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建立了第一个连续的海洋海绵细胞系。

First continuous marine sponge cell line established.

机构信息

Bioprocess Engineering, Wageningen University and Research, Wageningen, The Netherlands.

Harbor Branch Oceanographic Institute, Florida Atlantic University, Fort Pierce, FL, USA.

出版信息

Sci Rep. 2023 Apr 8;13(1):5766. doi: 10.1038/s41598-023-32394-x.

Abstract

The potential of sponge-derived chemicals for pharmaceutical applications remains largely unexploited due to limited available biomass. Although many have attempted to culture marine sponge cells in vitro to create a scalable production platform for such biopharmaceuticals, these efforts have been mostly unsuccessful. We recently showed that Geodia barretti sponge cells could divide rapidly in M1 medium. In this study we established the first continuous marine sponge cell line, originating from G. barretti. G. barretti cells cultured in OpM1 medium, a modification of M1, grew more rapidly and to a higher density than in M1. Cells in OpM1 reached 1.74 population doublings after 30 min, more than twofold higher than the already rapid growth rate of 0.74 population doublings in 30 min in M1. The maximum number of population doublings increased from 5 doublings in M1 to at least 98 doublings in OpM1. Subcultured cells could be cryopreserved and used to inoculate new cultures. With these results, we have overcome a major obstacle that has blocked the path to producing biopharmaceuticals with sponge cells at industrial scale for decades.

摘要

由于可用的生物量有限,海绵衍生化学物质在药物应用方面的潜力在很大程度上尚未得到开发。尽管许多人试图在体外培养海洋海绵细胞,以建立此类生物制药的规模化生产平台,但这些努力大多未能成功。我们最近表明,Geodia barretti 海绵细胞可以在 M1 培养基中快速分裂。在这项研究中,我们建立了第一个源自 G. barretti 的连续海洋海绵细胞系。在 M1 的改良培养基 OpM1 中培养的 G. barretti 细胞生长速度更快,密度更高。与 M1 中 30 分钟内 0.74 个细胞倍增相比,OpM1 中 30 分钟内细胞达到 1.74 个细胞倍增,增长了两倍多。细胞倍增的最大数量从 M1 中的 5 倍增增加到 OpM1 中的至少 98 倍增。传代细胞可以冷冻保存并用于接种新的培养物。有了这些结果,我们克服了几十年来阻碍用海绵细胞在工业规模上生产生物制药的主要障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/089e/10082835/b31f6de28d42/41598_2023_32394_Fig1_HTML.jpg

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