Journal of Extracellular Vesicles

Papers
(The median citation count of Journal of Extracellular Vesicles is 8. The table below lists those papers that are above that threshold based on CrossRef citation counts [max. 250 papers]. The publications cover those that have been published in the past four years, i.e., from 2020-11-01 to 2024-11-01.)
ArticleCitations
Minimal information for studies of extracellular vesicles (MISEV2023): From basic to advanced approaches448
Urinary extracellular vesicles: A position paper by the Urine Task Force of the International Society for Extracellular Vesicles222
A brief history of nearly EV‐erything – The rise and rise of extracellular vesicles216
Formation of a protein corona on the surface of extracellular vesicles in blood plasma206
Biodistribution of extracellular vesicles following administration into animals: A systematic review199
Updating MISEV: Evolving the minimal requirements for studies of extracellular vesicles188
Molecular evaluation of five different isolation methods for extracellular vesicles reveals different clinical applicability and subcellular origin174
RNA packaging into extracellular vesicles: An orchestra of RNA‐binding proteins?155
Identification of storage conditions stabilizing extracellular vesicles preparations154
Microbiota‐derived extracellular vesicles in interkingdom communication in the gut133
Comprehensive evaluation of methods for small extracellular vesicles separation from human plasma, urine and cell culture medium123
The impact of storage on extracellular vesicles: A systematic study120
Covalent conjugation of extracellular vesicles with peptides and nanobodies for targeted therapeutic delivery119
Engineered extracellular vesicles as versatile ribonucleoprotein delivery vehicles for efficient and safe CRISPR genome editing117
Hypoxia and extracellular vesicles: A review on methods, vesicular cargo and functions112
Apoptotic vesicles restore liver macrophage homeostasis to counteract type 2 diabetes111
Adipose‐derived mesenchymal stem cells reduce autophagy in stroke mice by extracellular vesicle transfer of miR‐25110
Extracellular vesicles containing ACE2 efficiently prevent infection by SARS‐CoV‐2 Spike protein‐containing virus110
Characterization of extracellular vesicles and synthetic nanoparticles with four orthogonal single‐particle analysis platforms108
Tetraspanins distinguish separate extracellular vesicle subpopulations in human serum and plasma – Contributions of platelet extracellular vesicles in plasma samples106
Tissue‐derived extracellular vesicles in cancers and non‐cancer diseases: Present and future105
Staphylococcus aureus membrane vesicles contain immunostimulatory DNA, RNA and peptidoglycan that activate innate immune receptors and induce autophagy105
A functional corona around extracellular vesicles enhances angiogenesis, skin regeneration and immunomodulation102
Emerging methods in biomarker identification for extracellular vesicle‐based liquid biopsy92
Exosomes derived from osteogenic tumor activate osteoclast differentiation and concurrently inhibit osteogenesis by transferring COL1A1‐targeting miRNA‐92a‐1‐5p89
Extracellular vesicles from adipose tissue‐derived stem cells alleviate osteoporosis through osteoprotegerin and miR‐21‐5p89
Highly‐metastatic colorectal cancer cell released miR‐181a‐5p‐rich extracellular vesicles promote liver metastasis by activating hepatic stellate cells and remodelling the tumour microenvironment89
Extracellular vesicles: Natural liver‐accumulating drug delivery vehicles for the treatment of liver diseases89
Preclinical efficacy and clinical safety of clinical‐grade nebulized allogenic adipose mesenchymal stromal cells‐derived extracellular vesicles88
Human bronchial epithelial cell‐derived extracellular vesicle therapy for pulmonary fibrosis via inhibition of TGF‐β‐WNT crosstalk87
Small extracellular vesicles released by infused mesenchymal stromal cells target M2 macrophages and promote TGF‐β upregulation, microvascular stabilization and functional recovery in a rodent model o85
Quantification of protein cargo loading into engineered extracellular vesicles at single‐vesicle and single‐molecule resolution84
Roles of extracellular vesicles in the aging microenvironment and age‐related diseases82
