Aims: To investigate the expression of tumour necrosis factor (TNF)-related apoptosis-inducing ligand (TRAIL) and osteoprotegerin (OPG) in bladder urothelial carcinomas (UCs) and assess possible interrelations with other regulators of TRAIL induced apoptosis (p65/NF-κB, p-ERK1/2, p-AKT) and FGFR3, as well as to elucidate their potential involvement in bladder tumourigenesis and determine their potential prognostic utility.
Methods: Paraffin embedded transurethral resection tissue from 128 patients with UC was immunostained for TRAIL and OPG as well as for p65/NF-κB, p-ERK1/2, p-AKT and FGFR3.
Results: TRAIL and OPG were coexpressed in 96.
BJU Int
December 2012
Unlabelled: What's known on the subject? and What does the study add? A few published studies investigating single or various PI3K/AKT/mTOR signalling components have produced inconsistent results. Moreover, PI3K regulatory subunit p85a and activated p70S6K expression levels have not been previously examined in urothelial carcinoma (UC). The present study addresses simultaneously all key members of PI3K/AKT/mTOR signalling cascade supporting a differential implication of PI3K/AKT/mTOR pathway components in urothelial tumorigenesis.
View Article and Find Full Text PDFObjective: To elucidate the role of replication protein A (RPA) in both superficial (Ta-T1) and muscle-invasive (T2-T4) urothelial carcinomas (UCs), investigating its potential prognostic usefulness.
Patients And Methods: Paraffin-embedded tissue from 156 patients with bladder UC was immunostained for RPA1 and RPA2.
Results: RPA1 and RPA2 labelling indexes (LIs) decreased with increasing histological grade (both P < 0.
Purpose: To elucidate the role of D-type cyclins in both superficial (Ta-T1) and muscle-invasive (T2-T4) urothelial carcinomas (UCs), investigating their potential prognostic usefulness.
Methods: Paraffin-embedded tissues from 157 patients with bladder UC were immunostained for cyclins D1, D2 and D3.
Results: Cyclin D1 expression positively correlated with D2 and negatively with D3.
In 2002, an innovative neutron time-of-flight facility started operation at CERN: n_TOF. The main characteristics that make the new facility unique are the high instantaneous neutron flux, high resolution and wide energy range. Combined with state-of-the-art detectors and data acquisition system, these features have allowed to collect high accuracy neutron cross-section data on a variety of isotopes, many of which radioactive, of interest for Nuclear Astrophysics and for applications to advanced reactor technologies.
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