Figure S8. MNI cells selection at acid pH. a Workflow of MNI selection at acid pH. At the end of acclimation cells were assayed for b growth, c morphology (magnification 10×) and d migration. MNI ctr and MNI acid sel. C16-exo were obtained as described in the manuscript, and same number (10 × 106) incubated for 72 h with MNI ctr cells. (n = 3) *, p < 0.05. (PNG 596 kb
Figure S12. Mitochondrial complex I activity in human brain metastases. a Expression levels of compl...
Fig. S3. ASIC2 enhances the colony formation capacity of CRC cells. (A, B) Cell viability detected b...
Figure S7. Exosomal HMGB1 expression in tumor tissues and serum samples of gastric cancer patients. ...
Figure S6. MNI and MI intracellular expression of exosome markers and intracellular pH (pHi) evaluat...
Figure S5. MNI cells labeling with CFDA-SE, vesicles isolation and FACS analysis. a MNI cells were l...
Figure S2. Experimental workflow of C16-exo isolation from MNI cell culture. (PNG 271 kb
Figure S3. a MNI, and b EP cells phase contrast with bounds of the selected cells (n = 30) for each ...
Figure S4. TLC analysis of fluorescent lipids of MNI cells and exosomes. a Cells at the indicated pH...
Figure S1. Characterization of cell lines used in this study. a Overview table depicting classificat...
Table S2. List of exosomal proteins from MNI cells identified by mass-spectrometry and found upregul...
Table S3. pHÂ 6.0 upregulated categories involved in metastatic processes are indicated. Proteins fo...
Overexpression of NEDD9 restores the oncogenic properties of SOX10 KD + SOX9 KD melanoma cells. (A) ...
Figure S8. Recombinant HMGB1 induced autophagy and promoted the activation of neutrophils. A. The pe...
Figure S3. Cell viability in vitro by increasing β-sitosterol concentrations. Human melanoma cell li...
Exosomes characterization. A. TEM micrographs showing morphology of exosomes immunoprecipitated with...
Figure S12. Mitochondrial complex I activity in human brain metastases. a Expression levels of compl...
Fig. S3. ASIC2 enhances the colony formation capacity of CRC cells. (A, B) Cell viability detected b...
Figure S7. Exosomal HMGB1 expression in tumor tissues and serum samples of gastric cancer patients. ...
Figure S6. MNI and MI intracellular expression of exosome markers and intracellular pH (pHi) evaluat...
Figure S5. MNI cells labeling with CFDA-SE, vesicles isolation and FACS analysis. a MNI cells were l...
Figure S2. Experimental workflow of C16-exo isolation from MNI cell culture. (PNG 271 kb
Figure S3. a MNI, and b EP cells phase contrast with bounds of the selected cells (n = 30) for each ...
Figure S4. TLC analysis of fluorescent lipids of MNI cells and exosomes. a Cells at the indicated pH...
Figure S1. Characterization of cell lines used in this study. a Overview table depicting classificat...
Table S2. List of exosomal proteins from MNI cells identified by mass-spectrometry and found upregul...
Table S3. pHÂ 6.0 upregulated categories involved in metastatic processes are indicated. Proteins fo...
Overexpression of NEDD9 restores the oncogenic properties of SOX10 KD + SOX9 KD melanoma cells. (A) ...
Figure S8. Recombinant HMGB1 induced autophagy and promoted the activation of neutrophils. A. The pe...
Figure S3. Cell viability in vitro by increasing β-sitosterol concentrations. Human melanoma cell li...
Exosomes characterization. A. TEM micrographs showing morphology of exosomes immunoprecipitated with...
Figure S12. Mitochondrial complex I activity in human brain metastases. a Expression levels of compl...
Fig. S3. ASIC2 enhances the colony formation capacity of CRC cells. (A, B) Cell viability detected b...
Figure S7. Exosomal HMGB1 expression in tumor tissues and serum samples of gastric cancer patients. ...