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61.
Summary The distribution of natriuretic peptide immunoreactivity was determined in the heart and brain of the gulf toadfish Opsanus beta using the avidin-biotin peroxidase technique. Four antisera were used: the first raised against porcine brain natriuretic peptide which cross-reacts with atrial natriuretic and C-type natriuretic peptides (termed natriuretic peptide-like immunoreactivity); the second raised against porcine brain natriuretic peptide which cross-reacts with C-type natriuretic peptide but not with atrial natriuretic peptide (termed porcine brain natriuretic peptide-like immunoreactivity); the third raised against rat atrial natriuretic peptide; and the fourth raised against eel atrial natriuretic peptide. Natriuretic peptide- and porcine brain natriuretic peptide-like immunoreactivity was observed in all cardiac muscle cells of the atrium. In the ventricle, natriuretic peptide-like immunoreactivity was found in all cardiac muscle cells, however porcine brain natriuretic peptidelike immunoreactivity was confined to muscle cells adjacent to the epicardium. There was no discernible difference in the distribution of natriuretic peptide-like immunoreactivity and porcine brain natriuretic peptide-like immunoreactivity in the brain. Immunoreactive perikarya were observed only in the preoptic region of the diencephalon, and many immunoreactive fibres were found in the telencephalon, preoptic area, and rostral hypothalamus, lateral to the thalamic region. There was no immunoreactivity in any region of the hypophysis. A pair of distinct immunoreactive fibre tracts ran caudally from the preoptic area to the thalamic region, from which fibres extended to the posterior commissure, area praetectalis, dorsolateral regions of the midbrain tegmentum, and tectum. Many immunoreactive fibres were present in the rostral regions of the inferior lobes of the hypothalamus and in the dorsolateral and ventrolateral aspects of the rhombencephalon. No immunoreactivity was observed in the heart and brain using rat atrial natriuretic and eel natriuretic peptide antisera. Although the chemical structure of natriuretic peptides in the heart and brain of toadfish is unknown, these observations show that a component of the natriuretic peptide complement is similar to porcine brain natriuretic and/or porcine C-type natriuretic peptides. The presence of natriuretic peptides in the brain suggests that they could be important neuromodulators and/or neurotransmitters.  相似文献   
62.
Summary Normal epithelial cell differentiation is charactezied by the production of distinct cytokeratin proteins. It is well known that epithelia of several organs show squamous metaplasia in a vitamin A-deficient status. It is not yet known whether these histological changes are concomitant with a change in cytokeratin expression. Therefore, 3-week-old female rats (BN/BiRij) were fed a vitamin A-deficient diet for 8 weeks. The cytokcratin expression in epithelia of various organs was monitored immunohistochemically during the induction of vitamin A deficiency. Therefore, monoclonal antibodies specific for human cytokeratin 4, 5, 5+8, 7, 10, 14, 18 and 19 were used. In a normal vitamin A status, the distributional pattern for the different cytokeratins in rats was similar to that reported for human tissue. No change in cytokeratin expression was seen in trachea, skin, liver and colon at any time point studied. Squamous metaplasia in urinary bladder and salivary glands was observed after six weeks on the vitamin A-deficient diet. This was concomitant with a substitution of cytokeratins 4, 5+8, 7, 18 and 19 by cytokeratin 10. The latter cytokeratin is specific for keratinzed squamous epithelium. A change in cytokeratin expression was observed in bladder, ureter, kidney, salivary glands, uterus and conjunctiva before histological alterations appeared. In conclusion, the changes in cytokeratin expression observed under vitamin A deficiency in epithelia in vivo are in agreement with those described in other studies for epithelial cells in vitro. The changes in cytokeratin expression and the subsequent differentiation into squamous cells occurs in basal cells of the bladder but not in transitional cells. Furthermore, histological alterations are preceded by changes in cytokeratin expression indicating that vitamin A status controls cytokeratin expression in vivo.  相似文献   
63.
