Due to high incidence of invasion and intrahepatic metastasis, hepatocellular carcinoma (HCC) is one of the most aggressive tumors in the world, which is also associated with the acquisition of epithelial-mesenchymal transition (EMT). Increasing evidence suggests that cancer cells with EMT traits share many biological characteristics with cancer stem cells. And miR-200a has been known as a powerful regulator of EMT. Here, we sought to investigate the role of miR-200a in regulation of EMT phenotype of liver cancer stem cells (LCSCs). We used side population (SP) sorting to obtain cancer stem-like cells from HCC cell lines and identified that the SP fraction could be enriched with LCSCs. Then, we detected the expression of miR-200a and EMT makers in SP and non-SP cells. Our results suggested that miR-200a was down-regulated in SP cells, along with relatively low epithelial marker and high mesenchymal marker. In order to find the role of miR-200a in the manipulation of EMT, we transfected miR-200a mimic into LCSCs and found that overexpression of miR-200a resulted in down-regulation of N-cadherin, ZEB2, and vimentin, but up-regulation of E-cadherin. Moreover, overexpression of miR-200a resulted in decreased migration and invasion ability in LCSCs. In conclusion, our study revealed that miR-200a played an important role in linking the characteristics of cancer stem cells with EMT phenotype in HCC, and targeting miR-200a might be an effective strategy to weaken the invasive behavior of LCSCs.
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http://dx.doi.org/10.1007/s13277-014-2856-2 | DOI Listing |
Pathol Res Pract
December 2024
Department of Zoology (PG), Vellalar College for Women, Erode, India. Electronic address:
Breast cancer remains the leading cause of mortality among women with cancer. This article delves into the intricate relationship between breast cancer and cancer stem cells (CSCs), emphasizing advanced methods for their identification and isolation. The key isolation techniques, such as the mammosphere formation assay, surface marker identification, Side Population assay, and Aldehyde Dehydrogenase assay, are critically examined.
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January 2025
H. Lee Moffitt Cancer Center, Tampa, Florida, United States.
Myelodysplastic syndromes/neoplasms (MDS) are a widely heterogenous group of myeloid malignancies characterized by morphologic dysplasia, a defective hematopoiesis, and recurrent genetic abnormalities. The original and revised International Prognostic Scoring Systems (IPSS) have been used to risk-stratify patients with MDS to guide treatment strategies. In higher-risk MDS, the therapeutic approach is geared toward delaying leukemic transformation and prolonging survival.
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January 2025
Universitätsklinikum Heidelberg, Med. Klinik V, GMMG-Studygroup, Heidelberg, Germany.
The multicenter, phase III GMMG ReLApsE trial (EudraCT-No:2009-013856-61) randomized relapsed and/or refractory multiple myeloma (RRMM) patients equally to lenalidomide/dexamethasone (LEN/DEX, 25mg days 1-21/40mg weekly, 4-week cycles) re-induction, salvage high dose chemotherapy (sHDCT, melphalan 200mg/m2), autologous stem cell transplantation (ASCT) and LEN maintenance (10mg/day; transplant arm, n=139) versus continuous LEN/DEX (control arm, n=138). Ninety-four percent of patients had received frontline HDCT/ASCT. We report an updated analysis of survival endpoints with a median follow-up of 99 months.
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January 2025
Department of Molecular Biotechnologies and Health Sciences, University of Torino, Torino, Italy.
Although recent evidence suggests that myeloid clonal hematopoiesis (M-CH) may influence lymphoma clinical outcome, its impact in mantle cell lymphoma (MCL) remains unclear. Here, we report a comprehensive NGS-based analysis of the M-CH mutational landscape at baseline and follow-up in patients enrolled in the Fondazione Italiana Linfomi (FIL) MCL0208 phase 3 trial (NCT02354313), evaluating lenalidomide maintenance versus observation after chemoimmunotherapy and autologous stem cell transplantation (ASCT) in untreated young MCL patients. Overall, 254/300 (85%) enrolled patients (median age 57 years [32-66]) had a baseline sample available for CH analysis.
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January 2025
Guangzhou National Laboratory, Guangzhou, 510005, China.
Organoid technology provides a transformative approach to understand human physiology and pathology, offering valuable insights for scientific research and therapeutic development. Human gastric organoids, in particular, have gained significant interest for applications in disease modeling, drug discovery, and studies of tissue regeneration and homeostasis. However, the lack of standardized quality control has limited their extensive clinical applications.
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