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1.
Acta Clin Croat ; 57(Suppl 1): 35-39, 2018 Oct.
Article in English | MEDLINE | ID: mdl-30457245

ABSTRACT

Multiparametric magnetic resonance is assuming an increasingly important role in the diagnosis, initial assessment and monitoring of patients with prostate cancer. This paper offers a more complex insight into the application of magnetic resonance imaging with prostate cancer, with a current literature overview. The focus is on the problem of initial prostate cancer evaluation which strongly affects further decision-making and therapeutic interventions. Clinical suggestions based on the current guidelines are also offered.


Subject(s)
Magnetic Resonance Imaging , Prostatic Neoplasms , Humans , Magnetic Resonance Spectroscopy , Male , Prospective Studies , Prostatic Neoplasms/diagnostic imaging
2.
Acta Clin Croat ; 57(Suppl 1): 40-45, 2018 Oct.
Article in English | MEDLINE | ID: mdl-30457246

ABSTRACT

The aim of this prospective clinical study was to determine the detection rate of prostate cancers by multiparametric magnetic resonance and transrectal ultrasound (mpMRI-TRUS) cognitive fusion biopsies in patients with a previously negative TRUS-guided biopsy. Between 1 October 2016 and 1 July 2017, in 101 consecutive patients with elevated antigen (PSA) and/or positive digital rectal examination and after a negative first TRUS biopsy, a second, repeated prostate biopsy was performed. In 24 patients, cognitive fusion mpMRI-TRUS biopsy of the prostate with 8-10 system cores and 1-3 target biopsies was performed, in line with the European Association of Urology guidelines. In 77 patients, only a classic, repeated TRUS guided biopsy was performed. In patients with mpMRI, the detection rate according to PIRADS-v2 reporting system was: PIRADS 1, n = 0; PIRADS 2, n = 0; PIRADS 3, n = 0; PIRADS 4, n = 6/8 (75%); and PIRADS 5, n = 2/3 (67%). In the group of patients with MR-TRUS cognitive fusion biopsy, the prostate cancer detection rate was 8/24 (33%), while in the control group the detection rate was 12/77 (16%), which was statistically significant (t test, p = 0.037, CI 95% is 0.01 to 0.37). Patients with PIRADS ≤ 3 (54%) could have avoided the biopsy.


Subject(s)
Image-Guided Biopsy , Magnetic Resonance Imaging , Prostatic Neoplasms/diagnostic imaging , Biopsy , Humans , Magnetic Resonance Spectroscopy , Male , Prospective Studies
3.
Acta Clin Croat ; 57(Suppl 1): 46-49, 2018 Oct.
Article in English | MEDLINE | ID: mdl-30457247

ABSTRACT

The objective of this study was to determine differential expression of TFF1, TFF2 and TFF3 genes and proteins in breast tumor subtypes. In addition, we investigated the correlation between TFF genes within tumor subgroups, and TFF genes with clinical and pathologic characteristics of the tumor. Study group included 122 patients with surgically removed breast tumors. Samples were investigated using qRT-PCR and immunohistochemistry. TFF1 and TFF3 genes and proteins were expressed in breast tumors, while the levels of TFF2 gene and protein expression were very low or undetectable. TFF1 was significantly more expressed in benign tumors, while TFF3 was more expressed in malignant tumors. Gene and protein expression of both TFF1 and TFF3 was greater in lymph node-negative tumors, hormone positive tumors, tumors with moderate levels of Ki67 expression, and in grade II tumors. A strong positive correlation was found between TFF1 and TFF3 genes, and the expression of both negatively correlated with Ki67 and the level of tumor histologic differentiation. Our results suggest that TFF1 and TFF3, but not TFF2, may have a role in breast tumor pathogenesis and could be used in the assessment of tumor differentiation and malignancy.


Subject(s)
Breast Neoplasms , Trefoil Factor-1 , Trefoil Factor-2 , Trefoil Factor-3 , Biopsy , Breast Neoplasms/diagnosis , Breast Neoplasms/metabolism , Female , Humans , Muscle Proteins , Peptides
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