Genes

Curing Sickle Cell Disease by Transplanting Donor Blood Stem Cells as a Step Toward Gene Therapy Inside the Body

Updated

Abstract

Essence

cures now rely on specialized ex vivo HSC approaches, while in vivo HSC gene therapy is presented as a future access-expanding route.

Evidence

This narrative review covers allogeneic , two approved one-time gene therapies for severe sickle cell disease in patients aged 12 years or older, other ex vivo programs, and preclinical in vivo HSC gene-therapy studies.

Caveat

As a review, it synthesizes mechanisms, risks, and development status rather than reporting new clinical outcome data for in vivo HSC gene therapy.

Simplified

Key numbers

500,000
Global Incidence of
Children born with annually worldwide.
23.84 years
Life Expectancy Improvement with
Predicted increase in survival for patients receiving .
$3.1 million
Cost of Lentiviral
Cost of lentiviral-based for .

Full Text

What this is

  • is a serious inherited disorder caused by mutations in the β-globin gene, leading to significant health complications.
  • Current treatment options include () and newly approved gene therapies.
  • This review discusses the mechanisms, risks, and differences between two gene therapies: a lentiviral-based therapy and a CRISPR-Cas9-based therapy.
  • It also explores the potential for in vivo to increase access to treatment, particularly in low-resource settings.

Essence

  • Gene therapies for have recently been approved, providing new curative options. Both therapies require autologous , limiting access, but in vivo could significantly broaden treatment availability.

Key takeaways

  • affects millions globally, with over 500,000 children born with it each year. The disease leads to severe health complications and reduced life expectancy.
  • Two gene therapies were approved in late 2023: a lentiviral-based therapy and a CRISPR-Cas9-based therapy, both requiring autologous . These therapies represent significant advancements in treatment options.
  • In vivo could eliminate the need for , potentially increasing access to treatment for patients in low-income countries, where the disease burden is highest.

Caveats

  • Both gene therapies come with risks, including the potential for secondary malignancies and complications from myeloablative conditioning. Long-term follow-up is necessary to assess safety.
  • Access to and gene therapies is limited to specialized centers, which may not be available in many regions, particularly in low-resource settings.

Definitions

  • sickle cell disease: A group of inherited disorders caused by mutations in the β-globin gene, leading to sickle-shaped red blood cells and severe health complications.
  • allogeneic hematopoietic stem cell transplantation (HSCT): A procedure that replaces diseased hematopoietic stem cells with healthy ones from a donor, potentially curing sickle cell disease.
  • gene therapy: A technique that uses genetic material to treat or prevent disease by modifying or manipulating genes.

Simplified

Funding

Competing interests

0 of 1
author reports competing interests
1 reports none
PubMed

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