| Literature DB >> 34944501 |
Simona Serratì1, Antonio Palazzo1, Annamaria Lapenna2, Helena Mateos2, Antonia Mallardi3, René Massimiliano Marsano4, Alessandra Quarta5, Mario Del Rosso6, Amalia Azzariti1,7.
Abstract
The role of extracellular vesicles (EVs) has been completely re-evaluated in the recent decades, and EVs are currently considered to be among the main players in intercellular communication. Beyond their functional aspects, there is strong interest in the development of faster and less expensive isolation protocols that are as reliable for post-isolation characterisations as already-established methods. Therefore, the identification of easy and accessible EV isolation techniques with a low price/performance ratio is of paramount importance. We isolated EVs from a wide spectrum of samples of biological and clinical interest by choosing two isolation techniques, based on their wide use and affordability: ultracentrifugation and salting-out. We collected EVs from human cancer and healthy cell culture media, yeast, bacteria and Drosophila culture media and human fluids (plasma, urine and saliva). The size distribution and concentration of EVs were measured by nanoparticle tracking analysis and dynamic light scattering, and protein depletion was measured by a colorimetric nanoplasmonic assay. Finally, the EVs were characterised by flow cytometry. Our results showed that the salting-out method had a good efficiency in EV separation and was more efficient in protein depletion than ultracentrifugation. Thus, salting-out may represent a good alternative to ultracentrifugation.Entities:
Keywords: extracellular vesicles; salting-out method; ultracentrifugation
Mesh:
Substances:
Year: 2021 PMID: 34944501 PMCID: PMC8699204 DOI: 10.3390/biom11121857
Source DB: PubMed Journal: Biomolecules ISSN: 2218-273X
Concentration and size distribution of EVs of different origins by NTA and DLS.
| Sample | NTA | DLS | |||
|---|---|---|---|---|---|
| Human Cell Lines | n. of EVs ± S.D./μL | Mean ± S.D. | Mode ± S.D. | Z-Average ± S.D. | Mode by Number |
| Caco-2_UC | (5.2 ± 1.3) × 10⁸ | 178.6 ± 9.5 | 124.2 ± 9.1 | 440.9 ± 27.7 | 122 (80) |
| Caco-2_S-O | (3.1 ± 0.2) × 10⁸ | 179 ± 5 | 110.5 ± 9.9 | 552.6 ± 28.7 | 100 (50) |
| Colo 205_UC | (4.0 ± 0.4) × 10⁸ | 209 ± 8 | 187.9 ± 9.5 | 374 ± 95 | 106 (56) |
| Colo 205_S-O | (1.4 ± 0.1) × 10⁸ | 159.8 ± 11.2 | 148.2 ± 3.9 | 944.5 ± 76.2 | 142 (50) |
| 8701-BC_UC | (3.4 ± 0.2) × 10⁸ | 206.7 ± 4.8 | 170.6 ± 15.1 | 663.4 ± 35.6 | 122 (66) |
| 8701-BC_S-O | (2.9 ± 0.6) × 10⁸ | 211.4 ± 18.3 | 149.7 ± 3.8 | 267.1 ± 26.8 | 113 (58) |
| HB2_UC | (6.8 ± 0.4) × 10⁸ | 238.5 ± 2.2 | 144.9 ± 1.3 | 547.3 ± 32.5 | 130 (40) |
| HB2_S-O | (3.3 ± 0.1) × 10⁸ | 263.1 ± 12.1 | 131.3 ± 9.3 | 381.1 ± 3.7 | 143 (64) |
| Body Fluids | |||||
| Saliva_UC (1) | (6.7 ± 0.3) × 10⁸ | 231.1 ± 3.1 | 158.7 ± 12.2 | 195 ± 16 | 143 (66) |
| Saliva_UC (2) | (9.80 ± 0.9) × 107 | 150.9 ± 6.2 | 127.0 ± 14.1 | 212 ± 32 | 142 (62) |
| Saliva_UC (3) | (3.74 ± 0.2) × 108 | 170.5 ± 3.0 | 116.9 ± 7.4 | 237 ± 40 | 105 (61) |
| Saliva_S-O (1) | (2.9 ± 0.4) × 10⁸ | 256.1 ± 3.9 | 193.4 ± 43.2 | 255 ± 14 | 121 (54) |
| Saliva_S-O (2) | (4.10 ± 0.2) × 107 | 170.8 ± 14.8 | 146.0 ± 54.1 | 574 ± 44 | 134 (47) |
