1.Apoptosis of Megakaryocytic Leukemia Cell Line Meg-01 Induced by TSP-1 Via CD36/Caspase-3.
Hui-Min KONG ; Wei-Qing SU ; Yi LUO ; Hui GE ; Liang LI ; Mo YANG ; Qian-Li JIANG
Journal of Experimental Hematology 2022;30(4):998-1004
OBJECTIVE:
To investigate the effect of thrombospondin-1 (TSP-1) on apoptosis of human megakaryocytic leukemia cell line Meg-01 and its possible mechanism.
METHODS:
The expression of CD36 antigen in Meg-01 cells was detected by flow cytometry and immunocytochemistry. Meg-01 cells were cultured for 48 hours with TSP-1 and CD36 antibody FA6-152 at different concentrations. The early apoptosis and activity of caspase-3 were detected by flow cytometry. The effect of TSP-1 on the growth and differentiation of megakaryocytes was investigated by cell counting and CFU-MK culture.
RESULTS:
The flow cytometry and immunocytochemistry showed that CD36 antigen was expressed on the surface of Meg-01 cells. TSP-1 (5 μg/ml) inhibited the growth of Meg-01 cells, but had unobvious effect on M-07e cells. After addition of CD36 antibody FA6-152 (5, 10, and 25 μg/ml), the inhibition effect of TSP-1 was significantly reduced. TSP-1 (2.5, 5, and 7.5 μg/ml) increased the positive expression of Annexin V (P<0.01) and caspase-3 activity (P<0.01), which indicated that TSP-1 had a significant effect on inducing apoptosis. After addition of CD36 antibody FA6-152 (25 μg/ml), the apoptosis induced by TSP-1 in Meg-01 cells was significantly reduced. TSP-1 (5, 10, and 25 μg/ml) could significantly inhibit the formation of CFU-MK in mouse bone marrow cells, while β-TG could not. CD36 antibody FA6-152 (25 μg/ml) could significantly reduce the inhibition of TSP-1 on CFU-MK.
CONCLUSION
TSP-1 may induce apoptosis of megakaryocytic leukemia cell line Meg-01 cells via CD36/caspase-3, which provides a potential new drug development and treatment target for clinical treatment of megakaryocytic leukemia.
Animals
;
Apoptosis
;
CD36 Antigens/metabolism*
;
Caspase 3/metabolism*
;
Cell Line
;
Humans
;
Leukemia, Megakaryoblastic, Acute
;
Mice
;
Thrombospondin 1/pharmacology*
2.Phenotypic and genetic analysis of acute megakaryoblastic leukemia in young children with WT1, MLL-PTD and EVI1 genes.
Liping ZHAO ; Xing CHEN ; Manjiang LI ; Huanliang DENG
Chinese Journal of Medical Genetics 2021;38(7):690-693
OBJECTIVE:
To explore the phenotypic and genetic characteristics of acute megakaryoblastic leukemia (AMKL) in young children accompany by WT1, MLL-PTD and EVI1, in order to improve the diagnosis level of AMKL.
METHODS:
EDTA-K
RESULTS:
White blood cell count was 12.3× 10
CONCLUSION
Acute megakaryocytic leukemia has unique and complex phenotypic and genetics characteristics.
Bone Marrow
;
Child
;
Child, Preschool
;
Chromosome Aberrations
;
Humans
;
Karyotyping
;
Leukemia, Megakaryoblastic, Acute/genetics*
;
MDS1 and EVI1 Complex Locus Protein
;
Megakaryocytes
;
Oncogene Proteins, Fusion
;
WT1 Proteins
3.Clinical features and prognosis of pediatric acute megakaryocytic leukemia.
Tie-Mei LUO ; Jie YU ; Xi-Zhou AN
Chinese Journal of Contemporary Pediatrics 2021;23(6):613-620
OBJECTIVE:
To study the clinical features and prognosis of children with acute megakaryocytic leukemia (AMKL) and the clinical effect of acute myeloid leukemia 03 (AML03) regimen for the treatment of pediatric AMKL.
METHODS:
The clinical data were collected from 47 children with AMKL who were diagnosed from May 2011 to December 2019. The treatment outcomes and prognostic factors were analyzed. The Kaplan-Meier method and the log-rank test were used for survival analysis.
