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A Hypoxia-reoxygenation Injury Model in Self-assembling Human Cardioids.

Journal articles  - Journal Article
Parker, LE; Thomas, MC; Williams, AB; Weirnick, R; Ogliari, AS; Karpurapu, A; Barreto, C; Manepalli, S; Peña, KC; Brandt, AN; Booth, M; Lou, F ...
Published in: J Vis Exp
March 17, 2026

Without rapid revascularization, ischemic heart disease leads to irreversible loss of cardiomyocytes, scar formation, and decreased cardiac function. The ability to model hypoxia-reoxygenation injuries and evaluate potential therapeutic interventions in human tissues is an unmet need. Human cardiac organoids (hCOs) are an emerging model system, but beginning work with hCOs can be challenging due to their small size, requirements for suspension culture, and variability in differentiation efficiency. This protocol offers a user-friendly guide for generating and maintaining human iPSC-derived self-assembling hCOs; methods to process and histologically analyze hCOs; and an approach to injure hCOs with hypoxia-reoxygenation that mimics the fibrosis and apoptosis seen with human ischemia/reperfusion. This protocol provides guidance for using hCOs as a complement to animal models of ischemia-reperfusion injury and could be used to identify and test factors that may boost human myocardial recovery.

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Published In

J Vis Exp

DOI

EISSN

1940-087X

Publication Date

March 17, 2026

Issue

229

Location

United States

Related Subject Headings

  • Oxygen
  • Myocytes, Cardiac
  • Myocardium
  • Myocardial Reperfusion Injury
  • Induced Pluripotent Stem Cells
  • Humans
  • 3101 Biochemistry and cell biology
 

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Parker, L. E., Thomas, M. C., Williams, A. B., Weirnick, R., Ogliari, A. S., Karpurapu, A., … Karra, R. (2026). A Hypoxia-reoxygenation Injury Model in Self-assembling Human Cardioids. J Vis Exp, (229). https://doi.org/10.3791/70310
Parker, Lauren E., Michael C. Thomas, Ashley B. Williams, Rachel Weirnick, Alícia S. Ogliari, Anish Karpurapu, Claudia Barreto, et al. “A Hypoxia-reoxygenation Injury Model in Self-assembling Human Cardioids.J Vis Exp, no. 229 (March 17, 2026). https://doi.org/10.3791/70310.
Parker LE, Thomas MC, Williams AB, Weirnick R, Ogliari AS, Karpurapu A, et al. A Hypoxia-reoxygenation Injury Model in Self-assembling Human Cardioids. J Vis Exp. 2026 Mar 17;(229).
Parker, Lauren E., et al. “A Hypoxia-reoxygenation Injury Model in Self-assembling Human Cardioids.J Vis Exp, no. 229, Mar. 2026. Pubmed, doi:10.3791/70310.
Parker LE, Thomas MC, Williams AB, Weirnick R, Ogliari AS, Karpurapu A, Barreto C, Manepalli S, Peña KC, Brandt AN, Booth M, Dalal NA, Lou F, Beard AJ, Karra R. A Hypoxia-reoxygenation Injury Model in Self-assembling Human Cardioids. J Vis Exp. 2026 Mar 17;(229).

Published In

J Vis Exp

DOI

EISSN

1940-087X

Publication Date

March 17, 2026

Issue

229

Location

United States

Related Subject Headings

  • Oxygen
  • Myocytes, Cardiac
  • Myocardium
  • Myocardial Reperfusion Injury
  • Induced Pluripotent Stem Cells
  • Humans
  • 3101 Biochemistry and cell biology