Now showing 1 - 14 of 14
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The Effects of Peruvian maca (Lepidium meyenii) Root Extract on In Vitro Cultured Porcine Fibroblasts and Adipocytes

2025, Loba-Pasternak, Weronika, Aksoy, Mehmet Onur, Stuper-Szablewska, Kinga, Szwajkowska-Michałek, Lidia, Kołodziejski, Paweł Antoni, Szczerbal, Izabela, Nowacka-Woszuk, Joanna

Peruvian maca (Lepidium meyenii) is a plant known for its nutritional and medicinal properties whose use as a supplement in animal diets has attracted much interest. We studied the effects of powdered maca root extract on the growth potential of in vitro cultured porcine cells prior to its use as an additive in animal nutrition. Fibroblast cell viability (MTT), cell proliferation (BrdU), and apoptosis level (TUNEL) were measured for a range of extract doses (0, 0.5, 1.0, 2.0, 3.0, 4.0, 5.0, 7.0, and 10 mg/mL). Transcript levels of CCND1, MCM2, and PCNA genes as molecular markers of cell proliferation were also determined. Next, the effects of maca extract at 2 and 5 mg/mL on in vitro induced adipogenesis were evaluated over eight days of differentiation. The transcript levels of three adipocyte marker genes (CEBPA, PPARG, and FABPB4) were measured at days 0, 4, and 8 of adipose differentiation, and lipid droplet accumulation (BODIPY staining) was also noted. No cytotoxic effect was detected on fibroblast cell viability, and the inhibitory concentration (IC50) value was determined to be IC50 > 10 mg/mL. Doses of maca extract above 3 mg/mL decreased cell proliferation. The transcript level decreased in concentrations above 5 for the MCM2 and PCNA genes. For the CCND1 gene, the transcript level decreased when the greatest maca dose was used. In the in vitro adipogenesis experiment, it was found that the rate of lipid droplet formation increased on day 4 of differentiation for both doses, while decreased lipid droplet formation was observed on day 8 for 5 mg/mL of maca extract. Significant changes were seen in the mRNA level for CEBPA and PPARG on days 4 and 8, while the transcript of FABP4 increased only on day 8 at 2 mg/mL dose. It can be concluded that the addition of Peruvian maca in small doses (<3 mg/mL) has no negative effect on porcine fibroblast growth or proliferation, while 2 mg/mL of maca extract enhances adipocyte differentiation.

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Droplet digital PCR quantification of selected microRNAs in raw mastitic cow’s milk from the west of Poland

2023, Smulski, Sebastian, Pszczoła, Marcin Jerzy, Stachowiak, Monika, Bilińska, Adrianna, Szczerbal, Izabela

Abstract Introduction MicroRNAs (miRNAs), a class of noncoding small RNAs, have been recognised as potential biomarkers of mammary gland conditions, including bovine mastitis diagnosis. The aim of this study was to quantify selected miRNAs in the milk of mastitic cows. Material and Methods Milk samples (n = 90) were collected from healthy and mastitic dairy cows originating from local dairy cattle farms located in the west of Poland. MicroRNAs of the miR-21a, miR-92a, miR-146a and miR-383 species were quantified using the highly sensitive droplet digital PCR method. Direct measurement of somatic cell count (SCC) was performed using a cell counter. Cows were divided into three groups: those with an SCC below 200,000/mL were designated Low (n = 25), those with an SCC between 200,000 and 999,999 were Medium (n = 34), and those with an SCC of 1,000,000 or higher were High (n = 31). Microbiological analyses were performed using standard culture testing. Results The level of miR-383 was very low and this miRNA was excluded from analysis. The miR-92a was used to normalise miR-21a and miR-146a expression levels. The obtained results of expression of miR-21a and miR-146a correlated with somatic cell number (R = 0.53 and 0.79, respectively). Conclusion These results show that ddPCR is a useful method for quantifying miRNAs in raw cow milk. It seems that miR-146a is a promising marker for bovine mastitis, although further studies are needed to select a panel of miRNAs that can be used in mastitis monitoring in Poland.