RESULTS:
Among the 47 children with AMKL, 22 with non-Down syndrome-AMKL were treated by the AML03 regimen, with a median follow-up time of 11.4 months. For the 22 non-Down syndrome-AMKL patients, the remission rate of bone marrow cytology was 85% and the negative rate of minimal residual disease (MRD) was 79% after induction Ⅱ, with a 2-year overall survival (OS) rate of (50±13)% and a 2-year event-free survival (EFS) rate of (40±12)%. The group with positive immunophenotypic marker CD56 had significantly lower 2-year EFS and OS rates than the group with negative CD56 (
CONCLUSIONS
Children with AMKL tend to have a low remission rate and a poor prognosis. Positive immunophenotypic marker CD56, bone marrow cytology during early treatment response, and MRD results are important factors influencing the prognosis. Allogeneic hematopoietic stem cell transplantation has no significant effect on the prognosis of AMKL.
Child
;
Disease-Free Survival
;
Hematopoietic Stem Cell Transplantation
;
Humans
;
Leukemia, Megakaryoblastic, Acute/therapy*
;
Neoplasm, Residual
;
Prognosis
;
Remission Induction
;
Survival Rate
;
Treatment Outcome
4.Analysis of Clinical Characteristics and Prognosis in Children with Acute Megakaryoblastic Leukemia without Down Syndrome.
Shao-Fen LIN ; Shu-Yi GUO ; Su LIU ; Jian WANG ; Ke HUANG ; Yang LI ; Jian-Pei FANG ; Dun-Hua ZHOU
Journal of Experimental Hematology 2021;29(2):374-380
OBJECTIVE:
To analyze the clinical characteristics and treatment effects of children with acute megakaryoblastic leukemia without down syndrome (non-DS-AMKL).
METHODS:
The clinical data of 19 children with non-DS-AMKL treated in the Pediatric Hematology Ward in Sun Yat-sen Memorial Hospital of Sun Yat-sen University from May 2008 to April 2018 were analyzed retrospectively. The clinical characteristics, laboratory test and treatment methods of the children were concluded. All patients were followed up to evaluate the effect of treatment.
RESULTS:
The 19 cases of children included nine male and ten female, the median age of onset was 2 years old. The clinical manifestations showed nonspecific. The median white blood cell of peripheral blood was 15.88×10
CONCLUSION
Non-DS-AMKL was rare in children and difficult to be diagnosed. Determination of MICM classification as early as possible was helpful for diagnosis, and genetic testing played an important role for diagnosis and prognosis evaluation. Early hematopoietic stem cell transplantation in patients with CR after chemotherapy might be an effective way to cure AMKL.
Child
;
Child, Preschool
;
DEAD-box RNA Helicases
;
DNA Helicases
;
Down Syndrome
;
Female
;
Humans
;
Leukemia, Megakaryoblastic, Acute/genetics*
;
Male
;
Prognosis
;
Retrospective Studies
;
Trisomy
5.Analysis on the laboratory examination characteristics in 22 patients with acute megakaryoblastic leukemia.
Shuxu DONG ; Shixuan ZHAO ; Ying WANG ; Wen CUI ; Chengwen LI ; Yumei CHEN ; Xiaofan ZHU ; Yingchang MI ; Yongxin RU ; Jianxiang WANG
Chinese Journal of Hematology 2016;37(4):297-301
OBJECTIVETo analyze the ultra microstructures and the expression of platelet peroxidase (PPO) of megakaryocytes from bone marrow, their clinical manifestations and laboratory characteristics in patients with acute megakaryoblastic leukemia (AMKL).
METHODSKaryocytes from bone marrow of 22 AMKL patients were divided into two parts by lymphocyte separation liquid, one part was used to prepare the ordinary transmission electron microscope specimens to observe the morphological structures of megakaryocytes, the other was used to prepare the histochemical specimens of platelet peroxidase to analyze the positive reaction of PPO in AMKL, which were coupled with the patients' data of with bone marrow morphology, cell chemistry, and chromosome karyotype examination.
