1.Comparison between electrophysiologic and morphologic changes in lead induced peripheral neuropathy in rats.
Youn Mee HWANG ; Il Nam SUNWOO ; In Hyuk CHUNG ; Bong JUNG
Journal of Korean Medical Science 1989;4(4):185-192
Compound nerve action potential (CNAP) of the mixed peripheral nerve is composed of A alpha beta, A delta, and C potentials. All components of CNAPs in the sciatic nerve were recorded by stimulating the tibial nerve of both control and lead-poisoned rats. Marked decrease of nerve conduction velocity and prolonged duration were found in A alpha beta and A delta fibers especially in large myelinated A alpha beta fibers. The amplitude decreased in A alpha beta potential, but the area did not change. In C potential produced by activation of unmyelinated fibers, nerve conduction velocity slightly decreased, but the amplitude and area did not significantly change. Pathologic correlates revealed prominent segmental demyelination with significant decrease of large myelinated fiber densities. Minimal axonal degeneration of unmyelinated fibers was present. We can conclude that electrophysiologic changes in the lead-poisoned rats correlate with pathologic changes in them.
Animals
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Electrochemistry
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Lead Poisoning/complications/*pathology
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Neural Conduction
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Peripheral Nervous System Diseases/chemically induced/*pathology
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Rats
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Rats, Inbred Strains
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Sciatic Nerve/pathology
2.Effect of potassium iodide on prevention of experimental lead nephropathy and expression of nuclear factor-kappaB and fibronectin.
Yu-feng QIAO ; Dong-zi PANG ; Jin-feng LU ; Bai-ying HU ; Dong LIU ; Gui-feng ZHOU ; Bo YANG ; Rong-shan LI ; Yun-sheng JIANG
Chinese Journal of Industrial Hygiene and Occupational Diseases 2009;27(12):747-752
OBJECTIVETo investigate the effect of potassium iodide on the expression of nuclear factor-kappaB and fibronectin.
METHODSThe experiment was performed with 72 SD rats weighing about 180-220 g. The animals were randomly assigned into nine groups. Group A, B, C (n=8) served as control and were fed with distilled water for 1 month, 2 month, 3 month respectively. Group D, E, F (n=8) served as lead exposed and were fed with water with 0.5% lead acetate for 1 month, 2 month, 3 month respectively. Group G, H, I (n=8) served as potassium iodide and lead exposed and were treated with 0.5% lead acetate simultaneously taking potassium iodide 3 mg/100 g weight by intragastric administration for 1 month, 2 month, 3 month respectively. Animals of different groups were sacrificed at the end of the treatment. Ultrastructure of kidney was observed by electron microscopy; Expression of NF-kappaB and FN protein and mRNA in kidney were measured respectively by immunohistochemistry and RT-PCR.
RESULTSElectron microscopic examination revealed potassium iodide could restrain the denaturalization in epithelial cells and mitochondrial cristae. The expressions of NF-kappaB protein (0.2315 +/- 0.0624, 0.3213 +/- 0.0740, 0.4729 +/- 0.0839) and mRNA (0.4370 +/- 0.0841, 0.5465 +/- 0.0503, 0.6443 +/- 0.0538) in all the lead exposed groups continuously increased compared with correspondent control groups; Group I was decreased obviously compared with group F. The expressions of FN protein (0.4243 +/- 0.0595, 0.4917 +/- 0.0891) and mRNA (0.8650 +/- 0.0880, 0.8714 +/- 0.0980) in group E and F increased compared with group B and C, but the expressions of FN protein in group I significantly decreased compared with group F; The expressions of FN mRNA in Group H and I significantly decreased compared with group E and F.
CONCLUSIONThe potassium iodide can ameliorate renal ultrastructure and degrade expression of nuclear factor-kappaB and fibronectin induced by lead.
Animals ; Disease Models, Animal ; Fibronectins ; genetics ; metabolism ; Kidney ; drug effects ; metabolism ; ultrastructure ; Kidney Diseases ; chemically induced ; metabolism ; pathology ; Lead Poisoning ; complications ; metabolism ; pathology ; Male ; NF-kappa B ; genetics ; metabolism ; Potassium Iodide ; pharmacology ; RNA, Messenger ; genetics ; Rats ; Rats, Sprague-Dawley