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1.
Summary Distribution, localization and fine structure of the stellate cells in the liver of lamprey, Lampetra japonica, were studied during the spawning migration by use of Kupffer's gold-chloride method, fluorescence microscopy for vitamin A (retinol) and electron microscopy. The stellate cells in the lamprey liver differ in some of their properties from those in mammalian livers. Stellate cells which store abundant retinol in lipid droplets, occur not only in the hepatic parenchyma, but also in the dense perivascular and capsular connective tissue of the liver and in the interstitium of pancreatic tissue. In the hepatic parenchyma these cells are located perisinusoidally or along thick bundles of collagen fibrils. The stellate cells display a number of large retinol-containing lipid droplets, granular endoplasmic reticulum, tubular structures, dense bodies, Golgi complex, microtubules, and microfilaments. In the space of Disse, the stellate cells and extracellular fibrilar components such as collagen fibrils and microfibrils (11–12 nm in diameter) are intervened between the two layers of basal laminae. Differentiation and possible functions of the stellate cells in the lamprey liver are discussed.  相似文献   

2.
Partial structure of the inferior vena cava over the diaphragm carried out experimentally in dogs let to blood stasis in the liver. Biopsy material obtained at different experimental periods demonstrated that fibrosis began to develop from the central and collective veins as a result of proliferation of the fibroblasts of the vein adventitita and "emigration" of the fucsinophilic fibers into the adjacent parenchyma. In parallel there occurred a neoformation of the connective tissue in the areas of hemorrhages and necroses associated with proliferation of the Kupffer's cells. Nutmeg fibrosis proved to have a cellular genesis and as associated with increased tropocollagen activity of fibroblasts.  相似文献   

3.
In the past decade, novel tools for surgical planning and disease diagnosis have been developed to detect the liver's mechanical properties. Some tools utilize superficial indentation type measurements to determine the elasticity of the liver parenchyma and to assume material homogeneity. In fact, the liver is a soft tissue covered with a connective sheathing that is called Glisson's capsule. This article quantifies the effect of this capsule on the measured or "effective" elastic modulus obtained by indentation with a spherical geometry. Two sets of parametric computational studies in which the Glisson capsule thickness and elasticity were varied, demonstrated the relationship between the measured elastic response and the underlying parenchymal elastic response. Previously reported in vivo indentation data on the human liver were utilized to determine the elasticity of its parenchyma. The results indicated a linear relationship between the effective (measured) elastic response and the underlying parenchyma for the Glisson capsule thicknesses considered. When previously published human liver indentation data were analyzed, the measured elastic modulus was nearly 6.9% greater than the underlying parenchyma elastic modulus. Although the analyzed data were obtained from a single liver and yet displayed a significant variation, the Glisson capsule elasticity induced a significant but systematic error as well. The Glisson capsule thickness error was negligible for capsule parameters associated with a normal liver. Based on this work, an emphasis on the Glisson capsule's contribution to the mechanical response of the liver would enhance the clinical potential of indentation-based novel tools for liver care.  相似文献   

4.
The contribution of the vagus nerves to the innervation of the liver has been studied with the cobaltous chloride impregnation method. With this method we have demonstrated that the fiber plexus in the rat hepatic parenchyma, that we had previously described and stained for acetylcholinesterase, is of a nervous nature and of vagal origin. Our results show that branches from the vagus spread abundantly with the connective tissue at the capsule. From this peripheral location, the fibres expand deeply through the parenchyma in close contact with the hepatocytes towards the central veins. Other branches run with the interlobular connective tissue, distributing to the portal veins, hepatic arteries and biliary ducts. They also have lateral branches which penetrate into the parenchyma.  相似文献   

5.
Atlantic croaker, Micropogon undulatus L., were sampled from an estuary and selected offshore sites in the Gulf of Mexico. Liver samples were collected for light and transmission electron microscopy. Histologically, the Atlantic croaker liver parenchyma was arranged in tubular units. The tubules were similar to those of the primitive marine hagfish but contained unique features such as a central sinusoid and intercellular bile canaliculi. This liver structure may represent an evolutionary step from the primitive tubular hagfish liver to the muralium pattern of higher vertebrates. Pigments which may have occurred from disturbances in the normal oxidative pathways of hepatic lipids were also present in the liver.  相似文献   

