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通过海水养殖获取制霉菌素。

Accessing Nystatin through Mariculture.

机构信息

Xenobe Research Institute, P.O. Box 3052, San Diego, CA 92163-1052, USA.

出版信息

Molecules. 2021 Dec 17;26(24):7649. doi: 10.3390/molecules26247649.

Abstract

Understanding our oceans and their marine ecosystems has enabled the development of sustainable systems for mariculture. While the bulk of studies to date have focused on the production of food, its remarkable expanse has inspired the translation of other markets towards aquatic environments. This manuscript outlines an approach to pharmaceutical mariculture, by demonstrating a benchmark for future prototyping. Here, design, field evaluation and natural product chemistry are united to successfully produce nystatin at sea. This study begins by evaluating new designs for culture flasks, illustrating a next step towards developing self-contained bioreactors for culturing in marine environments. Through pilot studies, an underwater system was developed to cost effectively produce cultures that yielded 200 mg of nystatin per deployment. Overall, this study demonstrates the potential for the practical culturing of microbes in a marine environment and provides an important next step for the fledgling field of molecular mariculture.

摘要

了解我们的海洋及其海洋生态系统,使我们能够为海水养殖开发可持续的系统。虽然迄今为止的大部分研究都集中在食品生产上,但海洋的广阔空间激发了向水生环境开拓其他市场的灵感。本文概述了一种用于药物海水养殖的方法,通过为未来的原型设计提供了一个基准。在这里,设计、现场评估和天然产物化学被结合起来,成功地在海上生产制霉菌素。本研究首先评估了培养瓶的新设计,为在海洋环境中培养开发自成一体的生物反应器展示了下一步。通过初步研究,开发了水下系统,以经济有效的方式生产培养物,每次部署可产生 200 毫克制霉菌素。总的来说,这项研究展示了在海洋环境中实际培养微生物的潜力,并为分子海水养殖这一新兴领域提供了重要的下一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f778/8708966/543590532ba2/molecules-26-07649-g001.jpg

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