The role of cancer stem cells in gastrointestinal cancer-associated death has been widely recognized. Gastrointestinal cancer stem cells (GCSCs) are considered to be responsible for tumor initiation, growth, resistance to cytotoxic therapies, recurrence and metastasis due to their unique properties. These properties make the current therapeutic trials against GCSCs ineffective.
View Article and Find Full Text PDFBackground And Aims: A point mutation (gp130Y757F/Y759F) was identified as being responsible for aberrant activation of gp130 in mice and associated with gastric adenocarcinoma induction. As a result, we investigated the possible role of key point mutations in Tyr from IL6ST exon 17 that encode for the catalytic domain of gp130, and of its respective activators (IL-6 family member cytokines) in human gastric cancer initiation and development.
Method: DNA, protein and plasma from 51 patients with gastric adenocarcinoma have been used in exploring gp130 status.
CD4+ T helper (Th) cells have been divided into different subsets as defined by their cytokine products and functions after their activation. CD4+ T cell subsets are continuously discovered and until now Th1, Th2, Th9, Th17, and regulatory T (Treg) cells have been almost unanimously recognized but yet not completely characterized. The selective production of cytokines by each of the subsets is probably the master key of the mechanisms of immune regulation.
View Article and Find Full Text PDFRoum Arch Microbiol Immunol
May 2010
Accurate genotyping of hepatitis C virus (HCV) has clinical implications for treatment orientation and epidemiological impact in tracing the contamination sources. The aim of the study was to compare a genotyping assay by restriction fragment length polymorphism (RFLP) in the HCV 5'untranslated region (5'UTR) with sequencing in the 5'untranslated and NS5B regions. One hundred and three samples, collected between 2004 and 2006 from chronically infected patients with HCV, were tested with the 5'UTR and NS5B protocols.
View Article and Find Full Text PDFHematopoiesis is maintained by the activity of multipotent stem cells, which have the dual capacity to self-renew and to differentiate into all of the blood cell lineages. The major challenge of stem cells based regenerative therapy is to expand ex vivo the primitive compartment to increase transplantable stem cells number. The present study was designed to evaluate several culture systems for in vitro maintenance of umbilical cord blood stem cells.
View Article and Find Full Text PDF