore, this review primarily focuses on the biotechnological applications of cyanobacteria, including applications as cosmetics, food supplements, and the nanobiotechnological applications of cyanobacterial bioactive compounds in potential medicinal applications for various human diseases are discussed.
蓝藻是光合原核生物,是新型生物活性次生代谢物的重要来源,同时也被认为是生物活性化合物/药物的丰富来源,如 dolastatin、cryptophycin 1、curacin toyocamycin、phytoalexin、cyanovirin-N 和 phycocyanin。其中一些化合物在成功的 I 期、II 期、III 期和 IV 期临床试验中显示出了有希望的结果。此外,应用于医学研究的蓝藻化合物展现出了令人兴奋的未来,具有很大的潜力可以开发成新药。这些化合物大多数具有很强的药理学活性,包括神经毒性、细胞毒性和抗巨细胞病毒(HCMV)、单纯疱疹病毒 1 型(HSV-1)、人类疱疹病毒 6 型(HHV-6)和人类免疫缺陷病毒 1 型(HIV-1)的抗病毒活性,因此这些代谢产物可能是治疗 COVID-19 的有希望的候选药物。因此,通过合成有效大规模生产天然海洋产物对于解决与化学分离相关的现有问题(包括产量小)非常重要,并且可能有必要更好地研究它们的生物活性。本文重点介绍了蓝藻生物活性化合物的全合成和立体化学确定。此外,本综述主要关注蓝藻的生物技术应用,包括在化妆品、食品补充剂中的应用,以及蓝藻生物活性化合物在纳米生物技术方面在各种人类疾病的潜在药用应用中的应用。