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Journal Abstract Search
228 related items for PubMed ID: 35942823
1. Asymmetric depth-filtration: A versatile and scalable method for high-yield isolation of extracellular vesicles with low contamination. Chernyshev VS, Chuprov-Netochin RN, Tsydenzhapova E, Svirshchevskaya EV, Poltavtseva RA, Merdalimova A, Yashchenok A, Keshelava A, Sorokin K, Keshelava V, Sukhikh GT, Gorin D, Leonov S, Skliar M. J Extracell Vesicles; 2022 Aug; 11(8):e12256. PubMed ID: 35942823 [Abstract] [Full Text] [Related]
3. Comparative analysis of tangential flow filtration and ultracentrifugation, both combined with subsequent size exclusion chromatography, for the isolation of small extracellular vesicles. Visan KS, Lobb RJ, Ham S, Lima LG, Palma C, Edna CPZ, Wu LY, Gowda H, Datta KK, Hartel G, Salomon C, Möller A. J Extracell Vesicles; 2022 Sep; 11(9):e12266. PubMed ID: 36124834 [Abstract] [Full Text] [Related]
4. A magnetic bead-mediated selective adsorption strategy for extracellular vesicle separation and purification. Fang X, Chen C, Liu B, Ma Z, Hu F, Li H, Gu H, Xu H. Acta Biomater; 2021 Apr 01; 124():336-347. PubMed ID: 33578055 [Abstract] [Full Text] [Related]
5. Isolation of small extracellular vesicles from regenerating muscle tissue using tangential flow filtration and size exclusion chromatography. Gurriaran-Rodriguez U, De Repentigny Y, Kothary R, Rudnicki MA. Skelet Muscle; 2024 Oct 11; 14(1):22. PubMed ID: 39394606 [Abstract] [Full Text] [Related]
6. Comprehensive evaluation of methods for small extracellular vesicles separation from human plasma, urine and cell culture medium. Dong L, Zieren RC, Horie K, Kim CJ, Mallick E, Jing Y, Feng M, Kuczler MD, Green J, Amend SR, Witwer KW, de Reijke TM, Cho YK, Pienta KJ, Xue W. J Extracell Vesicles; 2020 Dec 11; 10(2):e12044. PubMed ID: 33489012 [Abstract] [Full Text] [Related]
7. Higher functionality of extracellular vesicles isolated using size-exclusion chromatography compared to ultracentrifugation. Mol EA, Goumans MJ, Doevendans PA, Sluijter JPG, Vader P. Nanomedicine; 2017 Aug 11; 13(6):2061-2065. PubMed ID: 28365418 [Abstract] [Full Text] [Related]
8. An Isolation System to Collect High Quality and Purity Extracellular Vesicles from Serum. Yang J, Gao X, Xing X, Huang H, Tang Q, Ma S, Xu X, Liang C, Li M, Liao L, Tian W. Int J Nanomedicine; 2021 Aug 11; 16():6681-6692. PubMed ID: 34616151 [Abstract] [Full Text] [Related]
9. Fully Automated, Label-Free Isolation of Extracellular Vesicles from Whole Blood for Cancer Diagnosis and Monitoring. Sunkara V, Kim CJ, Park J, Woo HK, Kim D, Ha HK, Kim MH, Son Y, Kim JR, Cho YK. Theranostics; 2019 Aug 11; 9(7):1851-1863. PubMed ID: 31037143 [Abstract] [Full Text] [Related]
10. Isolation of Extracellular Vesicles from Human Follicular Fluid: Size-Exclusion Chromatography versus Ultracentrifugation. Soares M, Pinto MM, Nobre RJ, de Almeida LP, da Graça Rasteiro M, Almeida-Santos T, Ramalho-Santos J, Sousa AP. Biomolecules; 2023 Feb 02; 13(2):. PubMed ID: 36830647 [Abstract] [Full Text] [Related]