Visualizing transfer of microbial biomolecules by outer membrane vesicles in microbe‐host‐communication in vivo82
A call for Rigor and standardization in plant extracellular vesicle research79
A bacterial extracellular vesicle‐based intranasal vaccine against SARS‐CoV‐2 protects against disease and elicits neutralizing antibodies to wild‐type and Delta variants77
In sickness and in health: The functional role of extracellular vesicles in physiology and pathology in vivo76
Plant‐derived extracellular vesicles: Recent advancements and current challenges on their use for biomedical applications75
Characterization of brain‐derived extracellular vesicle lipids in Alzheimer's disease74
Analysis of extracellular vesicle DNA at the single‐vesicle level by nano‐flow cytometry71
Myocardial ischemia‐reperfusion induced cardiac extracellular vesicles harbour proinflammatory features and aggravate heart injury71
Tumour‐derived extracellular vesicle membrane hybrid lipid nanovesicles enhance siRNA delivery by tumour‐homing and intracellular freeway transportation71
Foetal bovine serum influence on in vitro extracellular vesicle analyses69
Comparative analysis of tangential flow filtration and ultracentrifugation, both combined with subsequent size exclusion chromatography, for the isolation of small extracellular vesicles66
Synthetic bacterial vesicles combined with tumour extracellular vesicles as cancer immunotherapy65
In sickness and in health: The functional role of extracellular vesicles in physiology and pathology in vivo65
Measuring particle concentration of multimodal synthetic reference materials and extracellular vesicles with orthogonal techniques: Who is up to the challenge?65
Hypoxia‐stimulated ATM activation regulates autophagy‐associated exosome release from cancer‐associated fibroblasts to promote cancer cell invasion65
Quantitative proteomic analysis of extracellular vesicle subgroups isolated by an optimized method combining polymer‐based precipitation and size exclusion chromatography65
Human neural cell type‐specific extracellular vesicle proteome defines disease‐related molecules associated with activated astrocytes in Alzheimer's disease brain64
Extracellular vesicle‐mediated endothelial apoptosis and EV‐associated proteins correlate with COVID‐19 disease severity64
Extracellular vesicles carry SARS‐CoV‐2 spike protein and serve as decoys for neutralizing antibodies62
Active cargo loading into extracellular vesicles: Highlights the heterogeneous encapsulation behaviour62
Functional assays to assess the therapeutic potential of extracellular vesicles62
Proteomic dissection of large extracellular vesicle surfaceome unravels interactive surface platform62
Specific anti‐glioma targeted‐delivery strategy of engineered small extracellular vesicles dual‐functionalised by Angiopep‐2 and TAT peptides61
Engineering extracellular vesicles by three‐dimensional dynamic culture of human mesenchymal stem cells61
Single‐vesicle imaging and co‐localization analysis for tetraspanin profiling of individual extracellular vesicles61
A compendium of single extracellular vesicle flow cytometry60
Melanoma‐derived extracellular vesicles mediate lymphatic remodelling and impair tumour immunity in draining lymph nodes59
Establishment of a simplified dichotomic size‐exclusion chromatography for isolating extracellular vesicles toward clinical applications58
Engineered Cas9 extracellular vesicles as a novel gene editing tool58
Localized fluorescent imaging of multiple proteins on individual extracellular vesicles using rolling circle amplification for cancer diagnosis57
Human milk extracellular vesicles target nodes in interconnected signalling pathways that enhance oral epithelial barrier function and dampen immune responses56
Extracellular vesicles in the development of organ‐specific metastasis56
Reversing the surface charge of MSC‐derived small extracellular vesicles by εPL‐PEG‐DSPE for enhanced osteoarthritis treatment55
First‐in‐human intracochlear application of human stromal cell‐derived extracellular vesicles54
Cryptococcus extracellular vesicles properties and their use as vaccine platforms53
Exogenous loading of miRNAs into small extracellular vesicles52
Nanoalgosomes: Introducing extracellular vesicles produced by microalgae52
