TY - JOUR
T1 - A mass spectrometry-based workflow for the proteomic analysis of in vitro cultured cell subsets isolated by means of laser capture microdissection
AU - Brioschi, Maura
AU - Eligini, Sonia
AU - Crisci, Mauro
AU - Fiorelli, Susanna
AU - Tremoli, Elena
AU - Colli, Susanna
AU - Banfi, Cristina
PY - 2014
Y1 - 2014
N2 - This paper describes a microproteomic workflow that is useful for simultaneously identifying and quantifying proteins from a minimal number of morphotypically heterogeneous cultured adherent cells. The analytical strategy makes use of laser capture microdissection, an effective means of harvesting pure cell populations, and label-free mass spectrometry. We optimised the workflowwith particular reference to cell fixation which is crucial for successful laser-based microdissection and also downstream molecular studies. In addition, we defined the minimum number of cells to be isolated and analysed for satisfactory proteome coverage. To set up this workflow, we choose human monocyte-derived macrophages spontaneously differentiated in vitro. These cells, under our culture conditions, show distinct morphotypes, reminiscent of the heterogeneity observed in tissues in various homeostatic and pathological states, e.g. atherosclerosis. This optimised workflow may provide new insights into biology and pathology of heterogeneous cell in culture, particularly when other cell selection approaches are not suitable.
AB - This paper describes a microproteomic workflow that is useful for simultaneously identifying and quantifying proteins from a minimal number of morphotypically heterogeneous cultured adherent cells. The analytical strategy makes use of laser capture microdissection, an effective means of harvesting pure cell populations, and label-free mass spectrometry. We optimised the workflowwith particular reference to cell fixation which is crucial for successful laser-based microdissection and also downstream molecular studies. In addition, we defined the minimum number of cells to be isolated and analysed for satisfactory proteome coverage. To set up this workflow, we choose human monocyte-derived macrophages spontaneously differentiated in vitro. These cells, under our culture conditions, show distinct morphotypes, reminiscent of the heterogeneity observed in tissues in various homeostatic and pathological states, e.g. atherosclerosis. This optimised workflow may provide new insights into biology and pathology of heterogeneous cell in culture, particularly when other cell selection approaches are not suitable.
KW - Heterogeneous cellmorphology
KW - Label-freemass spectrometry
KW - Laser capture microdissection
KW - Proteomics
UR - http://www.scopus.com/inward/record.url?scp=84904386059&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=84904386059&partnerID=8YFLogxK
U2 - 10.1007/s00216-014-7724-9
DO - 10.1007/s00216-014-7724-9
M3 - Article
C2 - 24633565
AN - SCOPUS:84904386059
SN - 0016-1152
VL - 406
SP - 2817
EP - 2825
JO - Fresenius Journal of Analytical Chemistry
JF - Fresenius Journal of Analytical Chemistry
IS - 12
ER -