11. Rapid isolation and enrichment of extracellular vesicle preparations using anion exchange chromatography. Heath N, Grant L, De Oliveira TM, Rowlinson R, Osteikoetxea X, Dekker N, Overman R. Sci Rep; 2018 Apr 10; 8(1):5730. PubMed ID: 29636530 [Abstract] [Full Text] [Related]
12. Methodologies for Scalable Production of High-Quality Purified Small Extracellular Vesicles from Conditioned Medium. Andriolo G, Provasi E, Brambilla A, Panella S, Soncin S, Cicero VL, Radrizzani M, Turchetto L, Barile L. Methods Mol Biol; 2023 Apr 10; 2668():69-98. PubMed ID: 37140791 [Abstract] [Full Text] [Related]
13. Effect of Sample Preprocessing and Size-Based Extraction Methods on the Physical and Molecular Profiles of Extracellular Vesicles. Alexandre L, Shen ML, de Araujo LOF, Renault J, DeCorwin-Martin P, Martel R, Ng A, Juncker D. ACS Sens; 2024 Mar 22; 9(3):1239-1251. PubMed ID: 38436286 [Abstract] [Full Text] [Related]
14. Isolation of Circulating Extracellular Vesicles by High-Performance Size-Exclusion Chromatography. Takov K, Teng IJ, Mayr M. Methods Mol Biol; 2022 Mar 22; 2504():31-40. PubMed ID: 35467277 [Abstract] [Full Text] [Related]
15. Isolation of High-Purity Extracellular Vesicles by the Combination of Iodixanol Density Gradient Ultracentrifugation and Bind-Elute Chromatography From Blood Plasma. Onódi Z, Pelyhe C, Terézia Nagy C, Brenner GB, Almási L, Kittel Á, Manček-Keber M, Ferdinandy P, Buzás EI, Giricz Z. Front Physiol; 2018 Mar 22; 9():1479. PubMed ID: 30405435 [Abstract] [Full Text] [Related]
16. Improving the Purity of Extracellular Vesicles by Removal of Lipoproteins from Size Exclusion Chromatography- and Ultracentrifugation-Processed Samples Using Glycosaminoglycan-Functionalized Magnetic Beads. Chou CY, Chiang PC, Li CC, Chang JW, Lu PH, Hsu WF, Chang LC, Hsu JL, Wu MS, Wo AM. ACS Appl Mater Interfaces; 2024 Aug 28; 16(34):44386-44398. PubMed ID: 39149774 [Abstract] [Full Text] [Related]
17. High-grade extracellular vesicles preparation by combined size-exclusion and affinity chromatography. Bellotti C, Lang K, Kuplennik N, Sosnik A, Steinfeld R. Sci Rep; 2021 May 18; 11(1):10550. PubMed ID: 34006937 [Abstract] [Full Text] [Related]
18. Rapid and efficient isolation platform for plasma extracellular vesicles: EV-FISHER. Pan WL, Feng JJ, Luo TT, Tan Y, Situ B, Nieuwland R, Guo JY, Liu CC, Zhang H, Chen J, Zhang WH, Chen J, Chen XH, Chen HY, Zheng L, Chen JX, Li B. J Extracell Vesicles; 2022 Nov 18; 11(11):e12281. PubMed ID: 36404468 [Abstract] [Full Text] [Related]
19. A Review of Exosomal Isolation Methods: Is Size Exclusion Chromatography the Best Option? Sidhom K, Obi PO, Saleem A. Int J Mol Sci; 2020 Sep 04; 21(18):. PubMed ID: 32899828 [Abstract] [Full Text] [Related]
20. Isolation of Extracellular Vesicles Using Titanium Dioxide Microspheres. Santiago VF, Rosa-Fernandes L, Macedo-da-Silva J, Angeli CB, Mule SN, Marinho CRF, Torrecilhas AC, Marie SNK, Palmisano G. Adv Exp Med Biol; 2024 Sep 04; 1443():1-22. PubMed ID: 38409413 [Abstract] [Full Text] [Related] Page: [Next] [New Search]