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OMICS IN SPACE – Interview with Professor Afshin Beheshti on Translating Proteomics

Key Takeaway: In a recent interview, Professor Afshin Beheshti discusses the intersection of spaceflight and biology, highlighting how space research can inform human health. He addresses biological challenges faced during spaceflight and the importance of omics studies. The conversation also touches on gaps in current research and the potential of AI in advancing these studies.
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POSITIVE FACTORS

  • Professor Beheshti's work enhances understanding of biology in space.
  • Research could lead to breakthroughs in human health.
  • Focus on democratizing AI access through Kwaai is commendable.

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~29 mo
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Full Press Release Details

Industry interviews
Nautilus Biotechnology
February 5, 2026
In this episode of Translating Proteomics, host Parag Mallick chats with Professor Afshin Beheshti who is a Professor of Surgery, Director of the Center for Space Biomedicine, and Associate Director of the McGowan Institute for Regenerative Medicine at the University of Pittsburgh. In addition, Professor Beheshti has a visiting researcher appointment at the Broad Institute of MIT and Harvard and is president of two non-profits – the COVID-19 International Research Team and Kwaai. The latter aims to democratize access to artificial intelligence through the design, construction, and maintenance of a free personal AI called Kwaai.
Professor Beheshti’s research covers a range of topics focused on how circulating mirco RNAs and mitochondria impact health, but this conversation focuses primarily on Professor Beheshti’s work advancing our understanding of how spaceflight impacts biology. We cover:
• How research on spaceflight and biology is done
• Gaps that remain in our understanding of spaceflight and biology
• Omics studies of spaceflight and biology
• How studying spaceflight and biology enhances our understanding of human health more broadly
Find this episode on Apple Podcasts , Spotify , YouTube , or wherever else you get your podcasts.

Chapters

00:00 – Intro
01:10 – How Professor Beheshti got interested in research at the intersection of spaceflight and biology
4:34 – Biological challenges humans face in spaceflight
8:41 – Frailty and “aging” in space
17:44 – How do you measure immune function in space?
22:11 – Timescales of physiological changes due to spaceflight
27:29 – How do multiomic approaches help us understand biology in space?
35:47 – How does studying biology in space help us understand health on Earth?
42:56 – What model systems do we have to study spaceflight biology?
45:48 – What gaps remain in our ability to study and measure biology in space?
47:27 – What do you do in you work with Kwaai?
50:30 – Outro

Resources

• Trivedi Institute for Space and Global Biomedicine New Institute at the University of Pittsburgh focused on “advancing human health through space-driven innovation”
• NASA Open Science Data Repository “Provides open access to biological and physical science datasets from spaceflight and ground studies, enabling data reuse for discovery and innovation.”
• Camera et al., 2024. Agining and putative frailty biomarkers are altered by spaceflight Study on molecular biomarkers and frailty phenotypes in space
• Overbey et al., 2024. The Space Omics and Medical Atlas (SOMA) and international astronaut biobank An “integrated data and sample repository for clinical, cellular, and multi-omic research profiles” from a variety of space missions Space Omics and Medical Atlas (SOMA) website
• Corti et al., 2024. To boldly go where no microRNAs have gone before: spaceflight impact on risk for small-for-gestational-age infants Explores how miRNA signatures of “small-for-gestational-age” are impacted by the space environment
• Beheshti et al., 2013. Age and space irradiation modulate tumor progression: implications for carcinogenesis risk Some of Professor Beheshti’s early work studying connections between spaceflight and cancer progression.
• Kwaai Nonprofit “building a non-cost open source Personal AI assistant”
• New Institute at the University of Pittsburgh focused on “advancing human health through space-driven innovation”
• “Provides open access to biological and physical science datasets from spaceflight and ground studies, enabling data reuse for discovery and innovation.”
• Study on molecular biomarkers and frailty phenotypes in space
• An “integrated data and sample repository for clinical, cellular, and multi-omic research profiles” from a variety of space missions
• Space Omics and Medical Atlas (SOMA) website
• Explores how miRNA signatures of “small-for-gestational-age” are impacted by the space environment
• Some of Professor Beheshti’s early work studying connections between spaceflight and cancer progression.
• Nonprofit “building a non-cost open source Personal AI assistant”
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Frequently Asked Questions

What is Professor Beheshti's role?

Professor Beheshti is a Professor of Surgery and Director of the Center for Space Biomedicine.

How does spaceflight impact human health?

Research on spaceflight helps identify biological challenges and informs health advancements.

What are omics studies?

Omics studies analyze biological data to understand complex interactions in health and disease.

What is the Kwaai project?

Kwaai aims to democratize AI access by creating a free personal AI assistant.

What gaps exist in space biology research?

There are still significant gaps in understanding the biological effects of spaceflight.

Last updated: Feb 5, 2026