Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where M. Traczyk is active.

Publication


Featured researches published by M. Traczyk.


Cancer Medicine | 2014

Molecular subtyping of bladder cancer using Kohonen self-organizing maps.

Edyta Borkowska; Andrzej Kruk; A. Jedrzejczyk; Marek Rożniecki; Zbigniew Jabłonowski; M. Traczyk; Maria Constantinou; Monika Banaszkiewicz; M. Pietrusinski; Marek Sosnowski; Freddie C. Hamdy; Stefan Peter; James Catto; Bogdan Kałużewski

Kohonen self‐organizing maps (SOMs) are unsupervised Artificial Neural Networks (ANNs) that are good for low‐density data visualization. They easily deal with complex and nonlinear relationships between variables. We evaluated molecular events that characterize high‐ and low‐grade BC pathways in the tumors from 104 patients. We compared the ability of statistical clustering with a SOM to stratify tumors according to the risk of progression to more advanced disease. In univariable analysis, tumor stage (log rank P = 0.006) and grade (P < 0.001), HPV DNA (P < 0.004), Chromosome 9 loss (P = 0.04) and the A148T polymorphism (rs 3731249) in CDKN2A (P = 0.02) were associated with progression. Multivariable analysis of these parameters identified that tumor grade (Cox regression, P = 0.001, OR.2.9 (95% CI 1.6–5.2)) and the presence of HPV DNA (P = 0.017, OR 3.8 (95% CI 1.3–11.4)) were the only independent predictors of progression. Unsupervised hierarchical clustering grouped the tumors into discreet branches but did not stratify according to progression free survival (log rank P = 0.39). These genetic variables were presented to SOM input neurons. SOMs are suitable for complex data integration, allow easy visualization of outcomes, and may stratify BC progression more robustly than hierarchical clustering.


Central European Journal of Urology 1\/2010 | 2012

polymorphic variants of H-raS protooncogene and their possible role in bladder cancer etiology

M. Traczyk; Edyta Borkowska; Marek Rożniecki; Rafał Purpurowicz; A. Jedrzejczyk; Piotr Marks; M. Pietrusinski; Zbigniew Jabłonowski; Marek Sosnowski; Bogdan Kałużewski

Introduction H-RAS gene is a protooncogene encoding p21ras, a small protein with GTPase activity. This protein is a component of many signaling cascades, while mutations in H-RAS gene are often found in urinary bladder cancer and leads to continuous transmission of signals stimulating cancer cell growth and proliferation. The T81C polymorphism of H-RAS gene is a SNP, which, although does not seem to impair p21ras protein structure and function, may contribute to the development of bladder cancer. Objectives The aim of our study was to characterize the prevalence and clinical significance of T81C polymorphism in patients with diagnosed bladder cancer. Materials and methods 132 patients with diagnosed urinary bladder cancer were included in this study. The control group consisted of 106 healthy individuals. The experimental material was DNA, isolated from tumor tissue and peripheral blood lymphocytes. T81C polymorphism was detected using the MSSCP method and DNA sequencing. Results In the examined DNA samples, frequent polymorphic variations were found in codon 27 of H-RAS gene. In order to assess the clinical relevance of the polymorphism, the results were compared with those for the control group. The homozygous CC variant occurred more frequently in bladder cancer patients than in healthy individuals. Conclusions DNA polymorphisms start to play an important role in evaluation of disease risk and progression. The occurrence of multiple variants of the same gene may contribute to differences in reactions to specific medications and sensitivity to carcinogens or DNA repair capacity. Our study demonstrated T81C polymorphism of H-RAS gene to have seemingly been associated with an increased risk of bladder cancer development.


Central European Journal of Urology 1\/2010 | 2011

detection of loss of heterozygosity in patients with urinary bladder carcinoma: neoplastic tissue vs. urine sediment cells

M. Traczyk; Edyta Borkowska; A. Jedrzejczyk; M. Pietrusinski; Marek Rożniecki; Piotr Marks; Bogdan Kałużewski

Introduction Loss of heterozygosity (LOH) is frequently observed in urinary bladder neoplasms. In the reported study, an attempt was undertaken to determine the loss of heterozygosity of TP53(17p13), RB1(13q14), CDKN2A/ ARF(9p21) genes in DNA from neoplastic tissue, collected from patients with diagnosed urinary bladder carcinoma, and to compare the results with those of LOH evaluation in DNA isolated from urine sediment cells. Material and methods After isolation, DNA was amplified (PCR) by means of primers to five polymorphic microsatellite markers, the products being then separated on agarose gel. Following the method, a total of 125 DNA samples were obtained, isolated from neoplastic cells, together with 125 corresponding DNA samples, isolated from urine sediment cells. Results The loss of heterozygosity in at least one marker was identified in 39.2%. (49/125) of DNA from studied tumors and in 34.3% (43/125) of DNA samples, isolated from urine sediment cells. An analysis of LOH from the DNA, isolated from urine sediment cells, allowed for identification of 81.8% of neoplastic tumors with 99.7% specificity. Conclusions Our observations have demonstrated that LOH within 13q14, 17p13 and 9p21 loci is more often observed in clinically more advanced neoplasms. LOH in 17p13 locus is more frequently found in tumors at high histopathological stage, while in low-stage neoplasms, LOH is most often observed on chromosome 9. The high sensitivity (81.8%) and specificity (99.7%) of LOH studies in DNA, isolated from urine sediment cells, make this technique an advantageous, non-invasive method for detection and screening of bladder cancer.


Central European Journal of Urology 1\/2010 | 2011

Significance of CDKN2A gene A148T variant in patients with bladder cancer.

