Showing 241 - 253 results of 253 for search '"Extracellular vesicle"', query time: 0.06s Refine Results
  1. 241

    Acute Genetic Damage Induced by Ethanol and Corticosterone Seems to Modulate Hippocampal Astrocyte Signaling by Ana Laura Reyes-Ábalos, Magdalena Álvarez-Zabaleta, Silvia Olivera-Bravo, María Vittoria Di Tomaso

    Published 2024-01-01
    “…Such functional diversity implies an extensive signaling repertoire including extracellular vesicles (EVs) and nanotubes (NTs) that could be involved in protection or damage, as widely shown in various experimental paradigms. …”
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    Article
  2. 242

    Urinary Exosomal Long Noncoding RNA TERC as a Noninvasive Diagnostic and Prognostic Biomarker for Bladder Urothelial Carcinoma by Chen Chen, Anquan Shang, Zujun Sun, Yuting Gao, Jingjuan Huang, Yili Ping, Wenjing Chang, Chenzheng Gu, Junjun Sun, Ping Ji, Yi Yuan, Renquan Lu, Dong Li

    Published 2022-01-01
    “…Exosomes are 30 to 200 nm extracellular vesicles that transport microRNAs, long noncoding RNAs (lncRNAs), mRNAs, circular RNAs, and proteins across tissues and through circulation. …”
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  3. 243

    PAC-Mediated AKI Protection Is Critically Mediated but Does Not Exclusively Depend on Cell-Derived Microvesicles by H. Dihazi, K. Schwarze, S. Patschan, G. A. Müller, O. Ritter, M. Zeisberg, D. Patschan

    Published 2021-01-01
    “…Mechanisms that contribute to PAC-mediated AKI protection include production/secretion of extracellular vesicles (MV, microvesicles). In addition, the cells most likely act by paracrinic processes (secretome). …”
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    Article
  4. 244

    Congenital Zika Syndrome: Insights from Integrated Proteomic and Metabolomic Analysis by Leticia Gomes-de-Pontes, Lucila Akune Barreiros, Lillian Nunes Gomes, Ranieri Coelho Salgado, Sarah Maria da Silva Napoleão, Paulo V. Soeiro-Pereira, Saulo Duarte Passos, Antonio Condino-Neto

    Published 2024-12-01
    “…<b>Background:</b> In this study, we investigated the role of extracellular vesicles (EVs) in the pathogenesis of Congenital Zika Syndrome (CZS). …”
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  5. 245

    Enucleated bone marrow-derived mesenchymal stromal cells regulate immune microenvironment and promote testosterone production through efferocytosis by Lu Sun, Jiayu Huang, Xuezi Wang, Peng Huang, Baolin Dong, Zehang Liang, Jiahong Wu, Jiancheng Wang

    Published 2025-02-01
    “…The organelles and cellular functions of enucleated BMSCs were analyzed by immunofluorescence staining and flow cytometry. Extracellular vesicles (EVs) were isolated by ultracentrifugation and characterized. …”
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  6. 246

    Paracrine Proangiogenic Function of Human Bone Marrow-Derived Mesenchymal Stem Cells Is Not Affected by Chronic Kidney Disease by Femke C. C. van Rhijn-Brouwer, Bas W. M. van Balkom, Diana A. Papazova, Diënty H. M. Hazenbrink, Anke J. Meijer, Isaac Brete, Vidalmar Briceno, Arjan D. van Zuilen, Raechel J. Toorop, Joost O. Fledderus, Hendrik Gremmels, Marianne C. Verhaar

    Published 2019-01-01
    “…Bone marrow- (BM-) derived mesenchymal stromal cells (MSCs) enhance tissue repair and induce neoangiogenesis through paracrine action of secreted proteins and extracellular vesicles (EVs). Administration of allogeneic BM MSCs is less desirable in a patient population likely to require a kidney transplant, but potency of autologous MSCs should be confirmed, given previous indications that CKD-induced dysfunction is present. …”
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  7. 247