Identification of anti‐inflammatory vesicle‐like nanoparticles in honey52
Extracellular vesicle‐mediated delivery of circDYM alleviates CUS‐induced depressive‐like behaviours51
Extracellular vesicles released by human retinal pigment epithelium mediate increased polarised secretion of drusen proteins in response to AMD stressors51
Helicobacter pylori‐derived outer membrane vesicles contribute to Alzheimer's disease pathogenesis via C3‐C3aR signalling50
Understanding the extracellular vesicle surface for clinical molecular biology49
Diverse plasma membrane protrusions act as platforms for extracellular vesicle shedding49
Highly efficient magnetic labelling allows MRI tracking of the homing of stem cell‐derived extracellular vesicles following systemic delivery48
Robust sequential biophysical fractionation of blood plasma to study variations in the biomolecular landscape of systemically circulating extracellular vesicles across clinical conditions47
Rigor and standardization of extracellular vesicle research: Paving the road towards robustness47
Prostate cancer extracellular vesicles mediate intercellular communication with bone marrow cells and promote metastasis in a cholesterol‐dependent manner46
Extracellular vesicles produced by the human commensal gut bacterium Bacteroides thetaiotaomicron affect host immune pathways in a cell‐type specific manner that are altered in inflammatory bow46
Robust delivery of RIG‐I agonists using extracellular vesicles for anti‐cancer immunotherapy44
Pancreatic β cells control glucose homeostasis via the secretion of exosomal miR‐29 family44
CD73 in small extracellular vesicles derived from HNSCC defines tumour‐associated immunosuppression mediated by macrophages in the microenvironment43
WJMSC‐derived small extracellular vesicle enhance T cell suppression through PD‐L142
Proteomic analysis of MSC‐derived apoptotic vesicles identifies Fas inheritance to ameliorate haemophilia a via activating platelet functions42
Mesenchymal stromal cell extracellular vesicles as therapy for acute and chronic respiratory diseases: A meta‐analysis42
First‐in‐human clinical trial of allogeneic, platelet‐derived extracellular vesicles as a potential therapeutic for delayed wound healing41
Current challenges and future directions for engineering extracellular vesicles for heart, lung, blood and sleep diseases41
β‐catenin‐controlled tubular cell‐derived exosomes play a key role in fibroblast activation via the OPN‐CD44 axis41
Epigenetic reprogramming enhances the therapeutic efficacy of osteoblast‐derived extracellular vesicles to promote human bone marrow stem cell osteogenic differentiation41
Tumour extracellular vesicle‐derived Complement Factor H promotes tumorigenesis and metastasis by inhibiting complement‐dependent cytotoxicity of tumour cells41
Function of ceramide transfer protein for biogenesis and sphingolipid composition of extracellular vesicles41
COVID‐19 therapy with mesenchymal stromal cells (MSC) and convalescent plasma must consider exosome involvement: Do the exosomes in convalescent plasma antagonize the weak immune antibodies?40
Proteomic profile of melanoma cell‐derived small extracellular vesicles in patients’ plasma: a potential correlate of melanoma progression40
Comparison of urinary extracellular vesicle isolation methods for transcriptomic biomarker research in diabetic kidney disease40
Inflammasome‐induced extracellular vesicles harbour distinct RNA signatures and alter bystander macrophage responses39
Professional killers: The role of extracellular vesicles in the reciprocal interactions between natural killer, CD8+ cytotoxic T‐cells and tumour cells36
Considerations for extracellular vesicle and lipoprotein interactions in cell culture assays36
Imaging of surface microdomains on individual extracellular vesicles in 3‐D36
Distinguishing functional exosomes and other extracellular vesicles as a nucleic acid cargo by the anion‐exchange method36
A human kidney and liver organoid‐based multi‐organ‐on‐a‐chip model to study the therapeutic effects and biodistribution of mesenchymal stromal cell‐derived extracellular vesicles35
Morphine‐mediated release of miR‐138 in astrocyte‐derived extracellular vesicles promotes microglial activation35
Pharmacological inhibition of syntenin PDZ2 domain impairs breast cancer cell activities and exosome loading with syndecan and EpCAM cargo34
