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Biology subjects

Bortot, B.

Publications and source records attributed to Bortot, B..

3 recordsLinked to original sources

Single-particle analysis of small extracellular vesicles from the follicular fluid of women undergoing fertility treatments reveals distinct PD-L1+ populations

In some cell systems, small extracellular vesicles bearing PD-L1 (PD-L1+ sEVs) have been shown to be able to suppress T-cell immunity. We have herein investigated whether a distinct profile of PD-L1+ sEVs exists in human follicular fluid (FF). Single-particle interferometric reflectance imaging sensing combined with a single-particle antibody capture and immunofluorescence labelling were used to determine the expression and colocalization of CD63, CD81, CD9, and PD-L1 in sEVs derived from FF of women undergoing fertility treatments (n=10). In addition, the size distribution of sEVs was investigated via atomic force microscopy. Our data indicate that the bulk of tetraspanin-expressing EVs in human FF are less than 50 nm in size. Tetraspanins and PD-L1 exhibit distinct expression and colocalization profiles at sEV level across all cohort samples. A total of 42%, 46%, and 50% of all the particles captured by anti-CD63, anti-CD81, and anti-CD9 antibodies, respectively, were positive for CD81. PD-L1 was expressed at the highest level on CD9+ sEVs, with an average value of 5% within the cohort. The presence of distinct PD-L1+ sEV subpopulations suggests that they may play a role in regulating the immune response in the follicular microenvironment. Further research is needed to fully understand the functional significance of PD-L1+ sEVs in this context and their potential as biomarkers for predicting fertility outcomes. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=79 SRC="FIGDIR/small/628903v1_ufig1.gif" ALT="Figure 1"> View larger version (17K): org.highwire.dtl.DTLVardef@77e67dorg.highwire.dtl.DTLVardef@1bd1ce2org.highwire.dtl.DTLVardef@b376d8org.highwire.dtl.DTLVardef@3f6fad_HPS_FORMAT_FIGEXP M_FIG C_FIG

immunology↗

Platelet as key cells in endometriosis patients: insights from small extracellular vesicles in peritoneal fluid and endometriotic lesions analysis

Endometriosis is a chronic inflammatory condition characterized by the presence of endometrium-like tissue outside the uterus, primarily affecting pelvic organs and tissues. In this study, we explored platelet activation in endometriosis. We utilized the STRING database to analyze the functional interactions among proteins previously identified in small extracellular vesicles (EVs) isolated from the peritoneal fluid of endometriosis patients and controls. The bioinformatic analysis indicated enriched signaling pathways related to platelet activation, hemostasis, and neutrophil degranulation. Double immunohistochemistry analysis for CD61 and MPO revealed a significant presence of neutrophils and platelets infiltrating endometriotic lesions, suggesting potential cell-cell interactions. Subsequently, we isolated small EVs from the peritoneal fluid of women diagnosed with endometriosis and from women without endometriosis who underwent surgery for non-inflammatory benign diseases. We performed single-particle phenotyping analysis based on platelet biomarkers GPIIb/IIIa and PF4 using nanoflow cytometry, as well as single-particle morphological and nanomechanical characterization through atomic force microscopy. The study demonstrated that patients with endometriosis had a notably higher proportion of particles testing positive for platelet biomarkers compared to the total number of EVs. This finding implies a potential role for platelets in the pathogenesis of endometriosis. Further research is necessary to delve into the mechanisms underlying this phenomenon and its implications for disease progression.

cell biology↗

PARP-1, EpCAM, and FRα as potential targets for intraoperative detection and delineation of endometriosis: a quantitative tissue expression analysis

Endometriosis is a gynecological disease characterized by the presence of endometrial tissue in abnormal locations, leading to severe symptoms, inflammation, pain, organ dysfunction, and infertility. Surgical removal of endometriosis lesions is crucial for improving pain and fertility outcomes, with the goal of complete lesion removal. Incomplete surgery often results in recurring symptoms and the need for additional interventions. This study aims to explore the biological significance of PARP-1, EpCAM, and FR as potential targets for molecular imaging in endometriosis, assessing their suitability for targeted intraoperative imaging. Gene expression analysis was performed using the EndometDB. By immunohistochemistry, we investigated the presence and distribution of PARP-1, EpCAM, and FR in endometriosis foci and adjacent tissue. We also applied an ad hoc platform for the analysis image to perform a quantitative immunolocalization analysis. Additionally, double immunofluorescence analysis was carried out for PARP-1 and EpCAM, as well as PARP-1 and FR, to explore the expression of these combined markers within endometriosis foci and their potential simultaneous utilization in surgical treatment. The analysis of gene expression revealed that PARP-1, EpCAM, and FR exhibit higher levels of expression in endometriotic lesions compared to the peritoneum, used for control tissue. Immunohistochemical analysis also highlighted a significant increase in expression of all three biomarkers in endometriosis foci compared to surrounding tissues, as well as the quantitative analysis of immunolocalization of the signal. Furthermore, the double immunofluorescence analysis consistently revealed nuclear expression of PARP-1 and membrane and cytoplasmatic expression of EpCAM and FR, although relatively weaker. Overall, the three markers demonstrate significant potential for effective imaging of endometriosis. Particularly, the results emphasize the importance of PARP-1 expression as a possible indicator for distinguishing endometriotic lesions from adjacent tissue. PARP-1, as a potential biomarker for endometriosis, offers promising avenues for further investigation in terms of both pathophysiology and diagnostic-therapeutic approaches.

cell biology↗