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Extracellular vesicles (EVs) are membrane-enclosed vesicles released by cells. They carry proteins, nucleic acids, and metabolites which can be transferred to a recipient cell, locally or at a distance, to elicit a functional response. Since their discovery over 30 years ago, the functional repertoire of EVs in both physiological (e.g., organ morphogenesis, embryo implantation) and pathological (e.g., cancer, neurodegeneration) conditions has cemented their crucial role in intercellular communication. Moreover, because the cargo encapsulated within circulating EVs remains protected from degradation, their diagnostic as well as therapeutic (such as drug delivery tool) applications have garnered vested interest. Global efforts have been made to purify EV subtypes from biological fluids and in vitro cell culture media using a variety of strategies and techniques, with a major focus on EVs of endocytic origin called exosomes (30-150 nm in size). Given that the secretome comprises of soluble secreted proteins, protein aggregates, RNA granules, and EV subtypes (such as exosomes, shed microvesicles, apoptotic bodies), it is imperative to purify exosomes to homogeneity if we are to perform biochemical and biophysical characterization and, importantly, functional dissection. Besides understanding the composition of EV subtypes, defining molecular bias of how they reprogram target cells also remains of paramount importance in this area of active research. Here, we outline a systematic "how to" protocol (along with useful insights/tips) to obtain highly purified exosomes and perform their biophysical and biochemical characterization. This protocol employs a mass spectrometry-based proteomics approach to characterize the protein composition of exosomes. We also provide insights on different isolation strategies and their usefulness in various downstream applications. We outline protocols for lipophilic labeling of exosomes to study uptake by a recipient cell, investigating cellular reprogramming using proteomics and studying functional response to exosomes in the Transwell-Matrigel™ Invasion assay.
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http://dx.doi.org/10.1007/978-1-0716-1186-9_9 | DOI Listing |
J Pediatr Urol
August 2025
Department of Paediatric Urology, Sri Ramachandra Institute of Higher Education and Research, Chennai, 600116, India. Electronic address:
Introduction/aims: We hereby report a novel vesicoscopic supra trigonal ureteric reimplantation detrusorraphy (STURDY) technique for unilateral duplex systems with vesicoureteric reflux (VUR).
Methods: A 3-year-old boy and a 1-year-old girl with recurrent urinary tract infections (UTIs) and left duplex VUR/ureterocele underwent vesicoscopic STURDY.
Technique: After establishing pneumovesicum, a vertical incision was made cranially along the ureter for 2-3 cm incising both the mucosa and detrusor, preserving the vas deferens.
Int J Surg Case Rep
September 2025
Department of Otorhinolaryngology, Al Mouwasat University Hospital, Damascus University, Damascus, Syria; Faculty of Medicine, Damascus University, Damascus, Syria.
Introduction: Antrochoanal polyps (ACPs) typically extend posteriorly into the choana and nasopharynx; orbital invasion is exceptionally rare. This report details an atypical ACP with orbital extension in a coagulopathic patient, highlighting diagnostic and surgical complexities.
Case Presentation: A 46-year-old woman with severe Factor V deficiency (0.
Elife
September 2025
Department of Biology, University of Copenhagen, Copenhagen, Denmark.
Sickness-induced sleep is a behavior conserved across species that promotes recovery from illness, yet the underlying mechanisms are poorly understood. Here, we show that interleukin-6-like cytokine signaling from the gut to brain glial cells regulates sleep. Under healthy conditions, this pathway promotes wakefulness.
View Article and Find Full Text PDFPLoS One
September 2025
Institute of Computational Science and Technology, Guangzhou University, Guangzhou, China.
MicroRNAs (miRNAs) are critical regulators of gene expression in cancer biology, yet their spatial dynamics within tumor microenvironments (TMEs) remain underexplored due to technical limitations in current spatial transcriptomics (ST) technologies. To address this gap, we present STmiR, a novel XGBoost-based framework for spatially resolved miRNA activity prediction. STmiR integrates bulk RNA-seq data (TCGA and CCLE) with spatial transcriptomics profiles to model nonlinear miRNA-mRNA interactions, achieving high predictive accuracy (Spearman's ρ > 0.
View Article and Find Full Text PDFSaudi Dent J
September 2025
Oral Biology Department, Faculty of Dentistry, Ain Shams University, Cairo, Egypt.
To compare the efficacy of using bone marrow mesenchymal stem cell (BM-MSC) exosomes and injectable platelet rich fibrin (i-PRF) on the submandibular salivary glands (SMGs) of aged albino rats in restoring salivary gland structure and function. A total of 40 healthy male albino rats were used, two for obtaining the BM-MSCs, 10 for i-PRF preparation and seven adult rats (6-8 months old) represented the control group (Group 1). The remaining 21 rats were aged (18-20 months old) and divided into three groups of seven rats each; (Group 2): received no treatment, (Group 3): each rat received a single intraglandular injection of BM-MSC exosomes (50 μg/kg/dose suspended in 0.
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