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Journal: Signal Transduction and Targeted Therapy
Article Title: Breast cancer-associated fibroblast-derived exosomal miR-1290 promotes triple-negative breast cancer cell proliferation
doi: 10.1038/s41392-026-02922-y
Figure Lengend Snippet: miR-1290 is upregulated in breast cancer and BCAF/MB-231-derived exosomes. a Nanoparticle tracking analysis of exosomes isolated from BCAFs and MB-231 cells showing their size distribution. The mean size and standard deviation (SD) are indicated for each sample. b TEM images of exosomes isolated from BCAFs (upper) and MB-231 cells (lower) showing the characteristic morphology of the exosomes. Scale bar, 100 nm. c Western blot analysis of exosome markers (CD63, CD81, and flotillin-1), CAF markers (α-SMA and FAP) and cellular markers (GM130 and H3) in BCAF cells, MB-231 cells and their derived exosomes. d BCAF-derived exosome uptake by TNBC cells. PKH67-labeled BCAF-derived exosomes (green) were incubated with BT-549 and Hs578T cells for 1 hour. The cell nuclei were stained with Hoechst 33342 (blue). Scale bar, 20 μm. e Heatmap showing miRNA expression profiles in exosomes derived from BCAFs and MB-231 cells. Red indicates high expression, and blue indicates low expression. miR-1290 (highlighted in red) is highly expressed in both exosome types. f Volcano plots showing differentially expressed miRNAs between breast cancer or TNBC samples and normal controls in five independent GEO datasets ( GSE37963 , GSE45666 , GSE45498 , GSE38167 , and GSE61438 ). Red and blue dots represent upregulated and downregulated miRNAs, respectively, selected using fold-change and nominal p value cutoffs (|log2(fold change)| > 0.58 and nominal p < 0.05, two-tailed Welch’s t test). g Venn diagram analysis of upregulated miRNAs across the five GEO datasets revealed four commonly upregulated miRNAs. h Violin plot showing miR-1290 expression levels in serum samples from normal individuals ( N , n = 2686) and breast cancer patients ( P , n = 1280) from the GSE73002 dataset. The expression of miR-1290 was significantly upregulated in the breast cancer patient samples (*** p < 0.001, Mann‒Whitney U test). i Analysis of serum exosomal miR-1290 levels in normal ( N , n = 20) and TNBC patient ( P , n = 39) samples collected at Keimyung University Dongsan Hospital. The results support the potential of miR-1290 as a candidate diagnostic marker in an independent cohort (*** p < 0.001, Mann‒Whitney U test). j Kaplan‒Meier plot of overall survival for TNBC patients based on serum exosomal miR-1290 expression levels from Keimyung University Dongsan Hospital ( p = 0.006, log-rank test)
Article Snippet: Membranes were incubated with the following primary antibodies: CD63 (1:200; ABclonal, A5271), CD81 (1:200; ABclonal, A5270),
Techniques: Derivative Assay, Exosomes, Analysis, Isolation, Standard Deviation, Morphology, Western Blot, Labeling, Incubation, Staining, Expressing, Two Tailed Test, Blood/Plasma/Serum Samples, Diagnostic Assay, Marker
Journal: Medicine
Article Title: Human amniotic epithelial cell-derived exosomes promote conjunctival goblet cells proliferation and mucin secretion
doi: 10.1097/MD.0000000000049647
Figure Lengend Snippet: Identification and characterization of hAECs-Exo. (A) Morphology of exosomes in the hAECs-Exo group was observed under transmission electron microscopy (Scalar bar = 200 nm). (B) Diameter of exosomes in the hAECs-Exo group was analysis under NTA. (C) Western blot was used to observe the expression of CD63, CD81, and Grp94 proteins in hAECs-Exo. hAECs-Exo = human amniotic epithelial cell-derived exosomes, NTA = nanoparticle tracking analysis.
Article Snippet: The polyvinylidene fluoride membrane was treated with protein-free rapid blocking solution (PS108P, EpiZyme) for 15 minutes, and then incubated with primary antibodies against exosome markers CD63 (1:1000, ABclonal, A19023) and
Techniques: Transmission Assay, Electron Microscopy, Western Blot, Expressing, Derivative Assay
Journal: Bioactive Materials
Article Title: ADGRG1-targeted hypoxia preconditioned extracellular vesicles ameliorate intervertebral disc degeneration by delivering taurine to disrupt the oxidative stress feedback loop-driven ferroptosis in nucleus pulposus cells
doi: 10.1016/j.bioactmat.2026.02.029
Figure Lengend Snippet: Preparation and characterization of engineered ADGRG1-targeting and hypoxia-treated EVs. (A)Induced fit docking analysis of ADGRG1-binding peptide (A1TP, 7 peptides) and extracellular domain of ADGRG1 protein (PDB database: 7SF8). (B) Analysis of the binding of the A1TP to purified ADGRG1 proteins using a microscale thermophoresis (MST) binding assay. (C) Induced fit docking analysis of A1TP-PEG and extracellular domain of ADGRG1 protein. (D) The binding free energy between A1TP or A1TP-PEG and ADGRG1 were calculated using molecular dynamics simulations. Lower values indicate more stable interactions, with values less than or equal to −20 considered as stable binding modes. (E) Schematic illustration of the conjugating reaction between DSPE-PEG-Alkyne and A1TP. Schematic illustration of the fabrication of A1TP-HX-EVs through external modification by A1TP anchoring. Specific steps for the synthesis of DSPE-PEG-A1TP (DPA) are shown in . (F) FT-IR analysis showed the characteristic peaks of the DSPE-PEG-A1TP. The new triazole ring itself showed a characteristic C=N stretching vibration, a peak at 1538 cm −1 revealed the successful conjugation of A1TP. (G) H Nuclear magnetic resonance (NMR) spectra of DSPE-PEG-A1TP in D2O. The hydrogen signatures of the phenyl and phenol groups at 7.5-8.0 ppm confirmed the successful conjugation of DSPE to A1TP. (H) Western blot analysis verified the presence of three EV marker proteins (ALIX, TSG101, and CD81) and one EV negative marker (GM130) in EVs, HX-EVs, and A1TP-HX-EVs. (I) Transmission electron microscopy (TEM) images of EVs, HX-EVs and A1TP-HX-EVs. Scale bar, 200 nm. (J) Zeta potentials of EVs, HX-EVs and A1TP-HX-EVs, n = 3. Two-tailed unpaired Student's t-test was used for statistical analysis. ns, not significant. A two-tailed unpaired Student's t-test was used for statistical analysis. (K) Representative images of the spherical morphology and dispersion states of EVs, HX-EVs and A1TP-HX-EVs. Scale bar, 500 nm. (L) Size distributions of EVs, HX-EVs and A1TP-HX-EVs.
Article Snippet: Finally, the presence of the characteristic EV markers Alix (92880, Cell Signaling Technology),
Techniques: Binding Assay, Purification, Microscale Thermophoresis, Modification, Conjugation Assay, Nuclear Magnetic Resonance, Western Blot, Marker, Transmission Assay, Electron Microscopy, Two Tailed Test, Dispersion