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Dr. Todd Ponsky

Pediatric Surgery · View profile →

Giussepe Cala, PhD candidate - Best of the Best in Pediatric Surgery 2024

Video Published 2024-02-26 Updated 2024-02-26

Timestops (9)

00:00:00,000
Introduction to Organoids
Giuseppe Cala introduces the concept of organoids derived from amniotic and tracheal fluids, highlighting their potentia…
00:02:00,000
Methodology and Cell Atlas Creation
The presentation details the methodology for isolating viable cells from amniotic fluid and creating an amniotic fluid c…
00:04:00,000
Characterization of Organoids
Cala discusses the characterization of organoids, focusing on their morphologies and gene expression profiles, particula…
00:06:00,000
Clinical Applications and CDH Focus
The focus shifts to congenital diaphragmatic hernia (CDH), detailing how organoids from affected fetuses can be used for…
00:08:00,000
Impact of Fetal Surgery on Organoids
Cala explains how fetal surgery impacts gene expression in organoids, showing differences between organoids derived pre-…
00:10:00,000
Functional Studies of Lung Organoids
Investigating the functional aspects of lung organoids, including ciliary beating frequency and differentiation, highlig…
00:12:00,000
Future Directions and Drug Testing
Discussion on the potential for drug testing using organoids, particularly for enhancing epithelial cell proliferation i…
00:14:00,000
Commercialization and Patents
Cala addresses the commercialization of organoid technology and ongoing patent efforts, indicating future availability f…
00:16:00,000
Conclusion and Q&A
The presentation concludes with a summary of findings and opens the floor for questions, emphasizing the significance of…

Topic Overview

PhD candidate presents novel method for generating fetal epithelial organoids from amniotic and tracheal fluids without tissue samples, enabling prenatal functional diagnosis. CDH lung organoids show impaired differentiation and altered cell composition, with potential applications in drug testing and clinical decision-making for congenital malformations.

Key Takeaways

  • Amniotic fluid contains viable fetal epithelial stem cells that can form lung, kidney, and intestinal organoids without requiring fetal tissue samples.
  • Lung organoids derived from CDH fetuses show impaired ciliary function and altered cell composition compared to healthy controls.
  • Fetal tracheal occlusion for CDH changes gene expression patterns in patient-derived organoids, making them more similar to healthy controls.
  • Prenatal organoid generation enables functional testing and drug screening during pregnancy to guide clinical decision-making.
  • CDH lung organoids provide a platform to test therapeutics that enhance epithelial proliferation and lung maturation in hypoplastic lungs.

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