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Dive into the research topics where Monika Kolanowska is active.

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Featured researches published by Monika Kolanowska.


The International Journal of Biochemistry & Cell Biology | 2014

Next generation sequencing reveals microRNA isoforms in liver cirrhosis and hepatocellular carcinoma

Anna Wojcicka; Michal Swierniak; Oskar Kornasiewicz; Wojciech Gierlikowski; Monika Maciag; Monika Kolanowska; Marta Kotlarek; Barbara Górnicka; Lukasz Koperski; Grzegorz Niewiński; Marek Krawczyk; Krystian Jażdżewski

Hepatocellular carcinoma (HCC) represents the major histological subtype of liver cancer. Tumorigenic changes in hepatic cells potentially result from aberrant expression of microRNAs (miRNAs). Individual microRNA gene may give rise to miRNAs of different length, named isomiRNAs that proved to be functionally relevant. Since microRNA length heterogeneity in hepatic tissue has not been described before, we employed next-generation sequencing to comprehensively analyze microRNA transcriptome in HCC tumors (n=24) and unaffected tissue adjacent to tumors (n=24), including samples with (n=15) and without cirrhosis (n=9). We detected 374 microRNAs expressed in liver, including miR-122-5p that constituted over 39% of the hepatic miRnome. Among the liver expressed miRs, the levels of 64 significantly differed between tumor and control samples (FDR<0.05, fold change>2). Top deregulated miRNAs included miR-1269a (T/N=22.95), miR-3144-3p (T/N=5.24), miR-183-5p (T/N=4.63), miR-10b-5p (T/N=3.87), miR-490-3p (T/N=0.13), miR-199a-5p (T/N=0.17), miR-199a-3p/miR-199b-3p (T/N=0.19), miR-214-5p (T/N=0.20) and miR-214-3p (T/N=0.21). Almost all miRNA genes produced several mature molecules differing in length (isomiRNAs). The reference sequence was not the most prevalent in 38.6% and completely absent in 10.5% of isomiRNAs. Over 26.1% of miRNAs produced isoforms carrying≥2 alternative seed regions, of which 35.5% constituted novel, previously unknown seeds. This fact sheds new light on the percentage of the human genome regulated by microRNAs and their variants. Among the most deregulated miRNAs, miR-199a-3p/miR-199b-3p (T/N fold change=0.18, FDR=0.005) was expressed in 9 isoforms with 3 different seeds, concertedly leading to upregulation of TGF-beta signaling pathway (OR=1.99; p=0.004). In conclusion, the study reveals the comprehensive miRNome of hepatic tissue and provides new tools for investigation of microRNA-dependent pathways in cirrhotic liver and hepatocellular carcinoma. This article is part of a Directed Issue entitled: Rare Cancers.


Oncotarget | 2017

Next-generation sequencing reveals microRNA markers of adrenocortical tumors malignancy

Łukasz Koperski; Marta Kotlarek; Michał Świerniak; Monika Kolanowska; Anna Kubiak; Barbara Górnicka; Krystian Jażdżewski; Anna Wojcicka

Background Adrenocortical carcinoma is a rare finding among common adrenocortical tumors, but it is highly aggressive and requires early detection and treatment. Still, the differential diagnosis between benign and malignant lesions is difficult even for experienced pathologists and there is a significant need for novel diagnostic methods. In this study we aimed to reveal a complete set of microRNAs expressed in the adrenal gland and to identify easily detectable, stable and objective biomarkers of adrenocortical malignancy. Methods We employed next-generation sequencing to analyze microRNA profiles in a unique set of 51 samples, assigned to either a learning dataset including 7 adrenocortical carcinomas (ACCs), 8 adrenocortical adenomas (AAs) and 8 control samples (NAs), or a validation dataset including 8 ACCs, 10 AAs and 10 NAs. The results were validated in real-time Q-PCR. Results We detected 411 miRNAs expressed in 1763 length isoforms in the examined samples. Fifteen miRNAs differentiate between malignant (ACC) and non-malignant (AA + NA) tissue in the test set of independent samples. Expression levels of 6 microRNAs, miR-503-5p, miR-483-3p, miR-450a-5p, miR-210, miR-483-5p, miR-421, predict sample status (malignancy/non-malignancy) with at least 95% accuracy in both datasets. The best single-gene malignancy marker, miR-483-3p, has been validated by real-time RT PCR. Conclusions As a result of the study we propose clinically valid and easily detectable biomarkers of adrenocortical malignancy that may significantly facilitate morphological examination. Since microRNAs can be detected in blood, the study brings tools for development of non-invasive diagnostics of adrenocortical carcinomas.


European Journal of Endocrinology | 2016

MECHANISMS IN ENDOCRINOLOGY: MicroRNA in diagnostics and therapy of thyroid cancer

Anna Wojcicka; Monika Kolanowska; Krystian Jażdżewski

MicroRNAs, short non-coding regulators of the gene expression, are subjects of numerous investigations assessing their potential use in the diagnostics and management of human diseases. In this review, we focus on studies that analyze the utility of microRNAs as novel diagnostic and therapeutic tools in follicular cell-derived thyroid carcinomas. This very interesting and promising field brings new insight into future strategies for personalized medicine.


