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Research article summary (published 30 Jul 2001):

Apoptotic bone cells may be engulfed by osteoclasts during alveolar bone resorption in young rats.

Full Abstract

The alveolar bone is a suitable in vivo physiological model for the study of apoptosis and interactions of bone cells because it undergoes continuous, rapid and intense resorption/remodelling, during a long period of time, to accommodate the growing tooth germs. The intensity of alveolar bone resorption greatly enhances the chances of observing images of the extremely rapid events of apoptosis of bone cells and also of images of interactions between osteoclasts and osteocytes/osteoblasts/bone lining cells. To find such images, we have therefore examined the alveolar bone of young rats using light microscopy, the TUNEL method for apoptosis, and electron microscopy. Fragments of alveolar bone from young rats were fixed in Bouin and formaldehyde for morphology and for the TUNEL method. Glutaraldehyde-formaldehyde fixed specimens were processed for transmission electron microscopy. Results showed TUNEL positive round/ovoid structures on the bone surface and inside osteocytic lacunae. These structures--also stained by hematoxylin--were therefore interpreted, respectively, as osteoblasts/lining cells and osteocytes undergoing apoptosis. Osteoclasts also exhibited TUNEL positive apoptotic bodies inside large vacuoles; the nuclei of osteoclasts, however, were always TUNEL negative. Ultrathin sections revealed typical apoptotic images--round/ ovoid bodies with dense crescent-like chromatin--on the bone surface, corresponding therefore to apoptotic osteoblasts/lining cells. Osteocytes also showed images compatible with apoptosis. Large osteoclast vacuoles often contained fragmented cellular material. Our results provide further support for the idea that osteoclasts internalize dying bone cells; we were however, unable to find images of osteoclasts in apoptosis.

 

Author information

Author/s: Boabaid, F (F); Cerri, P S (PS); Katchburian, E (E);

Affiliation: Department of Morphology, Federal University of São Paulo (UNIFESP), SP, Brasil.

Journal and publication information

Publication Type: Comparative Study; Journal Article; Research Support, Non-U.S. Gov't

Journal: Tissue & cell (Tissue Cell), published in Scotland. (Language: eng)

Reference: 2001-Aug; vol 33 (issue 4) : pp 318-25

Dates: Created 2001/08/27; Completed 2002/01/28; Revised 2006/11/15;

PMID: 11521946, status: MEDLINE (last retrieved date: 2/18/2009)

Sourced from the National Library of Medicine. Abstract text and other information may be subject to copyright.

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Associated Chemicals: Biological Markers (0) ; Isoenzymes (0) ; tartrate-resistant acid phosphatase (EC 3.1.3.-) ; Acid Phosphatase (EC 3.1.3.2)

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