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Nutritional copper deficiency and penicillamine administration: some effects on bone collagen and arterial elastin crosslinking.

Nutritional copper deficiency effects marked changes in the crosslinking of collagen and elastin, presumably in relationship to copper's role as a cofactor for lysyl oxidase. Lysyl oxidase controls one of the initial steps in the crosslinking of elastin and collagen, i.e., the conversion of peptidyl lysine or hydroxylysine residues to peptidyl alpha-aminoadipic-delta-semialdehyde derivatives. Once lysine-derived aldehydic functions in collagen and elastin are formed, crosslinks occur via aldol and Schiff-base type condensations. A decrease in the degree of crosslinking results in changes in the biomechanical properties of both collagen- and elastin-rich tissues. Some of these changes are described with respect to chick bone and aorta. Likewise, penicillamine blocks crosslinking reactions. In this case, however, it is probably because of the formation of thiazolidine complexes between penicillamine aldehydic functions. The administration of penicillamine at different levels to young growing chicks allows the isolation of fibrous insoluble elastin varying in aldehyde content.

Amino Acids↗

Elastin morphology in normal and obstructed guinea-pig bladders. Localization of elastin to the trigone.

Elastin is the major component of elastic fibers in aortic tissue and has been suggested to be important for the stretch and recoil of the bladder. We have mapped the histologic distribution of elastin throughout the entire guinea-pig bladder as well as changes in the distribution of elastin during bladder-outlet obstruction. We used an animal model in which a jeweler's ring is placed around the urethra of the young guinea pig. As the animal grows, outlet obstruction is gradually induced, and the bladder gradually increases in total weight to as much as 8-fold that of controls. We localized the elastin histologically in normal and obstructed bladders by serially sectioning entire bladders and staining the sections with an elastin-specific stain, Verhoff-van Gieson stain (VVG). Surprisingly, we found that the elastin was predominantly localized only to the trigone of the bladder and that the elastin in this area was increased during obstruction. These results are consistent with the predominantly mesodermal embryologic origin of the trigone, since mesodermal tissues are more often associated with elastin expression.

Animals↗