Microwave incubation improves lipolytic enzyme preservation for ultrastr uctural cytochemistry
- 1 January 1997
- journal article
- Published by Springer Nature in Journal of Molecular Histology
- Vol. 29 (5) , 387-392
- https://doi.org/10.1023/a:1026438917856
Abstract
Standard methods for the ultrastructural detection of lipase and sphingomyelinase activities in the skin result in considerable loss of structural preservation, often interfering with accurate delineation of enzyme localization in association with specific organelles. Moreover, poor preservation occurs, even after extensive aldehyde prefixation, owing to the prolonged incubation times needed to detect residual enzyme activity, which often require non- physiological conditions. A modified incubation protocol is described here, which uses microwave irradiation in conjunction with drastically shortened incubation times, resulting in both superior ultrastructural preservation and excellent localization in mammalian epidermis. This method should be useful generally not only for the study of lipase localization in skin, but also in conjuction with the cytochemical detection of a variety of enzymes in various types of tissue.Keywords
This publication has 11 references indexed in Scilit:
- Lamellar bodies as delivery systems of hydrolytic enzymes: Implications for normal and abnormal desquamationBritish Journal of Dermatology, 1992
- Antigen retrieval in formalin-fixed, paraffin-embedded tissues: an enhancement method for immunohistochemical staining based on microwave oven heating of tissue sections.Journal of Histochemistry & Cytochemistry, 1991
- Avian permeability barrier function reflects mode of sequestration and organization of stratum corneum lipids: Reevaluation utilizing ruthenium tetroxide staining and lipase cytochemistryTissue and Cell, 1991
- Membrane Structural Alterations in Murine Stratum Corneum: Relationship to the Localization of Polar Lipids and PhospholipasesJournal of Investigative Dermatology, 1988
- Differentiating the effects of microwave and heat on tissue proteins and their crosslinking by formaldehydeJournal of Molecular Histology, 1988
- Lipstatin, an inhibitor of pancreatic lipase, produced by Streptomyces toxytricini. II. Chemistry and structure elucidation.The Journal of Antibiotics, 1987
- Cytochemical and Biochemical Localization of Lipase and Sphingomyelinase Activity in Mammalian EpidermisJournal of Investigative Dermatology, 1986
- MICROWAVE-ENERGY FIXATION FOR ELECTRON-MICROSCOPY1985
- Detection and determination of lipase (acylglycerol hydrolase) activity from various sourcesLipids, 1983
- Histochemical Differentiation Between Esterases.Experimental Biology and Medicine, 1948