前往化源商城

Zoology 2015-06-01

Ultrastructural and biochemical characterization of mechanically adaptable collagenous structures in the edible sea urchin Paracentrotus lividus.

Alice Barbaglio, Serena Tricarico, Ana R Ribeiro, Cristiano Di Benedetto, Marta Barbato, Desirèe Dessì, Valeria Fugnanesi, Stefano Magni, Fabio Mosca, Michela Sugni, Francesco Bonasoro, Mario A Barbosa, Iain C Wilkie, M Daniela Candia Carnevali

文献索引:Zoology (Jena.) 118 , 147-60, (2015)

全文:HTML全文

摘要

The viscoelastic properties of vertebrate connective tissues rarely undergo significant changes within physiological timescales, the only major exception being the reversible destiffening of the mammalian uterine cervix at the end of pregnancy. In contrast to this, the connective tissues of echinoderms (sea urchins, starfish, sea cucumbers, etc.) can switch reversibly between stiff and compliant conditions in timescales of around a second to minutes. Elucidation of the molecular mechanism underlying such mutability has implications for the zoological, ecological and evolutionary field. Important information could also arise for veterinary and biomedical sciences, particularly regarding the pathological plasticization or stiffening of connective tissue structures. In the present investigation we analyzed aspects of the ultrastructure and biochemistry in two representative models, the compass depressor ligament and the peristomial membrane of the edible sea urchin Paracentrotus lividus, compared in three different mechanical states. The results provide further evidence that the mechanical adaptability of echinoderm connective tissues does not necessarily imply changes in the collagen fibrils themselves. The higher glycosaminoglycan (GAG) content registered in the peristomial membrane with respect to the compass depressor ligament suggests a diverse role of these molecules in the two mutable collagenous tissues. The possible involvement of GAG in the mutability phenomenon will need further clarification. During the shift from a compliant to a standard condition, significant changes in GAG content were detected only in the compass depressor ligament. Similarities in terms of ultrastructure (collagen fibrillar assembling) and biochemistry (two alpha chains) were found between the two models and mammalian collagen. Nevertheless, differences in collagen immunoreactivity, alpha chain migration on SDS-PAGE and BLAST alignment highlighted the uniqueness of sea urchin collagen with respect to mammalian collagen. Copyright © 2015 Elsevier GmbH. All rights reserved.

相关化合物

结构式 名称/CAS号 全部文献
元明粉 结构式 元明粉
CAS:7757-82-6
十二烷基硫酸钠 结构式 十二烷基硫酸钠
CAS:151-21-3
氯化乙酰胆碱; 乙酰氯化胆碱 结构式 氯化乙酰胆碱; 乙酰氯化胆碱
CAS:60-31-1
曲拉通X-100 结构式 曲拉通X-100
CAS:9002-93-1
甘油 结构式 甘油
CAS:56-81-5
硫酸软骨素钠 结构式 硫酸软骨素钠
CAS:9082-07-9
乙酸-12C2 结构式 乙酸-12C2
CAS:1173022-32-6
冰醋酸 结构式 冰醋酸
CAS:64-19-7
雄诺龙 结构式 雄诺龙
CAS:521-18-6
溴酚蓝 结构式 溴酚蓝
CAS:115-39-9