6.
The distribution of cathepsin D in liver with CCl4 induced cirrhosis and its involution in rats was investigated by ultrastructural cytochemistry. Besides intracellular, it was revealed the extracellular activity of cathepsin D. The reaction product was on collagen fibers near the hepatocytes and connective tissue cells as well as on the hepatocytes microvilli and on the outside part of cellular membrane of connective tissue cells (macrophage, fibroblast, Ito cells). Hence the source of extracellular cathepsin D in liver are the parenchymatous as well as nonparenchymal cell elements. The results testify that under the cirrhosis and its involution, the cathepsin D takes part in intracellular proteolysis and is secreted by hepatocytes and connective tissue cells in the intracellular space; it also takes part in extracellular catabolism of connective tissue.  相似文献   

7.
Extrahepatic cholestasis induced by ligation and transsection of the common bile duct caused a change in the parenchyma/stroma relationship in rat liver. Two weeks after ligation, the periportal zones of the parenchyma were progressively invaded by expanding bile ductules with surrounding connective tissue diverging from the portal areas. Parenchymal disarray developed and small clumps of hepatocytes or isolated hepatocytes were scattered within the expanded portal areas. These cells showed normal activity of lactate, succinate and glutamate dehydrogenase and may, therefore, be considered to be functionally active. After cholestasis the remainder of the liver parenchyma showed adaptational changes with respect to glucose homeostasis, as demonstrated by histochemical means. Glycogen stores disappeared completely whereas glycogen phosphorylase activity increased about ten fold. The increased glycogen phosphorylase activity and glycogen depletion indicate a greater glycogenolytic capacity in liver parenchyma after bile duct ligation to maintain as far as possible a normal plasma glucose concentration. The parenchymal distribution pattern of glucose-6-phosphatase activity did not change significantly after bile duct ligation. The isolated hepatocytes within the expanded portal tracts showed a high activity of this enzyme whereas the pericentral parenchyma was only moderately active. The distribution patterns of glucose-6-phosphate dehydrogenase and lactate dehydrogenase activity in the liver parenchyma were also largely unchanged after bile duct ligation, but the histochemical reaction for glucose-6-phosphate dehydrogenase activity demonstrated infiltration of the remainder of the parenchyma by non-parenchymal cells, possibly Küpffer cells and leucocytes as part of an inflammatory reaction. Under normal conditions the mitochondrial enzymes succinate and glutamate dehydrogenase show an opposite heterogenous distribution pattern in liver parenchyma. Following cholestasis both enzymes became uniformly distributed. The underlying regulatory mechanism for these different changes in distribution patterns of enzyme activities is not yet understood.  相似文献   

8.
The innervation of the liver and gallbladder of the lizard Podarcis hispanica has been studied by the following methods: a) demonstration of cholinesterase activity; b) FIF method for catecholamines; and c) immunohistochemistry for VIP. The hepatic parenchyma of the reptile's liver show hepatocytes arranged in regular rows of hepatic cords, the portal triad being typical of higher vertebrates (birds and mammals). Nerve fibers are found in the scarce connective tissue distributed among the hepatocytes. The innervation is restricted to the big branches of blood vessels and biliary ducts. It is represented by cholinergic, noradrenergic and VIPergic fibers. The gallbladder shows a well developed cholinergic plexus with pyramidal cells in the interconnection points of the fiber network. The noradrenergic and VIPergic plexuses are also more widely distributed in the gallbladder than in the liver.  相似文献   

9.
Drug delivery through the vagina is a novel and effective approach for treating embryonic diseases. Magnetic nanoparticles (MNPs) currently are used as drug delivery systems. The safety of MNPs for use with embryonic tissues remains unclear. We used pregnant mice to investigate the possible toxicity of MNPs toward neonatal liver at three embryonic ages using histochemical and immunohistochemical techniques. MNPs were instilled through the vaginas of pregnant mice at days 12 (E12), 15 (E15) and 17 (E17) after fertilization. We found MNPs in the neonatal liver parenchyma after delivery of the pups on day 20. We observed that MNPs caused mild apoptosis of hepatocytes, cytoplasmic vacuolation and lymphocytic infiltration in the neonatal liver after treatment at E15 compared to instillation at E12 and E17. We observed also that MNPs increased the production of caspase proteins and tumor necrosis factor receptor 2 proteins, which are indicators of apoptosis, in the neonatal liver after instillation of MNPs at E15 compared to instillation at E12 and E17. MNPs also increased the number of collagen fibers and the amounts of connective tissue growth factors in the neonatal liver parenchyma after instillation at E15 compared to instillation at E12 and E17. The general carbohydrates in the neonatal liver were decreased in a time-dependent manner after instillation at E17, E15 and E12 owing to the presence of MNPs in the parenchyma. Overall, we determined that MNPs were mildly toxic to neonatal liver.  相似文献   

