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Congenital neutropenia: disease models guiding new treatment strategies
Author(s) -
Ivo P. Touw
Publication year - 2021
Publication title -
current opinion in hematology/current opinion in hematology, with evaluated medline
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 1.295
H-Index - 97
eISSN - 1080-8213
pISSN - 1065-6251
DOI - 10.1097/moh.0000000000000696
Subject(s) - congenital neutropenia , neutropenia , disease , myeloid , medicine , transplantation , myeloid leukemia , stem cell , haematopoiesis , immunology , biology , genetics , chemotherapy
Myeloid diseases are often characterized by a disturbed regulation of myeloid cell proliferation, survival, and maturation. This may either result in a severe paucity of functional neutrophils (neutropenia), an excess production of mature cells (myeloproliferative disorders) or in clonal expansions of dysplastic or immature myeloid cells (myelodysplasia and acute myeloid leukemia). Although these conditions can be regarded as separate entities, caused by the accumulation of distinct sets of somatic gene mutations, it becomes increasingly clear that they may also evolve as the prime consequence of a congenital defect resulting in severe neutropenia. Prominent examples of such conditions include the genetically heterogeneous forms of severe congenital neutropenia (SCN) and Shwachman-Diamond Syndrome. CSF3 treatment is a successful therapy to alleviate neutropenia in the majority of these patients but does not cure the disease nor does it prevent malignant transformation. Allogeneic stem cell transplantation is currently the only therapeutic option to cure SCN, but is relatively cumbersome, e.g., hampered by treatment-related mortality and donor availability. Hence, there is a need for new therapeutic approaches.

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