| Saliva_S-O (3) | (2.13 ± 0.2) × 108 | 167.6 ± 3.3 | 133.7 ± 20.1 | 1022 ± 200 | 165 (45) |
| Plasma_UC (1) | (1.7 ± 0.1) × 10⁹ | 253.4 ± 7.3 | 186.9 ± 13.1 | 96.7 ± 8.3 | 68 (35) |
| Plasma_UC (2) | (2.71 ± 0.2) × 108 | 166.0 ± 2.6 | 141.3 ± 17.5 | 132 ± 9 | 93 (47) |
| Plasma_UC (3) | (1.93 ± 0.1) × 108 | 158.8 ± 11.1 | 155.8 ± 35.6 | 147 ± 12 | 81 (43) |
| Plasma_S-O (1) | (2.3 ± 0.3) × 10⁸ | 190.4 ± 14.2 | 170.8 ± 36.6 | not suitable | not suitable |
| Plasma_S-O(2) | (5.24 ± 1.1) × 108 | 163.3 ± 3.7 | 139.3 ± 6.6 | 268 ± 70 | 106 (43) |
| Plasma_S-O (3) | (2.82 ± 0.3) × 108 | 151.2 ± 2.2 | 98.5 ± 3.0 | 850 ± 350 | 61 (35) |
| Urine_UC (1) | (2.2 ± 0.1) × 10⁹ | 185.4 ± 2.8 | 143.8 ± 4.0 | 144.4 ± 0.7 | 60 (22) |
| Urine_UC (2) | (6.65 ± 0.1) × 108 | 175.7 ± 1.1 | 116.7 ± 12.0 | 247 ± 9 | 105 (45) |
| Urine_UC (3) | (2.59 ± 0.2) × 108 | 176.0 ± 12.2 | 149.7 ± 27.8 | 275 ± 14 | 108 (42) |
| Urine_S-O (1) | (3.5 ± 0.1) × 10⁸ | 202.0 ± 19 | 147.6 ± 19.5 | 332.5 ± 48.9 | 152 (60) |
| Urine_S-O (2) | (6.49 ± 0.6) × 107 | 165.6 ± 7.5 | 99.0 ± 15.1 | 756 ± 110 | 106 (36) |
| Urine_S-O (3) | (2.13 ± 0.2) × 108 | 169.7 ± 2.9 | 125.3 ± 9.5 | 1650 ± 215 | 174 (40) |
| Cell Cultures Models | |||||
| Yeast_UC | (8.8 ± 0.5) × 10⁸ | 119.9 ± 1.1 | 118.2 ± 4.4 | 187 ± 1 | 98 (50) |
| Yeast_S-O | (2.8 ± 0.5) × 10⁸ | 173.8 ± 12.6 | 126.4 ± 7.7 | not suitable | not suitable |
| Drosophila_UC | (3.8 ± 0.6) × 10⁸ | 153.7 ± 0.8 | 124.4 ± 5.4 | 188.5 ± 88.5 | 54 (22) |
| Drosophila_S-O | (1.3 ± 0.1) × 10⁸ | 169.1 ± 31.1 | 130.7 ± 32.2 | not suitable | not suitable |
| Bacteria_UC | (8.3 ± 5.9) × 10⁸ | 145.8 ± 9.3 | 113.4 ± 10.1 | 379.5 ± 70.1 | 84 (40) |
| Bacteria_S-O | (2.9 ± 1.5) × 10⁸ | 153.5 ± 5 | 127.9 ± 15.3 | not suitable | not suitable |
* FWHH (full width at half height).
Figure 1(a) Histogram of the number of EVs from biofluids and human cancer cell lines, comparing the S-O and UC isolation methods. (b) Scatter plot showing the dimensional distribution of EVs. (c) Histogram of the mean values comparing the S-O and UC. (d) Histogram of the mode values comparing the S-O and UC isolation methods.
Figure 2(a) Characterisation of the EVs isolated from plasma and Colo205 cells by TEM (Scale bar 100 nm) and (b) by NTA.
Figure 3(a) Dotplots of CD81 +/CD63+ EVs isolated from biological fluid and cell lines by S-O and UC. (b) Electrophoretic bands of CD81 in lysates from Drosophila (total lysate S2R+-TOT or clarified to cellular membrane S2R+) and 8701-BC cell lines. (TOT: total lysate). (c) Electrophoretic bands of CD81 and calnexin in EVs from plasma, Colo205 and 8701BC and in Colo205 cell lysate.
Figure 4(a) Pictorial representation of the three possible scenarios generated by the addition of an EV preparation to an AuNP solution. (b) Absorbance spectra obtained for three representative samples. Sample dilutions are reported in the legend of the spectra. (c) Aggregation index ratio (AIratio) of pure or contaminated EV samples. For each sample, the maximum dilution prepared was reported. The dashed dotted line represents the threshold below which a properly diluted EV preparation is free of contaminating proteins. The dashed line corresponds to the AIratio obtained in the presence of PBS only.