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Bosakova, V.

Publications and source records attributed to Bosakova, V..

3 recordsLinked to original sources

Serotonin attenuates tumor-necrosis-factor-alpha-induced intestinal inflammation by interacting with human mucosal tissue

The intestine houses the largest reservoir of immune cells and is serviced by the largest and most complex peripheral nervous system in the human body. The gut-brain axis orchestrates bidirectional communication between the central and enteric nervous systems, playing a pivotal role in regulating overall body function and intestinal homeostasis. Using a human 3D in vitro model, we investigated the effect of serotonin, a neuromodulator produced in the gut, on immune cell and intestinal tissue interactions. Our findings revealed that serotonin attenuates the tumor-necrosis-factor-alpha-induced pro-inflammatory response, mostly by affecting the expression of chemokines. Serotonin was found to impact tissue-migrating monocytes phenotype and distribution, without direct contact with the cells, by remodeling the intestinal tissue. Collectively, using fully human 3D model of intestine, our results show for the first time that serotonin has a crucial role in communication among gut-brain axis components and regulates monocyte migration and plasticity, thereby contributing to gut homeostasis and the progression of intestinal inflammation. In vivo studies focused on role of neuromodulators in gut homeostasis and inflammation have shown controversial results, highlighting importance of development of human experimental models. Moreover, our results emphasize importance of human health research in human-cell-based models and suggests serotonin signaling pathway as new potential therapeutic target for inflammatory bowel disease patients.

immunology↗

Intercellular interaction between FAP fibroblasts and CD150 inflammatory monocytes mediates fibro-stenosis in Crohn's disease

Crohns disease (CD) is marked by recurring intestinal inflammation and tissue injury, often resulting in fibro-stenosis and bowel obstruction, necessitating surgical intervention with high recurrence rates. To elucidate complex intercellular interactions leading to fibro-stenosis in CD, we analysed the transcriptome of cells isolated from the transmural ileum of CD patients, including a trio of lesions from each patient: non-affected, inflamed, and stenotic ileum samples, and compared them with samples from non-CD patients. Our computational analysis revealed that pro-fibrotic signals from a subset of monocyte-derived cells expressing CD150 induce a disease-specific fibroblast population, resulting in chronic inflammation and tissue fibrosis. The transcription factor TWIST1 was identified as a key modulator of fibroblast activation and extracellular matrix (ECM) production. Therapeutic inhibition of TWIST1 inhibits fibroblast activation, reducing ECM production and deposition. These findings suggest that the myeloid-stromal axis may offer a promising therapeutic target to prevent fibro-stenosis in CD.

immunology↗

TGF-β induces matrisome pathological alterations and EMT in patient-derived prostate cancer tumoroids

Extracellular matrix (ECM) tumorigenic alterations resulting in high matrix deposition and stiffening are hallmarks of adenocarcinomas and are collectively defined as desmoplasia. Here, we thoroughly analysed primary prostate cancer tissues obtained from numerous patients undergoing radical prostatectomy to highlight reproducible structural changes in the ECM leading to the loss of the glandular architecture. Starting from patient cells, we established prostate cancer tumoroids (PCTs) and demonstrated they require TGF-{beta} signalling pathway activity to preserve phenotypical and structural similarities with the tissue of origin. By modulating TGF-{beta} signalling pathway in PCTs, we unveiled its role in ECM accumulation and remodelling in prostate cancer. We also found that TGF-{beta}-induced ECM remodelling is responsible for the initiation of prostate cell epithelial-to-mesenchymal transition (EMT) and the acquisition of a migratory, invasive phenotype. Our findings highlight the cooperative role of TGF-{beta} signalling and ECM desmoplasia in prompting prostate cell EMT and promoting tumour progression and dissemination

cancer biology↗