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X monosomy in a British shorthair cat with skeletal abnormalities and behavioral problems

2023, Szczerbal, Izabela, Nowacka-Woszuk, Joanna, Rozynek, Jedrzej, Stachowiak, Monika, Świtoński, Marek

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From cytogenetics to cytogenomics: a new era in the diagnosis of chromosomal abnormalities in domestic animals

2025, Świtoński, Marek, Szczerbal, Izabela, Nowacka-Woszuk, Joanna

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SOX9 gene variants in 27 French Bulldogs with disorder of sex development (XX, SRY-negative): identification of first case of skeletal abnormalities associated with SOX9 triplication

2025, Nowacka-Woszuk, Joanna, Albarella, Sara, Slaska, Brygida, Rozanska, Dorota, Nizianski, Wojciech, Dzimira, Stanisław, Sowińska, Natalia, Mikolajczak, Marta, Nowak, Tomasz, Sobczak, Marta, Sawicz. Zuzanna, D'Anza, Emanuele, Szczerbal, Izabela, Świtoński, Marek

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Elevated serum concentration of anti‐Mullerian hormone and its association with SNP variants in the AMH gene in a tortoiseshell tomcat with a disorder of sex development (38,XX; SRY-negative)

2025, Nowacka-Woszuk, Joanna, Szczerbal, Izabela, Szabelska-Beręsewicz, Alicja, Zyprych-Walczak, Joanna Grażyna, Parma, P., Ropka‐Molik, K., Jankowska, A., Nowak, Tomasz, Okoniewski, M., Stachowiak, Monika, Rogalska-Niżnik, Natalia, Świtoński, Marek

AbstractTesticular disorders of sex development (DSD) in cats with XX sex chromosomes and the absence of the SRY gene are rare congenital abnormalities. A Maine Coon tomcat with a normal penis, gonads in the scrotum, low serum testosterone concentration, and an elevated level of anti‐Müllerian hormone (AMH) was subjected to genetic analyses due to an unusual tortoiseshell coat color for males. Primary studies revealed the presence of XX sex chromosomes, the lack of SRY and the presence of two copies of the candidate SOX9. The DSD tomcat and its parents were analyzed using whole genome sequencing. Candidate SNPs in AMH, ORC1, DOCK8, PRKAR1A, and TMEM186 genes, as well as a known intronic 5‐kb deletion in X‐linked ARHGAP36 gene, which is responsible for orange coat, were identified. Potentially pathogenic homozygous genotypes were observed in all candidate genes; however, only in AMH and ORC1 were these genotypes rare in a control cohort. Further studies were focused on two SNPs located in the 5′‐and 3′‐untranslated regions (UTRs) of AMH. It has been experimentally demonstrated that only a short AMH transcript is present in feline testes. In silico analysis revealed that the SNP located in the 3′UTR of AMH occurs within a sequence that partially matches the canonical binding site for human miR‐5571‐5p. This microRNA is expressed in mammalian testes, which we confirmed in feline testicular tissue. We concluded that SNP in the 3′UTR of AMH is associated with elevated expression of the encoded hormone; however, it is not the cause of the testicular DSD phenotype in the studied Maine Coon tomcat.

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Świnia - ważny gatunek modelowy w badaniach chorób genetycznych człowieka

2024, Świtoński, Marek, Szczerbal, Izabela, Nowacka-Woszuk, Joanna, Stachowiak, Monika, Rogalska-Niżnik, Natalia

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Deciphering the Role of the SREBF1 Gene in the Transcriptional Regulation of Porcine Adipogenesis Using CRISPR/Cas9 Editing

2024, Aksoy, Mehmet Onur, Bilinska, Adrianna, Stachowiak, Monika, Flisikowska, Tatiana, Szczerbal, Izabela

