PDF
Abstract
Aim: Mammary gland extracellular vesicles (EVs) are found in both human and livestock milk. Our knowledge of the role of EVs in the mammary gland development, breast cancer and mastitis derives mainly from in vitro cell culture models. However, a commonly shared limitation is the use of fetal bovine serum (FBS) as a supplement, which naturally contains EVs. For this reason, the purpose of the study was to evaluate novel tools to investigate mammary gland EVs in vitro and in a FBS-free system.
Methods: Primary bovine mammary epithelial cells (pbMECs) and a mammary gland alveolar epithelial cell line (MAC-T) were cultured in a chemically defined EV-free medium. To find a reliable EV isolation protocol from a starting cell conditioned medium (10 mL), we compared eight different methodologies by combining ultracentrifugation (UC), chemical precipitation (CP), size exclusion chromatography (SEC), and ultrafiltration (UF).
Results: The medium formula sustained both pbMECs and MAC-T cell growth. Transmission electron microscopy revealed that we obtained EV-like particles in five out of eight protocols. The cleanest samples with the highest number of particles and detectable amounts of RNA were obtained by using UF-SEC-UC.
Conclusion: Our chemically defined, FBS-free medium sustains the growth of both pbMECs and MAC-T and allows the isolation of EVs that are free from any contamination by UF-SEC-UC. In conclusion, we propose a new culture system and EVs isolation protocols for further research on mammary epithelial EVs.
Keywords
Extracellular vesicles
/
bovine mammary gland epithelial cells
/
FBS-free medium
Cite this article
Download citation ▾
Giulia Silvestrelli, Susanne E. Ulbrich, Mara D. Saenz-de-Juano.
Assessing extracellular vesicles from bovine mammary gland epithelial cells cultured in FBS-free medium.
Extracellular Vesicles and Circulating Nucleic Acids, 2021, 2(4): 252-67 DOI:10.20517/evcna.2021.18
| [1] |
Lin MC,He PL,Li HJ.Transfer of mammary Gland-Forming ability between mammary basal epithelial cells and mammary luminal cells via extracellular vesicles/exosomes.J Vis Exp2017;(124):55736 PMCID:PMC5608243
|
| [2] |
Nakatani H,Nakagawa Y.Weaning-induced expression of a milk-fat globule protein, MFG-E8, in mouse mammary glands, as demonstrated by the analyses of its mRNA, protein and phosphatidylserine-binding activity.Biochem J2006;395:21-30 PMCID:PMC1409693
|
| [3] |
Chin AR,Cao M,Wang SE.Polarized secretion of extracellular vesicles by mammary epithelia.J Mammary Gland Biol Neoplasia2018;23:165-76 PMCID:PMC6103817
|
| [4] |
Sun J,Schroeder SG,Reinhardt TA.MicroRNA expression profiles of bovine milk exosomes in response to Staphylococcus aureus infection.BMC Genomics2015;16:806 PMCID:PMC4609085
|
| [5] |
Cai M,Jia X.Genome-wide microRNA profiling of bovine milk-derived exosomes infected with Staphylococcus aureus.Cell Stress Chaperones2018;23:663-72 PMCID:PMC6045547
|
| [6] |
Dutta S,Bandyopadhyay C,Chandran B.Interactions between exosomes from breast cancer cells and primary mammary epithelial cells leads to generation of reactive oxygen species which induce DNA damage response, stabilization of p53 and autophagy in epithelial cells.PLoS One2014;9:e97580 PMCID:PMC4022578
|
| [7] |
Steinbichler TB,Riechelmann H.The role of exosomes in cancer metastasis.Semin Cancer Biol2017;44:170-81
|
| [8] |
Chen WX,Lv MM.Exosomes from drug-resistant breast cancer cells transmit chemoresistance by a horizontal transfer of microRNAs.PLoS One2014;9:e95240 PMCID:PMC3989268
|
| [9] |
Dong X,Ni J.Exosomes and breast cancer drug resistance.Cell Death Dis2020;11:987 PMCID:PMC7673022
|
| [10] |
Admyre C,Qazi KR.Exosomes with immune modulatory features are present in human breast milk.J Immunol2007;179:1969-78
|
| [11] |
Sedykh SE,Purvinsh LA,Ryabchikova EA.Milk exosomes: isolation, biochemistry, morphology, and perspectives of use. In: Gil De Bona A, Antonio Reales Calderon J, editors. Extracellular vesicles and their importance in human health. IntechOpen; 2020.