RESULTSMegakaryocytes from 17 of 22 patients were in the first stage, less than 20 µm in diameter, the nucleis were round, the cytoplasm contained microtubules, membranous vesicles and minute dense granules, no demarcation membrane system and surface-connected canalicular system, less dense granules and α-granules; Megakaryocytes in 5 cases were mainly in the first stage, while containing second and third stage megakaryocytes; the positive rate of PPO in megakaryocytes of 22 patients was 0-80%. The primitive and naive megakaryocytes were found in bone marrow smears of 22 cases, CD41 staining of the megakaryocytes was detected in the primitive and naive megakaryocytes, and more complex chromosome karyotype anomalies were observed.
CONCLUSIONThe majority of megakaryocytes in AMKL patients were the first stage ones, the rest were second and third stage ones, and the positive PPO reaction was significantly different. CD41 staining of the megakaryocytes was specific with complex chromosome karyotypeswere.
Blood Platelets ; enzymology ; Bone Marrow ; pathology ; Cell Count ; Chromosome Aberrations ; Chromosome Disorders ; Humans ; Karyotyping ; Leukemia, Megakaryoblastic, Acute ; diagnosis ; pathology ; Megakaryocytes ; pathology ; Peroxidase ; metabolism ; Staining and Labeling
7.Constitutional Chromosomal Abnormality Identified in a Sibling Donor After Bone Marrow Stem Cell Transplantation in a Pediatric Patient with Acute Megakaryoblastic Leukemia.
Bo Young SEO ; Hyun Woo CHOI ; Min Gu KANG ; Duck CHO ; Seung Jung KEE ; Soo Hyun KIM ; Jong Hee SHIN ; Soon Pal SUH ; Dong Wook RYANG ; Myung Geun SHIN
Annals of Laboratory Medicine 2015;35(1):162-164
No abstract available.
Bone Marrow/pathology
;
*Bone Marrow Transplantation
;
Child, Preschool
;
Chromosomes, Human, Pair 11
;
Chromosomes, Human, Pair 2
;
Humans
;
Infant
;
Karyotyping
;
Leukemia, Megakaryoblastic, Acute/genetics/*therapy
;
Male
;
Siblings
;
Tissue Donors
;
Translocation, Genetic/*genetics
;
Transplantation, Homologous
8.A Case of Pentasomy 21 With Two Isochromosome 21s in Acute Megakaryoblastic Leukemia Associated With Down Syndrome.
Yeongchun PARK ; Jinsook LIM ; Yong Hyun KO ; Jimyung KIM ; Gye Cheol KWON ; Sun Hoe KOO
Annals of Laboratory Medicine 2015;35(3):373-375
No abstract available.
*Aneuploidy
;
Bone Marrow/pathology
;
Chromosomes, Human, Pair 21
;
Down Syndrome/*complications
;
Female
;
Humans
;
Hyperplasia/pathology
;
In Situ Hybridization, Fluorescence
;
Infant
;
Isochromosomes/*genetics
;
Karyotype
;
Leukemia, Megakaryoblastic, Acute/complications/*diagnosis
;
Megakaryocytes/pathology
9.An Unusual Case of Myeloperoxidase-Positive Acute Megakaryoblastic Leukemia.
Hyeyoung LEE ; Yonggoo KIM ; Yoo Jin KIM ; Kyungja HAN
Annals of Laboratory Medicine 2015;35(4):466-468
No abstract available.
Leukemia, Megakaryoblastic, Acute*
10.Therapy-Related Acute Megakaryoblastic Leukemia in a Lung Cancer Patient.
Jung Joo MOON ; Myung Hyun NAM ; Chae Seung LIM ; Chang Kyu LEE ; Yunjung CHO ; Soo Young YOON
Annals of Laboratory Medicine 2014;34(2):155-158
No abstract available.
Aged
;
Antineoplastic Combined Chemotherapy Protocols/adverse effects/*therapeutic use
;
Blood Cells/pathology
;
Bone Marrow Cells/pathology
;
Carcinoma, Non-Small-Cell Lung/*drug therapy/radiotherapy
;
Humans
;
Karyotyping
;
Leukemia, Megakaryoblastic, Acute/*diagnosis/etiology
;
Lung Neoplasms/*drug therapy/radiotherapy
;
Male

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