Sterol regulatory element-binding protein 1 (SREBP1) is an important transcription factor that controls lipid metabolism and adipogenesis. Two isoforms, SREBP1a and SREBP1c, are generated by alternative splicing of the first exon of the SREBF1 gene. The porcine SREBF1 gene has mainly been studied for its role in lipid metabolism in adipose tissues, but little is known about its involvement, and the role of its two isoforms, in adipogenesis. The aim of the present study was to introduce a deletion in the 5′-regulatory region of the SREBF1c gene, considered crucial for adipogenesis, using the Clustered Regularly Interspaced Short Palindromic Repeats/CRISPR-associated protein 9 (CRISPR/Cas9) method. This approach allows for the evaluation of how inhibiting SREBF1c transcription affects the expression of other genes essential for adipocyte differentiation, particularly PPARG, CEBPA, CEBPB, CEBPD, GATA2, and FABP4. It was observed that disrupting the SREBF1c isoform had no effect on the GATA2 gene but did result in a decrease in the expression of the CEBPA and CEBPD genes, an increase in the expression of CEBPB, and an inhibition in the expression of the PPARG and FABP4 genes. These changes in gene expression blocked adipogenesis, as could be seen by the failure of lipid droplets to accumulate. Our results provide evidence highlighting the pivotal role of the SREBP1c isoform in the regulation of porcine adipogenesis.

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Lack of causative mutation in the AMH and AMHR2 genes in a cat (38,XY) with persistent Mullerian duct syndrome (PMDS)

2024, Rozynek, Jedrzej, Nowacka-Woszuk, Joanna, Stachowiak, Monika, Sowińska, Natalia, Łukomska, Anna, Gruss, Michał, Świtoński, Marek, Szczerbal, Izabela

AbstractA 1‐year‐old European shorthair male cat with a normally developed penis was subjected to genetic, endocrinological and histological studies due to unilateral cryptorchidism. The blood testosterone level was typical for males, while the level of anti‐Mullerian hormone (AMH) was very low. Surgical removal of internal reproductive organs was followed by a histological study, which revealed inactive testicles with neoplastic changes and derivatives of Mullerian ducts. Cytogenetic analysis showed a normal XY sex chromosome complement and molecular analysis confirmed the presence of Y‐linked genes (SRY and ZFY). Although the level of AMH was low, two normal copies of the AMH gene were found using droplet digital PCR (ddPCR). Analysis of the coding sequences of two candidate genes (AMH and AMHR2) for persistent Mullerian duct syndrome (PMDS) in the affected cat and in control male cats (n = 24) was performed using the Sanger sequencing method. In the affected cat, homozygosity was found for three novel missense variants in Exon 1 (one SNP) and Exon 5 (two SNPs) of AMH, but the same homozygous genotypes were also observed in one and two control cats, respectively, whose sex development was not examined. Three known synonymous variants with homozygous status were found in AMHR2. We conclude that the DNA variants identified in AMH and AMHR2 are not responsible for PMDS in the affected cat.

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A case of non-mosaic X trisomy (65,XXX) in a Thoroughbred mare confirmed by cytogenetic and molecular analysis

2024, Cieślak, Jakub, Maćkowski, Mariusz, Skrzetuska, Weronika, Fidos-Tama, Ewa, Siwinska, Natalia, Szczerbal, Izabela

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Testicular Disorder of Sex Development in a Mare With a Low Incidence of SRY‐Positive Cell Line in the Gonads

2025, Nowacka-Woszuk, Joanna, Niemiec, Anna, Dzimira, Stanislaw, Racheniuk, Monika, Kaznowski, Arkadiusz, Maćkowski, Mariusz, Świtoński, Marek, Szczerbal, Izabela

