Peyvan Systems Inc., Seattle, WA 98109, USA.
University of California San Francisco, Department of Pharmaceutical Chemistry, San Francisco, CA 94158, USA; NASA Ames Research Center, Space Biosciences Research Branch, Moffett Field, CA 94035, USA; NASA Ames Research Center, Exobiology Branch, MS 239-4, Moffett Field, CA 94035, USA.
Life Sci Space Res (Amst). 2019 Aug;22:55-67. doi: 10.1016/j.lssr.2019.07.004. Epub 2019 Jul 9.
In order to facilitate studies on the impact of the space environment on biological systems, we have developed a prototype of GEMM (Gene Expression Measurement Module) - an automated, miniaturized, integrated fluidic system for in-situ measurements of gene expression in microbial samples. The GEMM instrument is capable of (1) lysing bacterial cell walls, (2) extracting and purifying RNA released from cells, (3) hybridizing the RNA to probes attached to a microarray and (4) providing electrochemical readout, all in a microfluidics cartridge. To function on small, uncrewed spacecraft, the conventional, laboratory protocols for both sample preparation and hybridization required significant modifications. Biological validation of the instrument was carried out on Synechococcus elongatus, a photosynthetic cyanobacterium known for its metabolic diversity and resilience to adverse conditions. It was demonstrated that GEMM yielded reliable, reproducible gene expression profiles. GEMM is the only high throughput instrument that can be deployed in near future on space platforms other than the ISS to advance biological research in space. It can also prove useful for numerous terrestrial applications in the field.
为了便于研究空间环境对生物系统的影响,我们开发了 GEMM(基因表达测量模块)的原型 - 一种自动化、微型化、集成的流体系统,用于原位测量微生物样品中的基因表达。GEMM 仪器能够(1)裂解细菌细胞壁,(2)从细胞中提取和纯化释放的 RNA,(3)将 RNA 与微阵列上附着的探针杂交,以及(4)提供电化学读出,所有这些都在微流控卡盒中完成。为了在小型无人航天器上运行,样品制备和杂交的传统实验室方案都需要进行重大修改。该仪器的生物学验证是在聚球藻(一种已知具有代谢多样性和对不利条件的弹性的光合蓝藻)上进行的。结果表明,GEMM 产生了可靠、可重复的基因表达谱。GEMM 是唯一一种能够在不久的将来部署在国际空间站以外的太空平台上的高通量仪器,以推进太空生物学研究。它还可以在该领域的众多地面应用中证明是有用的。