Mesenchymal Stem Cell exosome delivered Zinc Finger Protein activation of cystic fibrosis transmembrane conductance regulator34
Extracellular vesicles from monocyte/platelet aggregates modulate human atherosclerotic plaque reactivity34
Extracellular vesicles derived from the periodontal pathogen Filifactor alocis induce systemic bone loss through Toll‐like receptor 233
Cell‐specific targeting of extracellular vesicles through engineering the glycocalyx33
Bioorthogonally surface‐edited extracellular vesicles based on metabolic glycoengineering for CD44‐mediated targeting of inflammatory diseases33
The proteomic landscape of small urinary extracellular vesicles during kidney transplantation33
Nephron mass determines the excretion rate of urinary extracellular vesicles32
Extracellular vesicles engineered to bind albumin demonstrate extended circulation time and lymph node accumulation in mouse models32
Single‐step equipment‐free extracellular vesicle concentration using super absorbent polymer beads32
The dark side of foetal bovine serum in extracellular vesicle studies32
Microglial derived extracellular vesicles activate autophagy and mediate multi‐target signaling to maintain cellular homeostasis31
Astrocytes deliver CK1 to neurons via extracellular vesicles in response to inflammation promoting the translation and amyloidogenic processing of APP31
Methamphetamine use alters human plasma extracellular vesicles and their microRNA cargo: An exploratory study31
Neddylation of Coro1a determines the fate of multivesicular bodies and biogenesis of extracellular vesicles31
Ivermectin inhibits extracellular vesicle secretion from parasitic nematodes30
Early prediction of COVID‐19 severity using extracellular vesicle COPB230
WNT3A‐loaded exosomes enable cartilage repair30
TPI1‐reduced extracellular vesicles mediated by Rab20 downregulation promotes aerobic glycolysis to drive hepatocarcinogenesis29
Urinary extracellular vesicles: Assessment of pre‐analytical variables and development of a quality control with focus on transcriptomic biomarker research29
Engineered small extracellular vesicles displaying ACE2 variants on the surface protect against SARS‐CoV‐2 infection29
Reprogramming of T cell‐derived small extracellular vesicles using IL2 surface engineering induces potent anti‐cancer effects through miRNA delivery29
Small extracellular vesicles deliver osteolytic effectors and mediate cancer‐induced osteolysis in bone metastatic niche29
Proteome‐minimized outer membrane vesicles from Escherichia coli as a generalized vaccine platform29
Cross‐flow microfiltration for isolation, selective capture and release of liposarcoma extracellular vesicles28
CD9 inhibition reveals a functional connection of extracellular vesicle secretion with mitophagy in melanoma cells28
Millisecond dynamic of SARS‐CoV‐2 spike and its interaction with ACE2 receptor and small extracellular vesicles28
Extracellular Vesicle Capture by AnTibody of CHoice and Enzymatic Release (EV‐CATCHER): A customizable purification assay designed for small‐RNA biomarker identification and evaluation of circulating 28
Encapsulating Cas9 into extracellular vesicles by protein myristoylation28
Benchmarking blood collection tubes and processing intervals for extracellular vesicle performance metrics28
Anti‐SARS‐CoV‐2 effect of extracellular vesicles released from mesenchymal stem cells28
Identification of faecal extracellular vesicles as novel biomarkers for the non‐invasive diagnosis and prognosis of colorectal cancer27
LncRNA‐encoded microproteins: A new form of cargo in cell culture‐derived and circulating extracellular vesicles27
Extracellular vesicles derived from oesophageal cancer containing P4HB promote muscle wasting via regulating PHGDH/Bcl‐2/caspase‐3 pathway27
Extracellular vesicles from lung tissue drive bone marrow neutrophil recruitment in inflammation27
An immunogold single extracellular vesicular RNA and protein (AuSERP) biochip to predict responses to immunotherapy in non‐small cell lung cancer patients26
Small extracellular vesicles ameliorate peripheral neuropathy and enhance chemotherapy of oxaliplatin on ovarian cancer26
Endothelial extracellular vesicles promote tumour growth by tumour‐associated macrophage reprogramming26
