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Home › Dataset Library › Transcription profiling of mouse macrophage response to silica nanoparticles

Dataset: Transcription profiling of mouse macrophage response to silica nanoparticles

Using a macrophage cell line, we demonstrate the ability of amorphous silica particles to stimulate inflammatory protein secretion and...

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Using a macrophage cell line, we demonstrate the ability of amorphous silica particles to stimulate inflammatory protein secretion and induce cytotoxicity. Whole genome microarray analysis of early gene expression changes induced by 10nm and 500nm particles showed that the magnitude of change for the majority of genes correlated more tightly with particle surface area than either particle mass or number. Gene expression changes that were size-specific were also identified, however the overall biological processes represented by all gene expression changes were nearly identical, irrespective of particle diameter. Our results suggest that on an equivalent nominal surface area basis, common biological modes of action are expected for nano- and supranano-sized silica particles. Experiment Overall Design: RAW 264.7 mouse macrophage cells were treated with two sizes of amorphous silica particles at three doses each for 2 hours. Cells were exposed to 10nm silica at 5 (low), 20 (mid), or 50 (high) ug/ml or 500nm silica at 250 (low), 500 (mid), or 1000 (high) ug/ml in serum-free medium.

Species:
mouse

Samples:
21

Source:
E-GEOD-13005

Updated:
Dec.12, 2014

Registered:
Nov.24, 2014


Factors: (via ArrayExpress)
Sample
GSE13005GSM325906
GSE13005GSM325907
GSE13005GSM325908
GSE13005GSM325909
GSE13005GSM325910
GSE13005GSM325911
GSE13005GSM325912
GSE13005GSM325913
GSE13005GSM325914
GSE13005GSM325915
GSE13005GSM325916
GSE13005GSM325917
GSE13005GSM325918
GSE13005GSM325919
GSE13005GSM325920
GSE13005GSM325921
GSE13005GSM325922
GSE13005GSM325923
GSE13005GSM325924
GSE13005GSM325925
GSE13005GSM325926

Tags

  • cell
  • genome
  • line
  • macrophage
  • protein
  • serum
  • surface

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