Gene | 2018

Adiponectin gene variants and decreased adiponectin plasma levels are associated with the risk of myocardial infarction in young age

Michał Ambroziak; Monika Kolanowska; Zbigniew Bartoszewicz; Andrzej Budaj

The aim of the study was to investigate the role of adiponectin and 5 variants of its gene in the risk of premature myocardial infarction (MI). The studied group (MI<50) consisted of 158 young patients (125 men) aged <50 with MI. The control groups consisted of 155 healthy people (97 men), aged <50 and 202 patients (130 men) aged ≥50 with MI (MI≥50). There were statistically significant differences between MI<50 patients and healthy control group in the prevalence of rs17300539:G>A (AA genotype: 19.3% vs. 0%, p<0.0001) and rs72563731:C>T variants (CC genotype: 81.5% vs. 15.9%, p<0.0001) and between MI<50 and MI≥50 patients in variants: rs17300539:G>A (AA genotype: 19.3% vs. 0.5%, p<0.0001), rs72563731:C>T (CC genotype: 82.1% vs. 60.8%, p<0.0001), rs1501299:G>T (TT genotype: 6.8% vs. 14.9%, p=0.019) and rs822387:T>C (genotype CC: 1.5% vs. 0%, p=0.017). Multivariate analysis showed a significantly higher risk of MI in young CC carriers of rs72563731:C>T and in young AA carriers of rs17300539:G>A. Total and HMW adiponectin plasma levels have been significantly lower in MI<50 patients in comparison to MI≥50 patients (p=0.001 and p=0.001, respectively) and to healthy subjects (p=0.009 and p=0.01, respectively). Our study indicates the possible role of adiponectin and its genetic variants in MI in young age.


Scientific Reports | 2017

Functional analysis of a novel, thyroglobulin-embedded microRNA gene deregulated in papillary thyroid carcinoma.

Monika Kolanowska; Anna Wojcicka; Anna Kubiak; Michał Świerniak; Marta Kotlarek; Monika Maciąg; Paweł Gaj; Łukasz Koperski; Barbara Górnicka; Krystian Jażdżewski

MicroRNAs, non-coding regulators of gene expression, are known culprits of thyroid cancer. Using next-generation sequencing, we identified a novel microRNA gene, encoded within an important thyroid regulator – thyroglobulin, and analyzed its functionality in the thyroid gland. In vitro and in silico analyses proved that the novel miR-TG is processed from the precursor, and co-expressed with thyroglobulin. Both genes are specific for thyroid tissue and downregulated in papillary thyroid carcinoma by 44% (p = 0.04) and 48% (p = 0.001), respectively. Putative target genes for miR-TG were identified using in silico tools, which pinpointed MAP4K4, an oncogene upregulated in thyroid cancer. Analysis of transcriptome by RNA-seq revealed that overexpression of miR-TG in PTC-derived cell line led to downregulation of several genes, including MAP4K4 (fold change 0,82; p = 0.036). The finding was confirmed by SQ-PCR (fold change 071; p = 0.004). Direct interaction between miR-TG and MAP4K4 was confirmed in the luciferase assay (p = 0.0006). Functional studies showed increase proliferation in K1 cell line transfected with miR-TG. We propose that in normal thyroid miR-TG plays a fine-tuning effect on the maintenance of MAPK pathway, inhibiting the expression of miR’s target MAP4K4. This regulation is disturbed in cancer due to downregulation of the novel, thyroglobulin-embedded microRNA, characterized in this study.


Archive | 2018

MicroRNA Analysis Using Next-Generation Sequencing

Monika Kolanowska; Anna Kubiak; Krystian Jażdżewski; Anna Wojcicka

Next-generation sequencing (NGS) enables the analysis of both microRNA expression and sequence, allowing for elucidation of a comprehensive landscape of miRNAs in a given tissue and sample type. NGS analysis requires high-quality RNA extraction and preparation of microRNA libraries. In this chapter, we describe the methods used for RNA extraction from tissue specimens, serum, cytological slides, and formalin-fixed paraffin-embedded samples. Although the described library preparation and sequencing approaches are based on Illumina NextSeq 500 sequencing technology, the presented principles shall be compatible with other commercially available sequencing platforms.


Molecular Neurobiology | 2018

Bezafibrate Upregulates Mitochondrial Biogenesis and Influence Neural Differentiation of Human-Induced Pluripotent Stem Cells.

