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曲霉的共培养:对其次生代谢产物和微生物相互作用的最新认识。

Aspergillus co-cultures: A recent insight into their secondary metabolites and microbial interactions.

机构信息

Department of Pharmacognosy, College of Pharmacy, King Saud University, Riyadh, 11451, Saudi Arabia.

Department of Pharmacognosy, Faculty of Pharmacy, Ain shams University, Cairo, 11566, Egypt.

出版信息

Arch Pharm Res. 2023 Apr;46(4):273-298. doi: 10.1007/s12272-023-01442-5. Epub 2023 Apr 10.

Abstract

There is an urgent need for novel antibiotics to combat emerging resistant microbial strains. One of the most pressing resources is Aspergillus microbial cocultures. The genome of Aspergillus species comprises a far larger number of novel gene clusters than previously expected, and novel strategies and approaches are essential to exploit this potential source of new drugs and pharmacological agents. This is the first review consulting recent developments and chemical diversity of Aspergillus cocultures and highlighting its untapped richness. The analyzed data revealed that cocultivation of several Aspergillus species with other microorganisms, including bacteria, plants, and fungi, is a source of novel bioactive natural products. Various vital chemical skeleton leads were newly produced or augmented in Aspergillus cocultures, among which were taxol, cytochalasans, notamides, pentapeptides, silibinin, and allianthrones. The possibility of mycotoxin production or complete elimination in cocultivations was detected, which pave the way for better decontamination strategies. Most cocultures revealed a remarkable improvement in their antimicrobial or cytotoxic behavior due to their produced chemical patterns; for instance, weldone and asperterrin whose antitumor and antibacterial activities, respectively, were superior. Microbial cocultivation elicited the upregulation or production of specific metabolites whose importance and significance are yet to be revealed. With more than 155 compounds isolated from Aspergillus cocultures in the last 10 years, showing overproduction, reduction, or complete suppression under the optimized coculture circumstances, this study filled a gap for medicinal chemists searching for new lead sources or bioactive molecules as anticancer agents or antimicrobials.

摘要

迫切需要新型抗生素来对抗新兴的耐药微生物菌株。曲霉属微生物共培养物是最紧迫的资源之一。曲霉属物种的基因组包含比以前预期更多的新型基因簇,因此需要新的策略和方法来利用这一潜在的新药和药物制剂来源。这是第一篇咨询曲霉属共培养物的最新发展和化学多样性并强调其未开发丰富性的综述。分析的数据表明,几种曲霉属物种与其他微生物(包括细菌、植物和真菌)的共培养是新型生物活性天然产物的来源。在曲霉属共培养物中,各种重要的化学骨架被新产生或增强,其中包括紫杉醇、细胞松弛素、诺马肽、五肽、水飞蓟素和 allianthrones。在共培养物中检测到真菌毒素产生或完全消除的可能性,这为更好的去污策略铺平了道路。由于产生的化学模式,大多数共培养物显示出抗微生物或细胞毒性行为的显著改善;例如,weldone 和 asperterrin,它们的抗肿瘤和抗菌活性分别优越。微生物共培养物引发了特定代谢物的上调或产生,其重要性和意义尚待揭示。在过去 10 年中,从曲霉属共培养物中分离出超过 155 种化合物,在优化的共培养条件下显示出过度产生、减少或完全抑制,这项研究为寻找新的先导源或生物活性分子作为抗癌剂或抗菌剂的药用化学家填补了空白。

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