目的 应用免疫组织化学方法观察侧脑室注射组胺H3 受体激动剂R α 甲基组胺对哮喘豚鼠气道内P物质样免疫反应物的影响。方法 豚鼠首先腹腔注射卵蛋白致敏 ,给药组给予豚鼠股静脉注射卵蛋白激发哮喘发作后 ,再侧脑室注射组胺H3 受体激动剂R α 甲基组胺 (5 μg)。哮喘组豚鼠在诱发哮喘发作后侧脑室注射等量生理盐水。对照组豚鼠腹腔注射等量生理盐水。经肺动脉灌注 4 %多聚甲醛 ,取气管、支气管和肺组织 ,冰冻切片 ,做P物质免疫组织化学染色。结果 气管、支气管和肺泡间隔内的P物质样免疫反应物在哮喘发作组明显多于对照组 ,在给药后 10min组明显少于哮喘组 ,给药后 2 0min组已接近正常组。结论 经侧脑室途径激动中枢组胺H3 受体后 ,哮喘豚鼠呼吸道内神经源性炎症介质P物质减少 ,提示中枢组胺H3 受体参与对哮喘气道神经源性炎症的调控。  相似文献   
64.
65.
本文用免疫组织化学ABC法调查了4种AMPA受体亚单位(GluR1、2/3、4)和谷氨酸(Glu)在大鼠三叉神经尾侧亚核(Vc)内的分布及其匹配关系。我们发现,GluR1和2/3免疫阳性胞体和纤维密集分布于Vc的Ⅱ层和Ⅲ层外侧部,在Vc的其余各层呈散在性分布。GluR4免疫阳性胞体和纤维在Vc各层均无分布。Glu免疫阳性胞体分布于Vc各层,尤以浅层(Ⅰ、Ⅱ层)密集,Glu免疫阳性纤维及终末结构主要分布于Vc浅层。结果表明,Glu免疫阳性纤维及终末样结构与AMPA受体免疫阳性胞体和纤维在Vc浅层的分布总体上是相互匹配的,但AMPA受体各亚单位在Vc内的分布存在明显的差异。本文提示,Vc内的Glu可能通过作用于不同的AMPA受体亚单位而发挥其多种生理功能  相似文献   
66.
应用免疫组织化学SP方法,检测了肌源性调节蛋白MyoDl和肌球蛋白m yosin 在38例横纹肌肉瘤(RMS) 中的表达。结果显示MyoDl阳性表达主要定位于RMS瘤细胞的胞核中; m yosin 的阳性表达定位于RMS瘤细胞的胞浆中, 二者的表达阳性率分别为65.8% 和55.3% 。在RMS不同病理分型中MyoDl和m yosin 的阳性表达均无显著性差异。但RMS分化程度低,MyoDl阳性表达增强,m yosin 阳性表达下降。Myo-Dl在Ⅲ级(低分化) 中的表达阳性率显著高于Ⅰ级(高分化)、Ⅱ级(中等分化) 中的表达阳性率(P< 0.05,P< 0.05)。m yosin 在Ⅰ级中的阳性率显著高Ⅲ级中的表达阳性率(P< 0.05)。本文认为, MyoDl表达增高、m yosin 表达下降,不仅是RMS生物学行为的重要特征,也为改进低分化RMS的病理诊断和RMS早期诊断提供了有益的思路。  相似文献   
67.
