Li Chunrui
Huazhong University of Science and Technology
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Li Chunrui.
Journal of Huazhong University of Science and Technology-medical Sciences | 2003
Li Chunrui; Liu Wenli; Meng Fankai; Huang Wei; Zhou Jianfeng; Sun Hanying; Feng Yongdong
SummaryIn order to explore the molecular mechanisms of sodium butyrate and trichostain A on K562 cell proliferation/differentiation, K562 cells were grown in the absence or presence of sodium butyrate or trichostatin A. The percentage of viable cells was determined by trypan blue exclusion. Differentiation was determined by nitro-blue tetrazolium (NBT) reduction and cell surface adhesion molecules analyzed by FACS. Cell cycle distribution was studied after DNA staining by propidium iodide. Cell cycle regulatory proteins were detected by Western blot and reverse transcription-polymerase chain reaction. The results showed that sodium butyrate blocked cells mainly at the G0/G1 phase of the cell cycle, whereas trichostatin A arrested the cells at G2 phase. Sodium butyrate could down-regulate the mRNA expression of cyclin D1, but not affect its protein expression, down-regulate the protein expression of cyclin D3, but not affect its mRNA expression. Trichostatin A showed similar effects on cyclin D1 and D3 as sodium butyrate. Both sodium butyrate and trichostatin A could stimulate p21 expression of K562 cells at mRNA and protein levels. It may be concluded that sodium butyrate and trichostatin A could promote the proliferation/differentiation of the K562 cells, which might be contributed to the induced expression of cyclin D3 and p21 proteins.
Journal of Hematology & Oncology | 2011
Xiao Min; Zhang Na; Liu Yanan; Li Chunrui
Acute megakaryoblastic leukemia (AMKL) is a type of acute myeloid leukemia (AML), in which majority of the blasts are megakaryoblastic. De novo AMKL in adulthood is rare, and carries very poor prognosis. We here report a 45-year-old woman with de novo AMKL with BCR/ABL rearrangement and der(16)t(1;16)(q21;q23) translocation but negative for t(9;22) Ph chromosome. Upon induction chemotherapy consisting of homoharringtonine, cytarabine and daunorubicin, the patient achieved partial hematological remission. The patient was then switched to imatinib plus one cycle of CAG regimen (low-dose cytarabine and aclarubicin in combination with granulocyte colony-stimulating factor), and achieved complete remission (CR). The disease recurred after 40 days and the patient eventually died of infection. To the best of our knowledge, this is the first report of de novo AMKL with p210 BCR/ABL and der(16)t(1;16)(q21;q23) translocation but not t(9;22) Ph chromosome.
Journal of Huazhong University of Science and Technology-medical Sciences | 2004
Huang Mei; Liu Wenli; Li Chunrui; Deng Jinniu; Zhou Jianfeng; Zhang Donghua; Sun Hanying
SummaryTo explore the molecular mechanisms of sodium butyrate working on SKM-1 cell proliferation/differentiation and to study its synergistic effect with all-trans retinoic acid (ATRA), SKM-1 cells were grown in the absence or presence of sodium butyrate and/or ATRA. The percentage of viable cells was determined by trypan blue exclusion. Differentiation was dtermined by nitroblue tetrazolium (NBT) reduction and cell surface adhesion molecules was analyzed by FACS. Cell cycle distribution was examined after DNA staining by propidium iodide. D-type cyclins, cdks and P21 mRNA were studied by reverse transcription-polymerase chain reaction. Our results showed that sodiun butyrate and/or ATRA blocked cells mainly in the G0/G1 phase of the cell cycle. ATRA inhibited the mRNA expression of CDK6, CDK4, cyclinD3 and cyclinD1. Sodium butyrate inhibited the mRNA expression of CDK2, cyclinD2 and cyclinD1. ATRA and sodium butyrate inhibited the mRNA expression of CDK6, CDK4, CDK2, cyclinD1, cyclinD2 and cyclinD3. Both ATRA and/or sodium butyrate stimulated p21 expression at the mRNA levels Our results suggest that the effect of sodium butyrate on cell proliferation/differentiation might be linked to its ability to induce expression of p21 mRNA and inhibit the cyclin-cdk complexes. Our observations support the notion that the sodium butyrate works synergistically with ATRA.
Journal of Huazhong University of Science and Technology-medical Sciences | 2004
Meng Fankai; Tan Xiyou; Liu Wenli; Sun Hanying; Zhou Jianfeng; Li Chunrui; Liu Dan; He Li; Sun Lan
SummaryThe pathogenesis of aplastic anemia (AA) was explored and the effects of AA serum on the expression of crucial cyclin D isoform (cyclin D3) in umbilical cord blood hematopoietic stem/progenitor cells were observed. The CD34+ cells were isolated from the cord blood with MIDI-MACS Semi-solid methylcellulose culture technique was used to measure the formation of CFU-GM; The expression level of cyclin D3 was assayed by semi-quantitative RT-PCR and Western-blot after the hematopoietic stem/progenitor cells were incubated in AA serum. The results showed that the AA serum could inhibit the formation of CFU-GM and down regulate the expression level of the cyclin D3 at the mRNA and protein level respectively. In conclusion, the AA serum could inhibit the proliferation of hematopoietic stem cells and down regulate level of cyclin D3, which might be one mechanism of hematopoiesis inhibition in AA.
PLOS ONE | 2016
Meng Xiangkun; Li Chunrui; Xiu Chunli; Zhang Jianhua; Li Jingjing; Huang Lixin; Zhang Yixi; Liu Zewen
PLOS ONE | 2016
Meng Xiangkun; Li Chunrui; Xiu Chunli; Zhang Jianhua; Li Jingjing; Huang Lixin; Zhang Yixi; Liu Zewen
PLOS ONE | 2016
Meng Xiangkun; Li Chunrui; Xiu Chunli; Zhang Jianhua; Li Jingjing; Huang Lixin; Zhang Yixi; Liu Zewen
PLOS ONE | 2016
Meng Xiangkun; Li Chunrui; Xiu Chunli; Zhang Jianhua; Li Jingjing; Huang Lixin; Zhang Yixi; Liu Zewen
PLOS ONE | 2016
Meng Xiangkun; Li Chunrui; Xiu Chunli; Zhang Jianhua; Li Jingjing; Huang Lixin; Zhang Yixi; Liu Zewen
PLOS ONE | 2016
Meng Xiangkun; Li Chunrui; Xiu Chunli; Zhang Jianhua; Li Jingjing; Huang Lixin; Zhang Yixi; Liu Zewen