Haploidentical peripheral blood and marrow stem cell transplantation in nine cases of primary immunodeficiency

A Lanfranchi1, R Verardi, K Tettoni

  • 1Institute of Chemistry, University of Brescia, Italy.

Haematologica
|March 28, 2001
PubMed

Insights

Bone marrow transplantation (BMT) using a novel protocol combining donor peripheral stem cells and bone marrow cells significantly improved engraftment rates in children with primary immunodeficiency (PID). This approach offers a viable therapeutic option for patients lacking matched donors.

Area of Science:

  • Pediatric Hematology
  • Immunology
  • Transplantation Medicine

Background:

  • Bone marrow transplantation (BMT) is crucial for treating primary immunodeficiency (PID) in children.
  • Limited availability of familial HLA-identical donors necessitates alternative strategies like matched unrelated or haploidentical BMT.
  • Engraftment challenges exist in haploidentical BMT for PID due to minimal residual immunity.

Purpose of the Study:

  • To enhance engraftment rates in haploidentical BMT for children with PID.
  • To evaluate a protocol involving donor peripheral stem cells and bone marrow cells with intensified conditioning.

Main Methods:

  • Mobilization of peripheral stem cells using granulocyte colony-stimulating factor (G-CSF).
  • Collection and processing of peripheral blood stem cells (PBSC) and bone marrow (BM) cells.
  • Infusion of CD34+ selected PBSC and BM cells, with varying T-cell depletion strategies.

Main Results:

  • All 9 treated patients achieved neutrophil engraftment.
  • 8 out of 9 patients survived and are well, with 4 showing complete chimerism.
  • Successful engraftment and chimerism were achieved even after multiple transplants in complex cases.

Conclusions:

  • The proposed protocol effectively enhances engraftment in haploidentical BMT for PID.
  • The approach demonstrates acceptable conditioning-related toxicity.
  • This strategy presents a promising therapeutic option for pediatric PID patients requiring haploidentical BMT.

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