Literature DB >> 10942382

Intramedullary apoptosis of hematopoietic cells in myelodysplastic syndrome patients can be massive: apoptotic cells recovered from high-density fraction of bone marrow aspirates.

V Shetty1, S Hussaini, L Broady-Robinson, K Allampallam, S Mundle, R Borok, E Broderick, L Mazzoran, F Zorat, A Raza.   

Abstract

A higher percentage of apoptotic cells (apoptotic index or AI) is consistently found in bone marrow (BM) biopsies compared to BM aspirates of patients with myelodysplastic syndrome (MDS). Most studies have only investigated the low-density fraction (LDF) mononuclear cells from BM aspirates following density separation for AI determination. In the present study, both LDF and high-density fraction (HDF) cells for AI were examined by electron microscopy (EM) in 10 MDS patients and 4 healthy donors. Matched BM biopsies were subjected to AI detection by in situ end labeling (ISEL) of fragmented DNA. The results indicate that in LDF and HDF cells, AI is consistently higher in MDS patients (8.5% vs 1.5%, respectively; P =.039) compared to healthy donors (27% vs 4%, respectively; P =. 004). The BM biopsy AI was also higher in MDS patients than in healthy donors (3+ vs 0+, respectively; P =.036). In addition, in MDS patients, more apoptotic cells were found in HDF cells than in LDF cells (27% vs 8.5%, respectively;P =.0001). All stages of maturation, ranging from blasts to terminally mature cells belonging to all 3 lineages, were represented in the dying cells in both compartments. Using EM, typical Pelger-Huett-type cells appeared to be apoptotic granulocytes. Both LDF and HDF cells should be examined for an accurate estimation of apoptotic cells because AI would be underestimated if only the LDF cells were studied. Ultrastructural studies consistently show a higher AI in BM biopsies compared to BM aspirates despite the correction factor of HDF cells provided by AI. This may represent the actual extant state, which could conceivably be due to a higher concentration of proapoptotic signals in the biopsies. (Blood. 2000;96:1388-1392)

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Year:  2000        PMID: 10942382

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  19 in total

1.  Blockade of BCL-2 proteins efficiently induces apoptosis in progenitor cells of high-risk myelodysplastic syndromes patients.

Authors:  S Jilg; V Reidel; C Müller-Thomas; J König; J Schauwecker; U Höckendorf; C Huberle; O Gorka; B Schmidt; R Burgkart; J Ruland; H-J Kolb; C Peschel; R A J Oostendorp; K S Götze; P J Jost
Journal:  Leukemia       Date:  2015-07-08       Impact factor: 11.528

Review 2.  Infections in myelodysplastic syndromes.

Authors:  Andréa Toma; Pierre Fenaux; François Dreyfus; Catherine Cordonnier
Journal:  Haematologica       Date:  2012-06-24       Impact factor: 9.941

Review 3.  New agents in myelodysplastic syndromes.

Authors:  Elias Jabbour; Francis J Giles
Journal:  Curr Hematol Malig Rep       Date:  2006-03       Impact factor: 3.952

4.  Mutant U2AF1 Expression Alters Hematopoiesis and Pre-mRNA Splicing In Vivo.

Authors:  Cara Lunn Shirai; James N Ley; Brian S White; Sanghyun Kim; Justin Tibbitts; Jin Shao; Matthew Ndonwi; Brian Wadugu; Eric J Duncavage; Theresa Okeyo-Owuor; Tuoen Liu; Malachi Griffith; Sean McGrath; Vincent Magrini; Robert S Fulton; Catrina Fronick; Michelle O'Laughlin; Timothy A Graubert; Matthew J Walter
Journal:  Cancer Cell       Date:  2015-05-11       Impact factor: 31.743

5.  Biological significance of proliferation, apoptosis, cytokines, and monocyte/macrophage cells in bone marrow biopsies of 145 patients with myelodysplastic syndrome.

Authors:  Krishnan Allampallam; Vilasini Shetty; Suneel Mundle; Diya Dutt; Howard Kravitz; Poluru L Reddy; Sairah Alvi; Naomi Galili; Gurveen S Saberwal; Shalini Anthwal; Maliha W Shaikh; Aaron York; Azra Raza
Journal:  Int J Hematol       Date:  2002-04       Impact factor: 2.490

6.  Evidence for a role of TNF-related apoptosis-inducing ligand (TRAIL) in the anemia of myelodysplastic syndromes.

Authors:  Diana Campioni; Paola Secchiero; Federica Corallini; Elisabetta Melloni; Silvano Capitani; Francesco Lanza; Giorgio Zauli
Journal:  Am J Pathol       Date:  2005-02       Impact factor: 4.307

Review 7.  The role of apoptosis in the pathogenesis of the myelodysplastic syndromes.

Authors:  Jane E Parker; Ghulam J Mufti
Journal:  Int J Hematol       Date:  2001-06       Impact factor: 2.490

8.  Induction of myelodysplasia by myeloid-derived suppressor cells.

Authors:  Xianghong Chen; Erika A Eksioglu; Junmin Zhou; Ling Zhang; Julie Djeu; Nicole Fortenbery; Pearlie Epling-Burnette; Sandra Van Bijnen; Harry Dolstra; John Cannon; Je-in Youn; Sarah S Donatelli; Dahui Qin; Theo De Witte; Jianguo Tao; Huaquan Wang; Pingyan Cheng; Dmitry I Gabrilovich; Alan List; Sheng Wei
Journal:  J Clin Invest       Date:  2013-11       Impact factor: 14.808

9.  Haploinsufficiency of Apc leads to ineffective hematopoiesis.

Authors:  Jianghong Wang; Anthony A Fernald; John Anastasi; Michelle M Le Beau; Zhijian Qian
Journal:  Blood       Date:  2010-01-11       Impact factor: 22.113

Review 10.  Thrombocytopenia in MDS: epidemiology, mechanisms, clinical consequences and novel therapeutic strategies.

Authors:  W Li; K Morrone; S Kambhampati; B Will; U Steidl; A Verma
Journal:  Leukemia       Date:  2015-10-26       Impact factor: 11.528

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