外泌体分离及其蛋白质组学分析的研究进展

翁叶靖 随志刚 张丽华 张玉奎

引用本文: 翁叶靖,  随志刚,  张丽华,  张玉奎. 外泌体分离及其蛋白质组学分析的研究进展[J]. 色谱, 2016, 34(12): 1131-1136. doi: 10.3724/SP.J.1123.2016.08036 shu
Citation:  WENG Yejing,  SUI Zhigang,  ZHANG Lihua,  ZHANG Yukui. Recent advances on exosomes isolation methods and proteomic analysis[J]. Chinese Journal of Chromatography, 2016, 34(12): 1131-1136. doi: 10.3724/SP.J.1123.2016.08036 shu

外泌体分离及其蛋白质组学分析的研究进展

  • 基金项目:

    国家自然科学基金(21305140);国家重大科学仪器设备开发专项(2012YQ120044-8).

摘要: 外泌体是一种由细胞分泌的膜性囊泡小体,直径通常为30~100 nm,密度为1.10~1.18 kg/L。外泌体广泛存在于各种体液中,可携带脂类、蛋白质、信使RNAs(mRNAs)、microRNAs(miRNAs)、非编码RNAs(ncRNAs)等多种重要的生物功能分子。许多证据表明,外泌体形成了一种特殊的细胞间信息传递系统,不仅影响细胞的生理状态,而且与多种疾病的发生与发展密切相关。该文简要综述了近年来在外泌体的分离和纯化方面取得的研究进展,并对蛋白质组学技术在外泌体分析中的应用进行了概述。此外,还对外泌体蛋白质组学研究的发展前景进行了展望。

English

    1. [1] Anderson H C. J Cell Biol, 1969, 41(1):59

    2. [2] Crawford N. Brit J Haematol, 1971, 21(1):53

    3. [3] Trams E G, Lauter C J, Salem J N, et al. BBA-Biomembranes, 1981, 645(1):63

    4. [4] Dvorak H F, Quay S C, Orenstein N S, et al. Science, 1981, 212(4497):923

    5. [5] Harding C, Heuser J, Stahl P. J Cell Biol, 1983, 97(2):329

    6. [6] Pan B-T, Johnstone R M. Cell, 1983, 33(3):967

    7. [7] Johnstone R M, Adam M, Hammond J R, et al. J Biol Chem, 1987, 262(19):9412

    8. [8] Valadi H, Ekstrom K, Bossios A, et al. Nat Cell Biol, 2007, 9(6):654

    9. [9] Théry C, Amigorena S, Raposo G, et al. Curr Protoc Cell Biol. New York:John Wiley & Sons Inc., 2006

    10. [10] Kalra H, Adda C G, Liem M, et al. Proteomics, 2013, 13(22):3354

    11. [11] Jeppesen D K, Nawrocki A, Jensen S G, et al. Proteomics, 2014, 14(6):699

    12. [12] Wang D Q, Sun W. Proteomics, 2014, 14(16):1922

    13. [13] Palanisamy V, Sharma S, Deshpande A, et al. PLoS One, 2010, 5(1):8577

    14. [14] Chiasserini D, van Weering J R T, Piersma S R, et al. J Proteomics, 2014, 106(25):191

    15. [15] Wang Z, Hill S, Luther J M, et al. Proteomics, 2012, 12(2):329

    16. [16] Sinha A, Ignatchenko V, Ignatchenko A, et al. Biochem Biophys Res Commun, 2014, 445(4):694

    17. [17] Zeringer E, Barta T, Li M, et al. Cold Spring Harb Protoc, 2015:319

    18. [18] Escola J M, Kleijmeer M J, Stoorvogel W, et al. J Biol Chem, 1998, 273(32):20121

    19. [19] Raposo G, Nijman H W, Stoorvogel W, et al. J Exp Med, 1996, 183(3):1161

    20. [20] Hogan M C, Johnson K L, Zenka R M, et al. Kidney Int, 2014, 85(5):1225

    21. [21] Vlassov A, Li M, Zeringer E, et al. US Patent, US8901284B2. 2014-12-02

    22. [22] Antes T J, Kwei K. US Patent, US20130337440A1. 2013-12-19

    23. [23] Amarnath S, Foley J E, Farthing D E, et al. Stem Cells, 2015, 33(4):1200

    24. [24] Beer L, Zimmermann M, Mitterbauer A, et al. Sci Rep, 2015, 5:16662

    25. [25] Vaidyanathan R, Naghibosadat M, Rauf S, et al. Anal Chem, 2014, 86(22):11125

    26. [26] Yamamoto K R, Alberts B M, Benzinger R, et al. Virology, 1970, 40(3):734

    27. [27] Lewis G D, Metcalf T G. Appl Environ Microbiol, 1988, 54(8):1983

    28. [28] Rider M A, Hurwitz S N, Meckes Jr D G. Sci Rep, 2016, 6:23978

    29. [29] Weng Y J, Sui Z G, Shan Y C, et al. Analyst, 2016, 141:4640

    30. [30] Cheruvanky A, Zhou H, Pisitkun T, et al. Am J Physiol Renal Physiol, 2007, 292(5):F1657

    31. [31] Lai R C, Arslan F, Lee M M, et al. Stem Cell Res, 2010, 4(3):214

    32. [32] Clayton A, Court J, Navabi H, et al. J Immunol Methods, 2001, 247(1):163

    33. [33] Ueda K, Ishikawa N, Tatsuguchi A, et al. Sci Rep, 2014, 4:6232

    34. [34] He M, Crow J, Roth M, et al. Lab Chip, 2014, 14(19):3773

    35. [35] Nilsson J, Skog J, Nordstrand A, et al. Br J Cancer, 2009, 100(10):1603

    36. [36] Takata K, Matsuzaki T, Tajika Y, et al. Histochem Cell Biol, 2008, 130(2):197

    37. [37] Hogan M C, Bakeberg J L, Gainullin V G, et al. J Am Soc Nephrol, 2015, 26(7):1661

    38. [38] Overbye A, Skotland T, Koehler C J, et al. Oncotarget, 2015, 6(30):30357

    39. [39] Melo S A, Luecke L B, Kahlert C, et al. Nature, 2015, 523(7559):177

    40. [40] Sugimachi K, Matsumura T, Hirata H, et al. Br J Cancer, 2015, 112(3):532

    41. [41] Gallo A, Tandon M, Alevizos I, et al. PLoS One, 2012, 7(3):30679

    42. [42] Kahlert C, Melo S A, Protopopov A, et al. J Biol Chem, 2014, 289(7):3869

    43. [43] Saraswat M, Joenvaara S, Musante L, et al. Mol Cell Proteomics, 2015, 14(2):263

    44. [44] Smith V L, Jackson L, Schorey J S. J Immunol, 2015, 195(6):2722

    45. [45] Zubiri I, Posada-Ayala M, Benito-Martin A, et al. Transl Res, 2015, 166(5):474

    46. [46] Mermelekas G, Vlahou A, Zoidakis J. Expert Rev Mol Diagn, 2015, 15(11):1441

    47. [47] Guo J H, Cui Y Z, Yan Z Q, et al. J Proteome Res, 2016, 15(11):4060

    48. [48] Hoshino A, Costa-Silva B, Shen T-L, et al. Nature, 2015, 527(7578):329

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  • 收稿日期:  2016-08-30
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