Edyta Borkowska; A. Jedrzejczyk; Andrzej Kruk; M. Pietrusinski; M. Traczyk; Marek Rożniecki; Bogdan Kałużewski

Objectives The A148T polymorphism of CDKN2A gene is observed in various neoplasms with the incidence rate of 3-35%, however, rather little is known either about the frequency of its occurrence or of its significance in urinary bladder carcinoma. Materials and methods DNA was isolated from blood of 156 patients with urinary bladder carcinoma (130 men). In histopathology, 84 cases were classified as G1, 42 as G2, and 30 as G3. The clinical stage was in 81 cases estimated at Ta and in 75 cases at T1-T4. A148T polymorphism was detected by the MSSCP technique and by sequencing. Results A148T polymorphism was identified in 9/156 urinary bladder carcinoma cases (only in men). The obtained results were compared with the polymorphism incidence for the Polish population, estimated by Debniak et al. The occurrence in the group of the bladder cancer patients turned out higher (5.77%) from that in the control group (2.89%) (G test, table 2×2: NBLADDER CANCER = 156, NCONTROL = 1210, G = 4.298, p <0.05). Conclusion Summing up and taking into account the analysis of clinical parameters and the age of the disease occurrence, the A148T polymorphism of CDKN2A gene was identified in the study group only in men, in whom the disease was diagnosed above the age of 60, while the diagnosed neoplasms were in the majority of cases characterized by higher clinical stages and higher grades of malignancy. This has been the first study that attempted to show a potential association between A148T alterations and an increased risk for bladder cancer development.


Hereditary Cancer in Clinical Practice | 2012

Artificial neural network in predicting bladder cancer recurrence

Edyta Borkowska; Maria Constantinou; A. Jedrzejczyk; M. Traczyk; Monika Banaszkiewicz; M. Pietrusinski; Piotr Marks; Marek Rożniecki; Andrzej Kruk; Bogdan Kałużewski

The more we learn about human genetics and human variation, the more apparent it becomes that our individual make-up has a noticeble impact on the effectiveness of medications. Urinary bladder cancer is the sixth leading cause of mortality due to malignant neoplasm among Polish man in Lodz region. Many genetic and epigenetic alterations have been identified that contribute directly to the development of bladder tumors. The aim of the project was the creation of the individual risk calculator of bladder cancer recurrence using available clinical data and the results of the long term genetic research.


Hereditary Cancer in Clinical Practice | 2011

The A148T variant of CDKN2A gene in bladder cancer

Edyta Borkowska; A. Jedrzejczyk; Andrzej Kruk; M. Traczyk; M. Pietrusinski; Piotr Marks; Bogdan Kałużewski

Results We found common polymorphic variants reported in the literature at codon 148 in exon 2 (Arg148Thr) and at nucleotides 500 and 540 in the 3’untranslated region which were not considered to be functional variants. We compared the obtained frequencies for the particular CDKN2A variants with the control group for the Polish population examined by Debniak and colleagues (Cancer Research 2005) and we found a significant difference in A148T polymorphism occurrence in the group of the bladder cancer patients (G test, table 2 ×2: NBLADDER CANCER =80, NCONTROL=1210, G=10.214, p g, Nt540c>t polymorphisms recorded in the group of the bladder cancer patients in our study is not different from those recorded in the control group. Conclusion The A148T variant of CDKN2A gene seems to be associated with an increased risk of bladder cancer development.


Central European Journal of Urology 1\/2010 | 2010

the significance of p53 gene codons 72 and 213 polymorphisms in urinary bladder cancer in Central poland

Edyta Borkowska; M. Traczyk; M. Pietrusinski; Józef Matych; Bogdan Kałużewski


European Urology Supplements | 2014

995 Kohonen's self-organizing map for molecular subtyping in bladder cancer

Edyta Borkowska; A. Kruk; A. Jedrzejczyk; M. Rozniecki; Z. Jablonowski; M. Traczyk; M. Constantinou; M. Banaszkiewicz; M. Pietrusinski; M. Sosnowski; Freddie C. Hamdy; S. Peter; James Catto; Bogdan Kałużewski


European Urology Supplements | 2013

C105 Molecular subtyping of bladder cancer using Kohonen self-organizing maps

Edyta Borkowska; A. Kruk; A. Jedrzejczyk; M. Rozniecki; Z. Jablonowski; M. Traczyk; M. Constantinou; M. Banaszkiewicz; M. Pietrusinski; M. Sosnowski; Freddie C. Hamdy; S. Peter; James Catto; Bogdan Kałużewski


European Urology Supplements | 2014

C207: Detection of bladder cancer in urine by a methylation panel of selected tumour suppressor genes

M. Pietrusinski; Edyta Borkowska; Ł. Kępczyński; M. Traczyk; A. Jedrzejczyk; P. Marks; Z. Jablonowski; M. Sosnowski; Bogdan Kałużewski; M. Borowiec

Collaboration


Dive into the M. Traczyk's collaboration.

Top Co-Authors

Avatar

Bogdan Kałużewski

Medical University of Łódź

View shared research outputs
Top Co-Authors

Avatar

A. Jedrzejczyk

Medical University of Łódź

View shared research outputs
Top Co-Authors

Avatar

Edyta Borkowska

Medical University of Łódź

View shared research outputs
Top Co-Authors

Avatar

M. Pietrusinski

Medical University of Łódź

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Piotr Marks

Medical University of Łódź

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

James Catto

University of Sheffield

View shared research outputs
Top Co-Authors

Avatar

Marek Sosnowski

Medical University of Łódź

View shared research outputs
Top Co-Authors

Avatar

Maria Constantinou

Medical University of Łódź

View shared research outputs
Researchain Logo
Decentralizing Knowledge