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diaphorase/inflammation

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Spinal cord NADPH-diaphorase histochemical staining but not nitric oxide synthase immunoreactivity increases following carrageenan-produced hindpaw inflammation in the rat.

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Recent reports suggest that NADPH-diaphorase (NADPH-d) may be a histochemical marker for neuronal nitric oxide synthase (nNOS) in the central nervous system. Carrageenan-produced unilateral hindpaw inflammation in the rat results in a bilateral increase in NADPH-d in spinal cord neurons. This

NADPH-diaphorase reactivity and Fos-immunoreactivity within the ventral horn of the lumbar spinal cord of cats submitted to acute muscle inflammation induced by injection of carrageenan.

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The NADPH-diaphorase activity and Fos-immunoreactivity within the ventral horn of the lumbar spinal cord were studied in cats with acute unilateral myositis following injection of carrageenan into the m.m. gastrocnemius-soleus. In carrageenan-injected cats maximum in the mean number of intensely

NADPH-diaphorase histochemistry provides evidence for a bilateral, somatotopically inappropriate response to unilateral hindpaw inflammation in the rat.

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Unilateral hindpaw inflammation produces several neurochemical changes in the ipsilateral spinal dorsal horn that have been interpreted as contributing to the associated hyperalgesia. NADPH-diaphorase histochemical staining was used to examine the response of a population of neurons 1, 2, 6 or 24 h

Unilateral hindpaw inflammation produces a bilateral increase in NADPH-diaphorase histochemical staining in the rat lumbar spinal cord.

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Tissue injury results in several changes in spinal cord neurons that contribute to hyperalgesia arising from the injured tissue. In models of unilateral hindpaw inflammation, changes in the neurochemistry and electrophysiology of dorsal horn neurons ipsilateral, and to a much lesser extent

[NADPH-DIAPHORASE REACTIVITY IN THE VENTRAL HORN OF THE FELINE SPINAL CORD DURING ACUTE MUSCLE INFLAMMATION].

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The aim of this research was to reveal the changes in the NADPH-d reactivity in the lumbal spinal cord (L6/L7) of cats with unilateral acute myositis of the mm. gastrocnemius-soleus after intramuscular injections of carrageenan. The effect of unilateral muscle inflammation was expressed in a

HISTOCHEMICAL STUDIES OF LEUKOCYTES FROM AN INFLAMMATORY EXUDATE. VI. DEMONSTRATION OF NON-DIAPHORASE-COUPLED DEHYDROGENASE ACTIVITY USING PHENAZINE METHOSULPHATE.

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Histochemical studies of leukocytes from an inflammatory exudate. II. Succinic dehydrogenase, mitochondrial alpha-glycerophosphate dehydrogenase and di- and triphosphopyridine nucleotide diaphorases.

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Orofacial inflammatory pain affects the expression of MT1 and NADPH-d in rat caudal spinal trigeminal nucleus and trigeminal ganglion.

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Very little is known about the role of melatonin in the trigeminal system, including the function of melatonin receptor 1. In the present study, adult rats were injected with formaldehyde into the right vibrissae pad to establish a model of orofacial inflammatory pain. The distribution of melatonin

Mineralocorticoid receptor associates with pro-inflammatory bias in the hippocampus of spontaneously hypertensive rats.

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Damage observed in the hippocampus of the adult spontaneously hypertensive rat (SHR) resembles the neuropathology of mineralocorticoid-induced hypertension, supporting a similar endocrine dysfunction in both entities. In the present study, we tested the hypothesis that increased expression of the

Interstitial cell of Cajal loss correlates with the degree of inflammation in the human appendix and reverses after inflammation.

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BACKGROUND Normal gut motility relies on the complex interaction between the interstitial cell of Cajal (ICC) and the enteric nerve networks. Inflammation of the gastrointestinal tract adversely affects both ICC and enteric nerves. We aimed to determine the distribution of ICC and nerve networks in

Involvement of nitric oxide in inflammation of ovaries in gilts.

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NADPH-diaphorase (NADPH-d) and an inducible type of nitric oxide synthase (iNOS) were demonstrated in porcine ovaries after unilateral infusion of bacteria into the hilus of an ovary. In group I one ml of saline was infused into the hilus of each ovary from the 15th day to the 19th day of the

NADPH-diaphorase reactivity in articular afferents of a normal and inflamed knee joint in the cat.

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The distribution of NADPH-diaphorase was studied in retrogradely labelled dorsal root ganglion cells innervating the knee joint of the cat. A strong staining reaction was found in 7.5 +/- 1.9% (mean +/- S.D. of 9 normal joints and 6393 labelled perikarya) of the articular afferents. An acute

Proportion of NADPH-diaphorase reactive sympathetic efferents innervating the normal and inflamed knee joint of the cat.

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To determine whether postganglionic sympathetic efferents may be a source of nitric oxide in normal and inflamed knee joints, the distribution of NADPH-diaphorase was studied in retrogradely labelled neurons of the paravertebral sympathetic ganglia in the cat. In these ganglia, a strong

[The NADPH-diaphorase activity of the bronchial epithelium in chronic lung diseases].

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Topochemistry and activity of NADP-H diaphorase co-localized with NO synthase was examined in operative material of lungs from patients with bronchial asthma (BA), chronic nonobstructive bronchitis (CNO) and chronic obstructive bronchitis. The enzyme activity was found to be dependent upon the types

Morphometric analysis of NADPH diaphorase reactive neurons in a rat model of focal excitotoxic striatal injury.

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Excitotoxicity is the major component in neuropathological conditions, related to harmful action of imbalanced concentrations of glutamate and its agonists in the nervous tissue, ultimately resulting in cell death. In the present study, we evaluated the effects of an acute striatal lesion induced by
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