Drosophila pericardial nephrocyte ultrastructure changes during ageing

Autor(en): Psathaki, Olympia-Ekaterini 
Dehnen, Lena
Hartley, Paul S.
Paululat, Achim 
Stichwörter: Ageing; Autophagy; CALPODES-ETHLIUS LEPIDOPTERA; CARDIAC-FUNCTION; Cell Biology; DORSAL VESSEL; Doubled; Drosophila; Endocytosis; FAT-BODY; FINE-STRUCTURE; FRUIT-FLY; GARLAND CELL; Geriatrics & Gerontology; HEART; HEMOLYMPH-PROTEINS; INSECT; Nephrocyte; Nephrocytes; Pericardial cells; Podocytes; Renal system nephrology; Scavenger cells; Slit diaphragm; Ultrastructure
Erscheinungsdatum: 2018
Herausgeber: ELSEVIER IRELAND LTD
Journal: MECHANISMS OF AGEING AND DEVELOPMENT
Volumen: 173
Startseite: 9
Seitenende: 20
Zusammenfassung: 
Here we show that a labyrinth channel compartment and slit diaphragms, which are the histological structures enabling insect nephrocytes ultrafiltration, are established during embryogenesis first by the garland nephrocytes (GCNs). The later pericardial nephrocytes, which represent the majority of functional nephrocytes in larvae and adults, lack these characteristic features at the embryonic stage. During larval development, a sub population of the pericardial cells survives and matures into functional nephrocytes (PCNs) displaying a fully differentiated slit diaphragm and a labyrinth channel compartment. Likely the embryonic pericardial cells have primary functions other than ultrafiltration (e.g. in production and secretion of ECM constituents). We also show, for the first time, that PCNs in the adult fly undergo dramatic histological degeneration upon ageing. The slit diaphragms disappear, the labyrinth channel system degenerates and the lysosomal compartment becomes highly enriched with electron-dense material. When using nephrocytes as a model for genetic screening purposes or to investigate the specific role of genes involved in endocytosis, histological changes occurring upon ageing need to be taken into account when interpreting structural data.
ISSN: 00476374
DOI: 10.1016/j.mad.2018.04.006

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