StayCurrentMD · Transamniotic Delivery of Hematopoietic Stem Cells Genetically Modified to Carry a Human Hemoglobin Subunit Beta Gene (HBB) in a Healthy Rodent Model
Article1 min read·Published Dec 2024

Transamniotic Delivery of Hematopoietic Stem Cells Genetically Modified to Carry a Human Hemoglobin Subunit Beta Gene (HBB) in a Healthy Rodent Model

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Article · Dec 2024 · 1 min read

In brief

In brief

This preclinical study evaluates transamniotic delivery of genetically modified hematopoietic stem cells carrying the human hemoglobin beta gene in a rat model. The research explores a minimally invasive fetal intervention approach that could potentially treat hemoglobinopathies like sickle cell disease before birth.

  • Transamniotic stem cell therapy (TRASCET) offers a minimally invasive route for delivering genetically modified HSCs to the fetus.
  • Study tested delivery of hematopoietic stem cells carrying human hemoglobin subunit beta gene (hHBB) via amniotic fluid in rats.
  • TRASCET may provide an alternative to direct intravascular fetal injection for gene therapy in hemoglobinopathies like sickle cell disease.
  • Healthy syngeneic rat model used to establish proof-of-concept for transamniotic delivery of gene-modified stem cells.

Written by the GCMD Library team from the article.

We sought to determine whether transamniotic stem cell therapy (TRASCET) could be a viable alternative for the fetal administration of genetically modified hematopoietic stem cells (HSCs) carrying a human hemoglobin subunit beta gene (hHBB) in a healthy syngeneic rat model.

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