GeneLab: Multi‐Omics Investigation of Rodent Research‐1 Biobanked Tissues

Author:

Chakravarty Kaushik1,Lai San‐Huei2,Boyko Valery3,Berrios Daniel4,Fogle Homer3,Dueck Sandra2,Timucin Linda4,Galazka Jonathan5,Reinsch Sigrid5,Stotzky Olga5,Skidmore Mike5

Affiliation:

1. GeneLab; Omics Prep Facility, NASA/Logyx LLC Moffett Field CA

2. NASA/kbrWyle Moffett Field CA

3. NASA/Bionetics Moffett Field CA

4. NASA/University Affiliated Research Center/University of California Santa Cruz Moffett Field CA

5. NASA Ames Research Center Moffett Field CA

Abstract

NASA's Rodent Research (RR) project is playing a critical role in advancing biomedical research on the physiological effects of space environments. Due to the limited resources for conducting biological experiments aboard the International Space Station (ISS), it is imperative to use crew time efficiently while maximizing high‐quality science return. NASA's GeneLab project has as its primary objectives to 1) further increase the value of these experiments using a multi‐omics, systems biology‐based approach, and 2) disseminate these data without restrictions to the scientific community. The current investigation assessed viability of RNA, DNA, and protein extracted from archived RR‐1 tissue samples for epigenomic, transcriptomic, and proteomic assays. During the first RR spaceflight experiment, a variety of tissue types were harvested from subjects, snap‐frozen or RNAlater‐preserved, and then stored at least a year at −80°C after return to Earth. They were then prioritized for this investigation based on likelihood of significant scientific value for spaceflight research. All tissues were made available to GeneLab through the bio‐specimen sharing program managed by the Ames Life Science Data Archive and included mouse adrenal glands, quadriceps, gastrocnemius, tibialis anterior, extensor digitorum longus, soleus, eye, and kidney. We report here protocols for and results of these tissue extractions, and thus, the feasibility and value of these kinds of omics analyses. In addition to providing additional opportunities for investigation of spaceflight effects on the mouse transcriptome and proteome in new kinds of tissues, our results may also be of value to program managers for the prioritization of ISS crew time for rodent research activities.Support or Funding InformationSupport from the NASA Space Life and Physical Sciences Division and the International Space Station Program is gratefully acknowledged

Publisher

Wiley

Subject

Genetics,Molecular Biology,Biochemistry,Biotechnology

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Batch effect correction methods for NASA GeneLab transcriptomic datasets;Frontiers in Astronomy and Space Sciences;2023-06-01

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