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Picrosirius Red Staining

Journal of Histochemistry & Cytochemistry · 2014 · Vol. 62(10) · pp. 751–758
Raed LattoufRonald YounesDidier LutomskiNada NaamanGaston GodeauKarim SenniSylvie Changotade

Abstract

Specific staining of the extracellular matrix components is especially helpful in studying tissue remodeling, particularly in the case of connective tissue pathologies. As developed by Junqueira and colleagues in 1979, specific staining by Picrosirius red is one of the most important stains to study collagen networks in different tissues. Under polarized light, collagen bundles appear green, red or yellow, and are easily differentiated from the black background, thus allowing for quantitative morphometric analysis. As Junqueira and colleagues point out, many studies use color staining to differentiate collagen bundles and to specify collagen types, yet other studies report that polarized colors only reflect fiber thickness and packing. Using a simple histological example, our study illustrates the inability of Picrosirius red staining to differentiate collagen types, since the absorbed amount of polarized light by this dye strictly depends on the orientation of the collagen bundles.

Bone and Dental Protein Studiesdental development and anomaliesMolecular Biology Techniques and ApplicationsStainingExtracellular matrixPathologyConnective tissueCollagen fiberMatrix (chemical analysis)ChemistryType I collagenAnatomyBiology

MeSH terms

AdultAzo CompoundsCollagenConnective TissueEhlers-Danlos SyndromeFemaleHumansLightMaleMicroscopySkinStaining and LabelingYoung Adult

Funding

  • Université Paris Descartes
Citations
492
FWCI
15.81
field-weighted impact
References
40
Percentile
99%
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Citations per year
References
The extracellular matrix: an active or passive player in fibrosis?
American Journal of Physiology-Gastrointestinal and Liver Physiology · 2011 · 650 citations
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Picrosirius Red Staining
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