Impact on NK cell functions of acute versus chronic exposure to extracellular vesicle‐associated MICA: Dual role in cancer immunosurveillance26
MIBlood‐EV: Minimal information to enhance the quality and reproducibility of blood extracellular vesicle research26
Single extracellular vesicle analysis in human amniotic fluid shows evidence of phenotype alterations in preeclampsia26
Optimization of small extracellular vesicle isolation from expressed prostatic secretions in urine for in‐depth proteomic analysis26
MitoEVs: A new player in multiple disease pathology and treatment25
Biosynthetic neoantigen displayed on bacteria derived vesicles elicit systemic antitumour immunity25
Heterogeneity in extracellular vesicle secretion by single human macrophages revealed by super‐resolution microscopy25
Tumour‐derived small extracellular vesicles suppress CD8+ T cell immune function by inhibiting SLC6A8‐mediated creatine import in NPM1‐mutated acute myeloid leukaemia25
Light‐induced high‐efficient cellular production of immune functional extracellular vesicles24
Reporter gene assay for membrane fusion of extracellular vesicles24
Accessory ESCRT‐III proteins are conserved and selective regulators of Rab11a‐exosome formation24
Extracellular vesicles rich in HAX1 promote angiogenesis by modulating ITGB6 translation24
Neoantigen‐based cancer vaccination using chimeric RNA‐loaded dendritic cell‐derived extracellular vesicles24
Extracellular vesicles from recombinant cell factories improve the activity and efficacy of enzymes defective in lysosomal storage disorders24
Small extracellular vesicle‐derived miR‐574‐5p regulates PGE2‐biosynthesis via TLR7/8 in lung cancer24
Label‐free characterization of an extracellular vesicle‐based therapeutic24
A comprehensive study to delineate the role of an extracellular vesicle‐associated microRNA‐29a in chronic methamphetamine use disorder23
Extracellular vesicles are the primary source of blood‐borne tumour‐derived mutant KRAS DNA early in pancreatic cancer23
Binding of phosphatidylserine‐positive microparticles by PBMCs classifies disease severity in COVID‐19 patients23
Special considerations for studies of extracellular vesicles from parasitic helminths: A community‐led roadmap to increase rigour and reproducibility23
Lipid‐based strategies used to identify extracellular vesicles in flow cytometry can be confounded by lipoproteins: Evaluations of annexin V, lactadherin, and detergent lysis23
Perivascular cell‐derived extracellular vesicles stimulate colorectal cancer revascularization after withdrawal of antiangiogenic drugs23
Epithelial to mesenchymal transition influences fibroblast phenotype in colorectal cancer by altering miR‐200 levels in extracellular vesicles23
Plasma extracellular vesicle derived protein profile predicting and monitoring immunotherapeutic outcomes of gastric cancer23
Extracellular vesicle miRNA predict FDG‐PET status in patients with classical Hodgkin Lymphoma22
Uncovering temperature‐dependent extracellular vesicle secretion in breast cancer22
Non‐Invasive imaging of extracellular vesicles: Quo vaditis in vivo?22
Molecular and functional profiling of apical versus basolateral small extracellular vesicles derived from primary human proximal tubular epithelial cells under inflammatory conditions22
Differential proteomics argues against a general role for CD9, CD81 or CD63 in the sorting of proteins into extracellular vesicles22
Androgens alter the heterogeneity of small extracellular vesicles and the small RNA cargo in prostate cancer22
Unraveling multilayered extracellular vesicles: Speculation on cause21
Astrocytes‐derived extracellular vesicles in motion at the neuron surface: Involvement of the prion protein21
Chimeric nanocomposites for the rapid and simple isolation of urinary extracellular vesicles21
Hypoxia promotes EV secretion by impairing lysosomal homeostasis in HNSCC through negative regulation of ATP6V1A by HIF‐1α21
Cell trafficking and regulation of osteoblastogenesis by extracellular vesicle associated bone morphogenetic protein 221
TGFβ+ small extracellular vesicles from head and neck squamous cell carcinoma cells reprogram macrophages towards a pro‐angiogenic phenotype21
Interaction with mammalian enteric viruses alters outer membrane vesicle production and content by commensal bacteria20