|
| [12] |
Benmoussa A,Laffont B.Commercial dairy cow milk microRNAs resist digestion under simulated gastrointestinal tract conditions.J Nutr2016;146:2206-15
|
| [13] |
Chen Z,Luo J.Milk exosome-derived miRNAs from water buffalo are implicated in immune response and metabolism process.BMC Vet Res2020;16:123 PMCID:PMC7191744
|
| [14] |
Zhu Z,Lan X.Goat milk-derived exosomes Endowed with Radioactive and Targeting Properties: potential to provide PET/CT monitoring for exosomes-based drug delivery system in gliomas therapy.J Nucl Med2020;61:1064
|
| [15] |
Hendrix A.Exosome signaling in mammary gland development and cancer.Int J Dev Biol2011;55:879-87
|
| [16] |
Lowry MC,O'Driscoll L.The role of exosomes in breast cancer.Clin Chem2015;61:1457-65
|
| [17] |
Zhang M,Li R,Qiu Y.Proteomic analysis reveals proteins and pathways associated with lactation in bovine mammary epithelial cell-derived exosomes.J Proteome Res2020;19:3211-9
|
| [18] |
Huang T,Che Y,Ren W.Exosomes derived from bovine mammary epithelial cells treated with transforming growth factor-β1 inhibit the proliferation of bovine macrophages.J Interferon Cytokine Res2019;39:752-9
|
| [19] |
Benmoussa A,Bourassa S,Provost P.Identification of protein markers for extracellular vesicle (EV) subsets in cow's milk.J Proteomics2019;192:78-88
|
| [20] |
Benmoussa A,Shan ST.A subset of extracellular vesicles carries the bulk of microRNAs in commercial dairy cow’s milk.J Extracell Vesicles2017;6:1401897 PMCID:PMC5994974
|
| [21] |
Weaver SR.Autocrine-paracrine regulation of the mammary gland.J Dairy Sci2016;99:842-53
|
| [22] |
Lehrich BM,Khosravi P,Fiandaca MS.Fetal bovine serum-derived extracellular vesicles persist within vesicle-depleted culture media.Int J Mol Sci2018;19:3538 PMCID:PMC6275013
|
| [23] |
Chen Y,Chen M.Transcriptional profiling of exosomes derived from Staphylococcus aureus-infected bovine mammary epithelial cell line MAC-T by RNA-Seq analysis.Oxid Med Cell Longev2021;2021:8460355 PMCID:PMC8342165
|
| [24] |
Eitan E,Witwer KW.Extracellular vesicle-depleted fetal bovine and human sera have reduced capacity to support cell growth.J Extracell Vesicles2015;4:26373 PMCID:PMC4376846
|
| [25] |
Angelini F,Rossi F,Messina E.Foetal bovine serum-derived exosomes affect yield and phenotype of human cardiac progenitor cell culture.Bioimpacts2016;6:15-24 PMCID:PMC4916547
|
| [26] |
Beninson LA.Exosomes in fetal bovine serum dampen primary macrophage IL-1β response to lipopolysaccharide (LPS) challenge.Immunol Lett2015;163:187-92
|
| [27] |
Liao Z,Eitan E.Serum extracellular vesicle depletion processes affect release and infectivity of HIV-1 in culture.Sci Rep2017;7:2558 PMCID:PMC5451420
|
| [28] |
Shin J,Lee S.Serum starvation induces G1 arrest through suppression of skp2-CDK2 and CDK4 in SK-OV-3 cells.Int J Oncol2008;
|
| [29] |
Chowdhury P,Sheerin NS.Toll-like receptors TLR2 and TLR4 initiate the innate immune response of the renal tubular epithelium to bacterial products.Clin Exp Immunol2006;145:346-56 PMCID:PMC1809678
|
| [30] |
Arellano-Anaya ZE,Leblanc P.Prion strains are differentially released through the exosomal pathway.Cell Mol Life Sci2015;72:1185-96
|
| [31] |
Mitchell JP,Mason MD,Clayton A.Increased exosome production from tumour cell cultures using the Integra CELLine Culture System.J Immunol Methods2008;335:98-105