Justyna Augustyniak; Jacek Lenart; Paweł Gaj; Monika Kolanowska; Krystian Jażdżewski; Piotr P. Stepien; Leonora Buzanska

Bezafibrate (BZ) regulates mitochondrial biogenesis by activation of PPAR’s receptors and enhancing the level of PGC-1α coactivator. In this report, we investigated the effect of BZ on the expression of genes (1) that are linked to different pathways involved in mitochondrial biogenesis, e.g., regulated by PPAR’s receptors or PGC-1α coactivator, and (2) involved in neuronal or astroglial fate, during neural differentiation of hiPSC. The tested cell populations included hiPSC-derived neural stem cells (NSC), early neural progenitors (eNP), and neural progenitors (NP). RNA-seq analysis showed the expression of PPARA, PPARD receptors and excluded PPARG in all tested populations. The expression of PPARGC1A encoding PGC-1α was dependent on the stage of differentiation: NSC, eNP, and NP differed significantly as compared to hiPSC. In addition, BZ-evoked upregulation of PPARGC1A, GFAP, S100B, and DCX genes coexist with downregulation of MAP2 gene only at the eNP stage of differentiation. In the second task, we investigated the cell sensitivity and mitochondrial biogenesis upon BZ treatment. BZ influenced the cell viability, ROS level, mitochondrial membrane potential, and total cell number in concentration- and stage of differentiation-dependent manner. Induction of mitochondrial biogenesis evoked by BZ determined by the changes in the level of SDHA and COX-1 protein, and mtDNA copy number, as well as the expression of NRF1, PPARGC1A, and TFAM genes, was detected only at NP stage for all tested markers. Thus, developmental stage-specific sensitivity to BZ of neurally differentiating hiPSC can be linked to mitochondrial biogenesis, while fate commitment decisions to PGC-1α (encoded by PPARGC1A) pathway.


International Journal of Molecular Sciences | 2018

The rs2910164 Genetic Variant of miR-146a-3p Is Associated with Increased Overall Mortality in Patients with Follicular Variant Papillary Thyroid Carcinoma

Marta Kotlarek; Anna Kubiak; Malgorzata Czetwertynska; Michał Świerniak; Wojciech Gierlikowski; Monika Kolanowska; Elwira Bakuła-Zalewska; Sissy M. Jhiang; Krystian Jażdżewski; Anna Wojcicka

Aberrant expression of the sodium-iodide symporter (NIS) and the resistance to post-operative radioactive iodide treatment is a crucial cause of higher mortality of some thyroid cancer patients. In this study, we analyzed the impact of miR-146a on the expression and function of NIS and on the overall survival of thyroid cancer patients. The study included 2441 patients (2163 women; 278 men); including 359 cases with follicular variant of papillary thyroid carcinoma (fvPTC). miR:NIS interactions were analyzed in cell lines using in vivo binding and inhibition assays and radioactive iodine uptake assays. Tumor/blood DNA was used for rs2910164 genotyping. Overall survival was assessed retrospectively. In the results, we showed that miR-146a-3p directly binds to and inhibits NIS. Inhibition of miR-146a-3p restores the expression and function of NIS, increasing radioactive iodine uptake. Rs2910164 functional variant within miR-146a-3p is associated with increased overall mortality among fvPTC female patients. The deaths per 1000 person-years were 29.7 in CC carriers vs. 5.08 in GG/GC-carriers (HR = 6.21, p = 0.006). Higher mortality of CC vs. GG/GC carriers was also observed in patients with lower clinical stage (HR = 22.72, p < 0.001), smaller tumor size (pT1/pT2) (HR = 25.05, p < 0.001), lack of extrathyroidal invasion (HR = 9.03, p = 0.02), lack of nodular invasion (HR = 7.84, p = 0.002), lack of metastases (HR = 6.5, p = 0.005) and older (age at diagnosis >50 years) (HR = 7.8, p = 0.002). MiR-146a-3p underwent somatic mutations in 16.1% of analyzed specimens, mainly towards the deleterious C allele. In this report we propose a novel molecular marker of the clinical outcome of fvPTC patients. Rs2910164 increases the overall mortality with inhibition of NIS and disruption of radioiodine uptake as a possible mechanism.


Toxicology in Vitro | 2017

Sensitivity of hiPSC-derived neural stem cells (NSC) to Pyrroloquinoline quinone depends on their developmental stage

Justyna Augustyniak; J. Lenart; Marzena Zychowicz; G. Lipka; Paweł Gaj; Monika Kolanowska; Piotr P. Stepien; Leonora Buzanska


Archive | 2014

Use of microrna markers for diagnosis of liver lesions

Krystian Jazdzewski; Kinga Dymecka; Anna Wojcicka; Anna Kubiak; Wojciech Gierlikowski; Monika Maciag; Monika Kolanowska; Agnieszka Czajka; Marta Kotlarek; Michal Swierniak

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Anna Wojcicka

Medical University of Warsaw

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Marta Kotlarek

Medical University of Warsaw

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Michal Swierniak

Medical University of Warsaw

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Monika Maciag

Medical University of Warsaw

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Barbara Górnicka

Medical University of Warsaw

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Kinga Dymecka

Medical University of Warsaw

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