ABSTRACTAn adult mare with ambiguous external genitalia, observed at a slaughterhouse, was subjected to detailed examination. The mare exhibited fused labia and an enlarged clitoris located at the ventral commissure of the vulva. Anatomical and histopathological studies revealed the presence of two testicles, vas deferens, fallopian tubes, a small uterus with blindly ending horns and a normally developed cervix. Cytogenetic analysis, using fluorescent in situ hybridisation (FISH) of in vitro cultured lymphocytes, showed a female karyotype—64,XX. Molecular detection of X‐ and Y‐linked genes (SRY and ZFX/ZFY) in blood cells confirmed the presence of X‐linked genes only. In contrast, in hair follicles and gonadal tissue, the presence of genes originating from the Y chromosome was also detected. The use of digital droplet PCR (ddPCR) revealed the presence of a SRY‐positive cell line; however, at a very low level (< 5%). Analysis of polymorphic short tandem repeats (STRs), recommended for parentage testing, did not detect chimerism, which would be indicated by the presence of three or four variants at some STR loci. In conclusion, the studied case was classified as a sex chromosome disorder of sex development (DSD) due to gonadal XX/XY mosaicism. To the best of our knowledge, this is the first reported case of such an abnormality in a DSD horse.

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Research Project

Zastosowanie technologii CRISPR-Cas9 do wyjaśnienia czy zmiany architektury jądra interfazowego w trakcie adipogenezy są przyczyną czy skutkiem aktywności transkrypcyjnej genów

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Droplet Digital PCR Quantification of Selected Intracellular and Extracellular microRNAs Reveals Changes in Their Expression Pattern during Porcine In Vitro Adipogenesis

2023, Bilinska, Adrianna, Pszczoła, Marcin Jerzy, Stachowiak, Monika, Długosz (zd. Stachecka), Joanna Magdalena, Garbacz, Franciszek, Aksoy, Mehmet Onur, Szczerbal, Izabela

Extracellular miRNAs have attracted considerable interest because of their role in intercellular communication, as well as because of their potential use as diagnostic and prognostic biomarkers for many diseases. It has been shown that miRNAs secreted by adipose tissue can contribute to the pathophysiology of obesity. Detailed knowledge of the expression of intracellular and extracellular microRNAs in adipocytes is thus urgently required. The system of in vitro differentiation of mesenchymal stem cells (MSCs) into adipocytes offers a good model for such an analysis. The aim of this study was to quantify eight intracellular and extracellular miRNAs (miR-21a, miR-26b, miR-30a, miR-92a, miR-146a, miR-148a, miR-199, and miR-383a) during porcine in vitro adipogenesis using droplet digital PCR (ddPCR), a highly sensitive method. It was found that only some miRNAs associated with the inflammatory process (miR-21a, miR-92a) were highly expressed in differentiated adipocytes and were also secreted by cells. All miRNAs associated with adipocyte differentiation were highly abundant in both the studied cells and in the cell culture medium. Those miRNAs showed a characteristic expression profile with upregulation during differentiation.

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Cleft Lip and Palate in Four Full-Sib Puppies from a Single Litter of Staffordshire Bull Terrier Dogs: An Anatomical and Genetic Study

2023, Ruszkowski, Jakub Jędrzej, Nowacka-Woszuk, Joanna, Nowak, Tomasz, Rozynek, Jędrzej, Serwańska-Leja, Katarzyna, Gogulski, Maciej, Kołodziejski, Paweł Antoni, Świtoński, Marek, Zdun, Maciej, Szczerbal, Izabela

Cleft lip and palate (CLP) is a well-known congenital defect in dogs, characterized by abnormal communication between the oral and nasal cavities. Its incidence rate is high and affects all dog breeds. The etiology of CLP is thought to be multifactorial, caused by both genetic and environmental factors. In this study, four puppies out of seven from a single litter of Staffordshire Bull Terrier dogs with craniofacial abnormalities were anatomically and genetically examined. Classical anatomical preparation, dyed-latex-injection of the arterial vessels, and cone-beam computed tomography were used. The puppies showed variations in their observable abnormalities: three of them had a complete cleft of the palate on both sides, while one puppy had a cleft on the right side only. Cytogenetic analysis showed a normal diploid chromosome number (2n = 78,XX or 78,XY) in the studied animals. Known genomic variants of CLP were examined in the ADAMTS20, DLX6, and MYH3 genes, but no mutations were identified. Further studies are needed to identify the breed-specific genetic variants associated with canine CLP.