    HGF-Modified Dental Pulp Stem Cells Mitigate the Inflammatory and Fibrotic Responses in Paraquat-Induced Acute Respiratory Distress Syndrome by Panpan Geng, Yuning Zhang, Huan Zhang, Xiwen Dong, Yuefeng Yang, XiaoNa Zhu, Chu-Tse Wu, Hua Wang

    Published 2021-01-01
    “…The results showed that MSCs’ supernatant could suppress the expression of proinflammatory and profibrotic cytokines and increase the expression of anti-inflammatory and antifibrotic cytokines in BEAS-2B cells and human pulmonary fibroblast MRC-5. Extracellular vesicles (EVs) derived from MSCs performed more effectively than MSCs’ supernatant. …”
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  8. 248

    Split-Cre-mediated GFP expression as a permanent marker for flagellar fusion of Trypanosoma brucei in its tsetse fly host by Ruth Etzensperger, Mattias Benninger, Berta Pozzi, Ruth Rehmann, Arunasalam Naguleswaran, Gabriela Schumann, Jan Van Den Abbeele, Isabel Roditi

    Published 2025-02-01
    “…While communication via quorum sensing, or by the release and uptake of extracellular vesicles, is widespread in nature, the phenomenon of flagellar fusion has only been observed in Trypanosoma brucei. …”
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  9. 249

    Pharmacokinetic Evaluation of Neutral Sphinghomyelinase2 (nSMase2) Inhibitor Prodrugs in Mice and Dogs by Arina Ranjit, Chae Bin Lee, Lukáš Tenora, Vijaya Saradhi Mettu, Arindom Pal, Jesse Alt, Barbara S. Slusher, Rana Rais

    Published 2024-12-01
    “…<b>Background</b>: Extracellular vesicles (EVs) can carry pathological cargo, contributing to disease progression. …”
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  10. 250

    Co-modulation of a circular form of PCDH11Y during neuroendocrine differentiation of prostate cancer by Giovanni Pecoraro, Ilaria Leone, Silvia Nuzzo, Santiago Negueruela, Giovanni Smaldone, Lorena Buono

    Published 2025-02-01
    “…Additionally, circPCDH11Y was detected in extracellular vesicles (EVs) secreted by LNCaP cells post-NED, suggesting its potential as a circulating biomarker. …”
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  11. 251
  12. 252

    Migrasomes derived from human umbilical cord mesenchymal stem cells: a new therapeutic agent for ovalbumin-induced asthma in mice by Weifeng Gu, Tingting Zheng, Wen Li, Xinkai Luo, Xiaowei Xu, Ying Wang, Chaoming Mao, Yongbin Ma, Liyang Dong

    Published 2025-01-01
    “…Migrasomes are recently identified extracellular vesicles (EVs) generated in migrating cells and facilitate intercellular communication. …”
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  13. 253

    Cancer stem cells and tumor-associated macrophages as mates in tumor progression: mechanisms of crosstalk and advanced bioinformatic tools to dissect their phenotypes and interacti... by Francesco Verona, Sebastiano Di Bella, Roberto Schirano, Camilla Manfredi, Francesca Angeloro, Giulia Bozzari, Matilde Todaro, Matilde Todaro, Giuseppe Giannini, Giuseppe Giannini, Giorgio Stassi, Veronica Veschi

    Published 2025-02-01
    “…The aggressive behavior of CSCs is guided by several intracellular signaling pathways such as WNT, NF-kappa-B, NOTCH, Hedgehog, JAK-STAT, PI3K/AKT1/MTOR, TGF/SMAD, PPAR and MAPK kinases, as well as extracellular vesicles such as exosomes, and extracellular signaling molecules such as cytokines, chemokines, pro-angiogenetic and growth factors, which finely regulate CSC phenotype. …”
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