Identification of the SNARE complex that mediates the fusion of multivesicular bodies with the plasma membrane in exosome secretion20
Extracellular vesicles from in vivo liver tissue accelerate recovery of liver necrosis induced by carbon tetrachloride20
Extracellular vesicles derived from radioresistant oral squamous cell carcinoma cells contribute to the acquisition of radioresistance via the miR‐503‐3p‐BAK axis20
Single Extracellular VEsicle Nanoscopy20
Oncogenic RAS drives the CRAF‐dependent extracellular vesicle uptake mechanism coupled with metastasis19
Cdc42 functions as a regulatory node for tumour‐derived microvesicle biogenesis19
Mass‐produced gram‐negative bacterial outer membrane vesicles activate cancer antigen‐specific stem‐like CD8+ T cells which enables an effective combination immunotherapy with anti‐PD‐118
Secretion of pro‐angiogenic extracellular vesicles during hypoxia is dependent on the autophagy‐related protein GABARAPL118
Platelet removal from human blood plasma improves detection of extracellular vesicle‐associated miRNA18
αvβ1 integrin is enriched in extracellular vesicles of metastatic breast cancer cells: A mechanism mediated by galectin‐317
EV‐ADD, a database for EV‐associated DNA in human liquid biopsy samples17
Phosphatase Shp2 regulates biogenesis of small extracellular vesicles by dephosphorylating Syntenin17
Faeces‐derived extracellular vesicles participate in the onset of barrier dysfunction leading to liver diseases17
Neuropilin‐1 is present on Foxp3+ T regulatory cell‐derived small extracellular vesicles and mediates immunity against skin transplantation17
The polysaccharide chitosan facilitates the isolation of small extracellular vesicles from multiple biofluids17
Ciliary extracellular vesicles are distinct from the cytosolic extracellular vesicles17
Extracellular vesicles enclosed‐miR‐421 suppresses air pollution (PM2.5)‐induced cardiac dysfunction via ACE2 signalling17
Extracellular vesicles as modifiers of antibody‐drug conjugate efficacy17
Optimized culture methods for isolating small extracellular vesicles derived from human induced pluripotent stem cells16
Characterizing single extracellular vesicles by droplet barcode sequencing for protein analysis16
A multi‐omics approach identifies pancreatic cancer cell extracellular vesicles as mediators of the unfolded protein response in normal pancreatic epithelial cells16
Neuron‐derived extracellular vesicles contain synaptic proteins, promote spine formation, activate TrkB‐mediated signalling and preserve neuronal complexity16
ACE2‐enriched extracellular vesicles enhance infectivity of live SARS‐CoV‐2 virus16
Untouched isolation enables targeted functional analysis of tumour‐cell‐derived extracellular vesicles from tumour tissues16
Rapid and efficient isolation platform for plasma extracellular vesicles: EV‐FISHER15
Biodistribution of unmodified cardiosphere‐derived cell extracellular vesicles using single RNA tracing15
Assessment of extracellular vesicle isolation methods from human stool supernatant15
Presentation of antigen on extracellular vesicles using transmembrane domains from viral glycoproteins for enhanced immunogenicity15
Engineered small extracellular vesicle‑mediated NOX4 siRNA delivery for targeted therapy of cardiac hypertrophy15
Stroma‐derived extracellular vesicle mRNA signatures inform histological nature of prostate cancer15
Extracellular vesicle‐bound DNA in urine is indicative of kidney allograft injury14
Metastatic prostate cancer‐derived extracellular vesicles facilitate osteoclastogenesis by transferring the CDCP1 protein14
Retinal pigment epithelium extracellular vesicles are potent inducers of age‐related macular degeneration disease phenotype in the outer retina14
Extracellular vesicles derived from macrophages display glycyl‐tRNA synthetase 1 and exhibit anti‐cancer activity14
Itraconazole inhibits nuclear delivery of extracellular vesicle cargo by disrupting the entry of late endosomes into the nucleoplasmic reticulum14
Asymmetric depth‐filtration: A versatile and scalable method for high‐yield isolation of extracellular vesicles with low contamination14
Dynamic release of neuronal extracellular vesicles containing miR‐21a‐5p is induced by hypoxia14
