DocumentCode :
2569483
Title :
The study of the morphology of ultramicrostructure in molecular level of nucleus herniation of lumbar intervertebral disc
Author :
Tongyin, Zhu ; Xiang, Lü ; Shifang, Zhou ; Jiawei, Shen ; Mingqing, Tong ; Ning, Gu ; Jianhua, Gu ; Zhongdang, Xiao ; Zuhong, Lu ; Yu, Wei
Author_Institution :
First Affiliated Hosp., Nanjing Med. Univ., China
Volume :
6
fYear :
1998
fDate :
29 Oct-1 Nov 1998
Firstpage :
2907
Abstract :
In order to investigate the morphology of ultramicrostructure in molecular level of nucleus herniation, the authors studied the ultramicrostructure of three cases of nucleus herniation of lumbar intervertebral disc and one case of normal nucleus pulposus of fresh corpse by using atomic force microscopy. The results showed that the arrangements of collagen bundle, collagen fiber and procollagen fiber were different between the two conditions, and the morphology of molecular particles of proteoglycan in nucleus herniation was different from that in the normal condition. In the condition of nucleus herniation, the collagen fiber formed procollagen fiber reticular meshes adhering to the molecules of protein and proteoglycan, and the DNA adhering to the monochain of RNA in fiber cell nuclei, in the form of bichain and multichain three dimensions helix structures. The banded structure (64-78 nm) of the procollagen fiber, the collagenation and calcification of the degenerated nucleus pulposuses, the quantity of which was significantly greater than normal (P<0.05) indicated that the chronic injury of lumbar intervertebral nucleus pulposuses gave rise to the injury and the break of the collagen fiber which resulted in twist or tangle phenomenon so that nucleus pulposuses lost their normal resistance strength
Keywords :
atomic force microscopy; biological tissues; cellular biophysics; molecular biophysics; proteins; DNA adherence; atomic force microscopy; banded structure; bichain three dimensions helix structures; calcification; chronic injury; collagen bundle; collagen fiber; collagenation; degenerated nucleus pulposuses; lumbar intervertebral disc; molecular level; molecular particles of proteoglycan; monochain of RNA; multichain three dimensions helix structures; nanobiology; nucleus herniation; procollagen fiber; protein molecules; reticular meshes; ultramicrostructure morphology; Atomic force microscopy; Cadaver; Hospitals; Injuries; Lipidomics; Moisture; Morphology; Proteins; Temperature; Testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society, 1998. Proceedings of the 20th Annual International Conference of the IEEE
Conference_Location :
Hong Kong
ISSN :
1094-687X
Print_ISBN :
0-7803-5164-9
Type :
conf
DOI :
10.1109/IEMBS.1998.746095
Filename :
746095
Link To Document :
بازگشت