|
| [32] |
Lin R,Zhao RC.Exosomes from human adipose-derived mesenchymal stem cells promote migration through Wnt signaling pathway in a breast cancer cell model.Mol Cell Biochem2013;383:13-20
|
| [33] |
Patel GK,Zubair H.Comparative analysis of exosome isolation methods using culture supernatant for optimum yield, purity and downstream applications.Sci Rep2019;9:5335 PMCID:PMC6441044
|
| [34] |
Zavizion B,Schaeffer W.Establishment and characterization of a bovine mammary epithelial cell line with unique properties.In Vitro Cell Dev Biol Anim1996;32:138-48
|
| [35] |
Huynh HT,Turner JD.Establishment of bovine mammary epithelial cells (MAC-T): an in vitro model for bovine lactation.Exp Cell Res1991;197:191-9
|
| [36] |
Wellnitz O.Cryopreserved bovine mammary cells to model epithelial response to infection.Vet Immunol Immunopathol2004;101:191-202
|
| [37] |
Hillreiner M,Koch HM.Establishment of a 3D cell culture model of primary bovine mammary epithelial cells extracted from fresh milk.In Vitro Cell Dev Biol Anim2017;53:706-20
|
| [38] |
Heo YT,Lee R.Mammary alveolar cell as in vitro evaluation system for casein gene expression involved in glucose level.Asian-Australas J Anim Sci2017;30:878-85 PMCID:PMC5411853
|
| [39] |
German T.Characterization of an epithelial cell line from bovine mammary gland.In Vitro Cell Dev Biol Anim2002;38:282
|
| [40] |
Pan C,Bohl S,Mann M.Comparative proteomic phenotyping of cell lines and primary cells to assess preservation of cell type-specific functions.Mol Cell Proteomics2009;8:443-50 PMCID:PMC2649808
|
| [41] |
Hu H,Bu D.In vitro culture and characterization of a mammary epithelial cell line from Chinese Holstein dairy cow.PLoS One2009;4:e7636 PMCID:PMC2768788
|
| [42] |
Turrubiarte M, Perruchot MH, Finot L, Mayeur F, Dessauge F. Phenotypic and functional characterization of two bovine mammary epithelial cell lines in 2D and 3D models.Am J Physiol Cell Physiol2016;310:C348-56
|
| [43] |
Tsugami Y,Kawahara M,Nishimura T.Establishment of an in vitro culture model to study milk production and the blood-milk barrier with bovine mammary epithelial cells.Anim Sci J2020;91:e13355
|
| [44] |
Bustin SA,Garson JA.The MIQE guidelines: minimum information for publication of quantitative real-time PCR experiments.Clin Chem2009;55:611-22
|
| [45] |
Finot L,Dessauge F.Molecular signature of the putative stem/progenitor cells committed to the development of the bovine mammary gland at puberty.Sci Rep2018;8:16194 PMCID:PMC6212573
|
| [46] |
Jedrzejczak M.Bovine mammary epithelial cell cultures for the study of mammary gland functions.In Vitro Cell Dev Biol Anim2014;50:389-98 PMCID:PMC4047483
|
| [47] |
Livak KJ.Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method.Methods2001;25:402-8
|
| [48] |
Sigl T,Wiedemann S.Gene expression analysis of protein synthesis pathways in bovine mammary epithelial cells purified from milk during lactation and short-term restricted feeding.J Anim Physiol Anim Nutr (Berl)2014;98:84-95
|
| [49] |
Somiya M,Ochiya T.Biocompatibility of highly purified bovine milk-derived extracellular vesicles.J Extracell Vesicles2018;7:1440132 PMCID:PMC5827637
|
| [50] |
