• Home
  • Search
  • Stem Cell Culture Under Simulated Microgravity.
  • Cite Icon22
  • https://doi.org/10.1007/5584_2020_539Copy DOI Icon

Stem Cell Culture Under Simulated Microgravity.

Show More
  • Abstract
  • Literature Map
  • References
  • Citations
  • Similar Papers
Abstract

Challenging environment of space causes several pivotal alterations in living systems, especially due to microgravity. The possibility of simulating microgravity by ground-based systems provides research opportunities that may lead to the understanding of in vitro biological effects of microgravity by eliminating the challenges inherent to spaceflight experiments. Stem cells are one of the most prominent cell types, due to their self-renewal and differentiation capabilities. Research on stem cells under simulated microgravity has generated many important findings, enlightening the impact of microgravity on molecular and cellular processes of stem cells with varying potencies. Simulation techniques including clinostat, random positioning machine, rotating wall vessel and magnetic levitation-based systems have improved our knowledge on the effects of microgravity on morphology, migration, proliferation and differentiation of stem cells. Clarification of the mechanisms underlying such changes offers exciting potential for various applications such as identification of putative therapeutic targets to modulate stem cell function and stem cell based regenerative medicine.

Similar Papers
  • Research Article
  • Citations40

Technology using simulated microgravity

  • Aug 22, 2023
  • Regenerative Therapy
  • Yusuke Nishimura
  • PDF
  • Research Article
  • Citations17

Simulated Microgravity Potentiates Hematopoietic Differentiation of Human Pluripotent Stem Cells and Supports Formation of 3D Hematopoietic Cluster

  • Jan 10, 2022
  • Frontiers in Cell and Developmental Biology
  • Chiyuan Ma +9
  • PDF
  • Research Article
  • Citations45

A Simulated Microgravity Environment Causes a Sustained Defect in Epithelial Barrier Function

  • Nov 26, 2019
  • Scientific Reports
  • Rocio Alvarez +5
  • Research Article
  • Citations1

Single Walled Carbon Nanotubes Based Regulation of Proliferation and Diffeneration of Mouse Embryonic Stem Cells

  • Oct 02, 2009
  • Electrochemical Society Transactions
  • Daxiang Cui +8
  • Supplementary Content
  • Citations27

Hematopoietic Stem Cells Culture, Expansion and Differentiation: An Insight into Variable and Available Media

  • Aug 31, 2020
  • International Journal of Stem Cells
  • Pooja Yadav +3
  • PDF
  • Research Article
  • Citations31

Large Scale Phosphoproteome Profiles Comprehensive Features of Mouse Embryonic Stem Cells

  • Dec 13, 2010
  • Molecular & Cellular Proteomics
  • Qing-Run Li +12
  • Research Article
  • Citations18

Methods and Strategies for Procurement, Isolation, Characterization, and Assessment of Senescence of Human Mesenchymal Stem Cells from Adipose Tissue.

  • Jan 01, 2018
  • Methods in molecular biology (Clifton, N.J.)
  • Meenakshi Gaur +2
  • PDF
  • Research Article
  • Citations13

Scalable Microgravity Simulator Used for Long-Term Musculoskeletal Cells and Tissue Engineering

  • Nov 24, 2020
  • International Journal of Molecular Sciences
  • Alessandra Cazzaniga +9
  • Research Article
  • Citations14

Microgravity stress alters bacterial community assembly and co-occurrence networks during wheat seed germination

  • May 20, 2023
  • Science of The Total Environment
  • Jingjing Cui +4
  • Research Article
  • Citations26

Monitoring stem cell proliferation and differentiation in primary midgut cell cultures from Heliothis virescens larvae using flow cytometry

  • Dec 28, 2010
  • Differentiation
  • A Castagnola +2
  • Research Article

When flies and mice develop cancer

  • Jul 18, 2008
  • EMBO reports
  • Offer Gerlitz +2
  • PDF
  • Research Article
  • Citations10

Morphologic and genomic changes of thyroid cancer cell lines exposed to conditions of simulated microgravity

  • Jan 15, 2024
  • npj Microgravity
  • Jong-Hyuk Ahn +4
  • Research Article
  • Citations73

Surface-Functionalized Silk Fibroin Films as a Platform To Guide Neuron-like Differentiation of Human Mesenchymal Stem Cells.

  • Aug 23, 2016
  • ACS Applied Materials & Interfaces
  • Shivaprasad Manchineella +3
  • PDF
  • Research Article
  • Citations8

Enhanced Adipogenic Differentiation of Human Dental Pulp Stem Cells in Enzymatically Decellularized Adipose Tissue Solid Foams

  • Jul 23, 2022
  • Biology
  • Nerea Garcia-Urkia +10
  • Research Article
  • Citations98

Synergism Between Erythropoietin and Interleukin-3 in the Induction of Hematopoietic Stem Cell Proliferation and Erythroid Burst Colony Formation

  • Sep 01, 1988
  • Blood
  • Giovanni Migliaccio +2
Cactus Communications logo

Copyright 2026 Cactus Communications. All rights reserved.