Urinary extracellular vesicles contain mature transcriptome enriched in circular and long noncoding RNAs with functional significance in prostate cancer14
Extracellular vesicles from colorectal cancer cells promote metastasis via the NOD1 signalling pathway14
Quantitative assessment of lipophilic membrane dye‐based labelling of extracellular vesicles by nano‐flow cytometry14
Cocaine perturbs mitovesicle biology in the brain13
Comprehensive characterization of human brain‐derived extracellular vesicles using multiple isolation methods: Implications for diagnostic and therapeutic applications13
Suppression of PD‐L1 release from small extracellular vesicles promotes systemic anti‐tumor immunity by targeting ORAI1 calcium channels13
Extracellular vesicles from human plasma dampen inflammation and promote tissue repair functions in macrophages13
Serum‐derived extracellular vesicles: Novel biomarkers reflecting the disease severity of COVID‐19 patients13
Plant exosomes fused with engineered mesenchymal stem cell‐derived nanovesicles for synergistic therapy of autoimmune skin disorders13
Rapid production method with increased yield of high‐purity extracellular vesicles obtained using extended mitochondrial targeting domain peptide12
Label‐free discrimination of extracellular vesicles from large lipoproteins12
A beginner's guide to study extracellular vesicles in human blood plasma and serum12
The development of extracellular vesicle markers for the fungal phytopathogen Colletotrichum higginsianum12
Release of VAMP5‐positive extracellular vesicles by retinal Müller glia in vivo12
Correction to “Minimal information for studies of extracellular vesicles (MISEV2023): From basic to advanced approaches”12
Contaminating transfection complexes can masquerade as small extracellular vesicles and impair their delivery of RNA12
Proviral role of human respiratory epithelial cell‐derived small extracellular vesicles in SARS‐CoV‐2 infection12
Distinct non‐coding RNA cargo of extracellular vesicles from M1 and M2 human primary macrophages12
An engineered CD81‐based combinatorial library for selecting recombinant binders to cell surface proteins: Laminin binding CD81 enhances cellular uptake of extracellular vesicles12
Necroptosis is associated with Rab27‐independent expulsion of extracellular vesicles containing RIPK3 and MLKL12
Arrdc4‐dependent extracellular vesicle biogenesis is required for sperm maturation12
The capture of extracellular vesicles endogenously released by xenotransplanted tumours induces an inflammatory reaction in the premetastatic niche11
Comparison of viral inactivation methods on the characteristics of extracellular vesicles from SARS‐CoV‐2 infected human lung epithelial cells11
Hitting the Bullseye: Are extracellular vesicles on target?11
FO‐SPR biosensor calibrated with recombinant extracellular vesicles enables specific and sensitive detection directly in complex matrices11
Tumour extracellular vesicles induce neutrophil extracellular traps to promote lymph node metastasis11
Extracellular vesicles from the trematodes Fasciola hepatica and Dicrocoelium dendriticum trigger different responses in human THP‐1 macrophages10
The glycoprotein CD147 defines miRNA‐enriched extracellular vesicles that derive from cancer cells10
Selective immunocapture reveals neoplastic human mast cells secrete distinct microvesicle‐ and exosome‐like populations of KIT‐containing extracellular vesicles10
Single‐particle analysis of circulating bacterial extracellular vesicles reveals their biogenesis, changes in blood and links to intestinal barrier10
Dissemination of Mycobacterium tuberculosis is associated to a SIGLEC1 null variant that limits antigen exchange via trafficking extracellular vesicles10
Isolation methodology is essential to the evaluation of the extracellular vesicle component of the senescence‐associated secretory phenotype10
Convection and extracellular matrix binding control interstitial transport of extracellular vesicles10
Stromal cell‐derived small extracellular vesicles enhance radioresistance of prostate cancer cells via interleukin‐8‐induced autophagy10
High TSPAN8 expression in epithelial cancer cell‐derived small extracellular vesicles promote confined diffusion and pronounced uptake10
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