Lobb RJ,Wen SW.Optimized exosome isolation protocol for cell culture supernatant and human plasma.J Extracell Vesicles2015;4:27031 PMCID:PMC4507751
|
| [51] |
Jeurissen S,Van Deun J.The isolation of morphologically intact and biologically active extracellular vesicles from the secretome of cancer-associated adipose tissue.Cell Adh Migr2017;11:196-204 PMCID:PMC5351718
|
| [52] |
Rikkert LG,Terstappen LWMM.Quality of extracellular vesicle images by transmission electron microscopy is operator and protocol dependent.J Extracell Vesicles2019;8:1555419 PMCID:PMC6327933
|
| [53] |
Théry C,Raposo G.Isolation and characterization of exosomes from cell culture supernatants and biological fluids.Curr Protoc Cell Biol2006;Chapter 3:Unit 3.22
|
| [54] |
Karimi N,Jang SC.Detailed analysis of the plasma extracellular vesicle proteome after separation from lipoproteins.Cell Mol Life Sci2018;75:2873-86 PMCID:PMC6021463
|
| [55] |
Karttunen J,Navarro-Ferrandis V.Precipitation-based extracellular vesicle isolation from rat plasma co-precipitate vesicle-free microRNAs.J Extracell Vesicles2019;8:1555410 PMCID:PMC6300090
|
| [56] |
Grigor'eva AE,Bryzgunova OE,Chelobanov BP.[Contamination of exosome preparations, isolated from biological fluids].Biomed Khim2017;63:91-6
|
| [57] |
Monteleone MC,Brocco MA.Neural glycoprotein M6a is released in extracellular vesicles and modulated by chronic stressors in blood.Sci Rep2017;7:9788 PMCID:PMC5575271
|
| [58] |
Zavizion B,Politis I.Subcloning the MAC-T bovine mammary epithelial cell line: morphology, growth properties, and cytogenetic analysis of clonal cells.J Dairy Sci1995;78:515-27
|
| [59] |
Pampaloni F,Stelzer EH.The third dimension bridges the gap between cell culture and live tissue.Nat Rev Mol Cell Biol2007;8:839-85
|
| [60] |
Walter L,Logan A.Investigation on the suitability of milk-derived primary bovine mammary epithelial cells grown on permeable membrane supports as an in vitro model for lactation.In Vitro Cell Dev Biol Anim2020;56:386-98
|
| [61] |
Jenjaroenpun P,Nair VM,Joseph B.Characterization of RNA in exosomes secreted by human breast cancer cell lines using next-generation sequencing.PeerJ2013;1:e201 PMCID:PMC3828613
|
| [62] |
O'Brien K,Corcoran C.Exosomes from triple-negative breast cancer cells can transfer phenotypic traits representing their cells of origin to secondary cells.Eur J Cancer2013;49:1845-59
|
| [63] |
Ogunnaike M,Zempleni J.Bovine mammary alveolar MAC-T cells afford a tool for studies of bovine milk exosomes in drug delivery.Int J Pharm2021;610:121263 PMCID:PMC8665143
|
| [64] |
Crescitelli R,Szabó TG.Distinct RNA profiles in subpopulations of extracellular vesicles: apoptotic bodies, microvesicles and exosomes.J Extracell Vesicles2013;2:20677 PMCID:PMC3823106
|
| [65] |
Cánovas A,Bevilacqua C.Comparison of five different RNA sources to examine the lactating bovine mammary gland transcriptome using RNA-Sequencing.Sci Rep2014;4:5297 PMCID:PMC5381611
|
| [66] |
Izumi H,Sato Y.Bovine milk exosomes contain microRNA and mRNA and are taken up by human macrophages.J Dairy Sci2015;98:2920-33
|
| [67] |
Muroya S,Kimura A,Matsuzaki M.Lactogenic hormones alter cellular and extracellular microRNA expression in bovine mammary epithelial cell culture.J Anim Sci Biotechnol2016;7:8 PMCID:PMC4756532
|