With the use of an antiserum generated in rabbits against synthetic human calcitonin gene-related peptide (CGRP) the distribution of CGRP-like immunoreactive cell bodies and nerve fibers was studied in the rat central nervous system. A detailed stereotaxic atlas of CGRP-like neurons was prepared. CGRP-like immunoreactivity was widely distributed in the rat central nervous system. CGRP positive cell bodies were observed in the preoptic area and hypothalamus (medial preoptic, periventricular, anterior hypothalamic nuclei, perifornical area, medial forebrain bundle), premamillary nucleus, amygdala medialis, hippocampus and dentate gyrus, central gray and the ventromedial nucleus of the thalamus. In the midbrain a large cluster of cells was contained in the peripeduncular area ventral to the medial geniculate body. In the hindbrain cholinergic motor nuclei (III, IV, V, VI, VII XII) contained CGRP-immunoreactivity. Cell bodies were also observed in the ventral tegmental nucleus, the parabrachial nuclei, superior olive and nucleus ambiguus. The ventral horn cells of the spinal cord, the trigeminal and dorsal root ganglia also contained CGRP-immunoreactivity. Dense accumulations of fibers were observed in the amydala centralis, caudal portion of the caudate putamen, sensory trigeminal area, substantia gelatinosa, dorsal horn of the spinal cord (laminae I and II). Other areas containing CGRP-immunoreactive fibers are the septal area, nucleus of the stria terminalis, preoptic and hypothalamic nuclei (e.g., medial preoptic, periventricular, dorsomedial, median eminence), medial forebrain bundle, central gray, medial geniculate body, peripeduncular area, interpeduncular nucleus, cochlear nucleus, parabrachial nuclei, superior olive, nucleus tractus solitarii, and in the confines of clusters of cell bodies. Some fibers were also noted in the anterior and posterior pituitary and the sensory ganglia. As with other newly described brain neuropeptides it can only be conjectured that CGRP has a neuroregulatory action on a variety of functions throughout the brain and spinal cord.  相似文献   
68.
It has recently been shown in mice that the plasma membrane Ca2+-ATPase isoform 4 (PMCA4) is essential for sperm fertilization capacity. We analyzed whether sperm PMCA4 is formed in the rat during spermatogenesis or is synthesized in the epididymis and transferred onto sperm during sperm maturation. We could show that PMCA4 is conserved in sperm from testis to epididymis. In testis, PMCA4 mRNA was restricted to spermatogonia and early spermatocytes, while the PMCA4 protein was detected in spermatogonia, late spermatocytes, spermatids and in epididymal sperm. In epididymis PMCA4 mRNA was localized in basolateral plasma membranes of epithelial cells of the caput, corpus and cauda epididymidis. In contrast, the protein was only detectable in the epithelial cells of the caput, indicating that PMCA4 mRNA is only translated into protein in caput epithelium. In the epididymal corpus and cauda, PMCA4 mRNA and protein, respectively, was localized and in peritubular cells. Furthermore, we detected an identical distribution of PMCA4a and b splice variants in rat testis, epididymal corpus and cauda. In the caput epididymidis, where PMCA4 is located in the epithelium splice variant 4b was more prominent. Further experiments have to clarify the functional importance of the differences in the PMCA4 distribution.  相似文献   
69.
70.
Aberrant p53 protein accumulation was measured immunohistologically in 342 colorectal paraffin-embedded tissue sections from 115 patients (24 with adenocarcinoma, 59 with adenoma and 32 'hospital controls'). Subjective scoring was compared with quantitative cell imaging, including dichotomous (p53+/p53-) status, ng p53mut mg-1 enterocyte protein, and tumour burden and patient body 'burden' of aberrant p53. A total of 62.5% cancer patients, 23.7% adenoma patients and 3.1% hospital controls were accorded p53+ status on the basis of p53 quantification. Quantitative p53+/p53- assignment had a stronger inverse association with survival (χ2=6.17, p=0.013, Kaplan-Meier test) than subjective 'visual estimation' (χ2=0.57, p=0.449). There was a strong inverse relationship between the p53 'body burden' and the months of post-diagnosis survival (hazard ratio=1.42, p=0.0004, Cox proportional hazards). Absolute quantification for inactivated p53 permits objective and reproducible scoring, adjusts for intra-laboratory immunostaining 'batch effects', corrects for fixation artefacts, and standardizes for inter-laboratory differences in fixation, antibody selection and staining method. Clinically, in situ quantification of p53 will permit more accurate survival prognoses and will inform therapy selection and dose. Ultimately, accurate quantitative tissue/blood p53 correlations may provide a minimally invasive and systemic surrogate measure for these same clinical purposes.  相似文献   
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