10.
1--The innervation of the liver and gallbladder of Rana ridibunda has been studied by the following methods: (a) demonstration of cholinesterase activity; (b) FIF method for catecholamines; (c) immunohistochemistry for VIP and (d) electron microscopy. 2--The hepatocytes are arranged in regular rows of hepatic cords, very little connective tissue is distributed in the parenchyma, the innervation being restricted to the big branches of blood vessels. 3--Well defined cholinergic and adrenergic plexuses surround the hepatic arteries, portal veins and biliary ducts. The VIPergic innervation is scarce in the liver but a richly branched plexus spreads in the wall of the gallbladder. 4--Cholinesterase-positive cells are widely distributed accompanying the nerve trunks of the gallbladder. The innervation distribution is prominent in the portion of the gallbladder next to the hepatic hilus. 5--A population of melanin-storing cells besides free melanin granules are present in the liver parenchyma and are prominent in the gallbladder where the melanocytes are disposed in close contact with blood vessels and nerve structures. We have observed that the number of these visceral melanocytes considerably increases in winter, particularly in the liver.  相似文献   

11.
The form of the malaria parasite inoculated by the mosquito, called the sporozoite, transforms inside the host liver into thousands of a new form of the parasite, called the merozoite, which infects erythrocytes. We present here a protocol to visualize in vivo the behavior of Plasmodium berghei parasites in the hepatic tissue of the murine host. The use of GFP-expressing parasites and a high-speed spinning disk confocal microscope allows for the acquisition of four-dimensional images, which provide a time lapse view of parasite displacement and development in tissue volumes. These data can be analyzed to give information on the early events of sporozoite penetration of the hepatic tissue, that is, sporozoite gliding in the liver sinusoids, crossing the sinusoidal barrier, gliding in the parenchyma and traversal of hepatocytes, and invasion of a final hepatocyte, as well as the terminal events of merosome and merozoite release from infected hepatocytes. Combined with the use of mice expressing fluorescent cell types or cell markers, the system will provide useful information not only on the primary infection process, but also on parasite interactions with the host immune cells in the liver.  相似文献   

12.
Study of the histology and ultrastructure of the hepatopancreas of the tigerfish, Hydrocynus forskahlii shows that the liver parenchyma is divided into irregularly shaped lobules, separated by the exocrine pancreas and associated connective tissue. The hepatocytes are arranged in interconnecting cords or laminae, two to three cell layers in thickness. Sinusoids separate the laminae. The spherical to oval-shaped hepatocytes contain large, round, centrally situated nuclei with prominent nucleoli. The cytoplasm of the hepatocytes contains abundant rough and smooth endoplasmic reticulae, free polysomes, and mitochondria. Exocrine pancreatic tissue is scattered throughout the liver. This tissue is encapsulated by an endothelium resting on a thin layer of connective tissue and is separated from the liver parenchyma by a sinusoid. The nuclei of the exocrine pancreas cells are spherical, basally situated within the cells, and contain dark nucleoli. Vesicular rough endoplasmic reticulae and secretory granules lie in the apical regions of the exocrine pancreas cells. © 1996 Wiley-Liss, Inc.  相似文献   

13.
The distribution co-activity of thiol proteinases (cathepsin B and cathepsin H) was investigated in normal and cirrhotic liver by the electron-cytochemical method. The reaction product was localized on lysosomes of Kupffer's cells, hepatocytes, endotheliocytes and fibroblasts. Extracellular activity of thiol proteinases was revealed in normal as well as in cirrhotic liver. The reaction product was situated on collagen fibrils near hepatocytes and connective tissue cells. The results evidence that besides participation in intracellular degradation of different proteins, thiol proteinases are secreted by hepatocytes and connective tissue cells of the liver to the intercellular space and can take part in extracellular collagen resorption.  相似文献   

14.
通过常规石蜡切片技术对2例猫儿山小鲵(Hynobius maoershanens)肝进行组织学观察。结果显示,猫儿山小鲵肝分为两叶,右叶稍大于左叶。肝组织结构主要由被膜、中央静脉、门管区和肝细胞组成。门管区的小叶间静脉和小叶间胆管清晰可见,但小叶间动脉不易观察。肝内结缔组织少,肝小叶之间界限不清。肝细胞索围绕中央静脉呈放射状排列,但放射状不明显。肝实质中含有大量清晰可见的棕黑色色素团,可能与此物种对低氧环境的适应有关。  相似文献   

15.
Liver tissue from 12 different mammalian species was studied with a fluorescence histochemical technique for the cellular localization of amines (Falck-Hillarp technique) and with a chemical method for the determination of norepinephrine (HPLC-technique). Adrenergic nerve plexus were found in interlobular blood vessels derived from the portal vein and hepatic artery. Varicose adrenergic nerve fibres were, generally, seen to branch from the fibres around the blood vessels and to enter the liver parenchyma, where they formed a randomly distributed intralobular network. The density of these intralobular fibres showed marked species variation. Human liver and liver from the rhesus monkey, baboon, cynomolgus monkey and guinea pig showed a high density of parenchymal adrenergic nerves. Rabbit, cat, pig, cow and horse liver formed an intermediate group, having fewer varicose adrenergic nerve fibres but an unequivocal distribution of these nerves to the liver parenchyma. In rat and mouse liver no parenchymal innervation could be demonstrated. The density of the parenchymal innervation generally correlated with the concentration of norepinephrine in the liver tissue.  相似文献   

16.
Changes in the total activity of acid phosphatase in the liver as well as changes in the enzyme activity in hepatocytes and connective tissue cells of fibrosis layers were investigated, using quantitative histochemical method, in the process of mouse cirrhosis involution. After discontinuation of CCl4 injection, the animals with cirrhosis were divided into two groups. In the first group the resection of the left lobe of the liver was performed. The animals of the second group were not subject to operation. The results demonstrate that there is a close correlation between lysosomal hydrolase activity of hepatocytes and connective tissue cells of the liver and collagen resorption during cirrhosis involution. The most intensive lysis of collagen takes place within the first three weeks of cirrhosis involution in both experimental groups. Partial resection in cirrhosis has no significant effect on the changes and level of total activity of lysosomal hydrolase enzymes in the liver during cirrhosis involution.  相似文献   

17.
Summary In the livers of rats fed the azo dye 4-dimethylamino-azobenzene, nucleic acids in connective tissue trabeculae, preneoplastic foci and hepatomas were found to stain intensely with toluidine blue. With the indicator dye bromphenol blue, proteins were observed to stain similarly in these hyperbasophilic tissues but differently from those in surrounding parenchyma.These observations indicate that preneoplastic regions and tumors do not differ from surrounding tissue only by the increased basophilia due to cytoplasmic ribonucleic acid, but also in protein staining. Thus, the change in RNA responsible for hyperbasophila is paralleled by alterations in protein histochemistry. It is suspected that the differential staining of proteins might correspond either to variations in the acidic-basic protein ratios or to the presence of unusual proteins synthesized by such an altered RNA.The tissue similarities in nucleic acid as well as in protein staining observed in the proliferating connective tissue elements and cells undergoing the neoplastic transformation remain an obscure phenomenon.This work was supported by a grant from The Quebec Medical Research Council.  相似文献   

18.
目的研究西藏小型猪肾脏的组织结构,为其在生物医药领域中的应用提供形态学依据。方法取西藏小型猪肾脏标本投入10%中性福尔马林溶液固定24 h以上,修块,冲洗,脱水,透明,包埋,常规石蜡切片,HE染色,光镜观察拍照。结果西藏小型猪的肾与人肾一样呈长而扁的菜豆形,是表面光滑的多乳头肾,肾的表面有致密的结缔组织构成的被膜,肾实质可分为皮质和髓质,由数百万个肾单位和泌尿小管组成,其间由少量结缔组织、血管和神经等构成肾间质。结论西藏小型猪的肾脏结构比犬和猴更接近于人类,在异种器官移植、药物临床前安全性评价等生物医药领域中具有重要应用前景。  相似文献   

19.
Structurally the boundary tissue of the vampire bat seminiferous tubuli showed 2 to 5 layers of connective tissue in which elongated contractile cells and lamellar and/or fibrillar collagen were noticed. This boundary tissue forms the seminiferous tubular lamina propria. Its structure was more complex around the seminiferous tubuli near the Capsula testicularis than between the adjacent and contiguous tubuli into the testicular lobuli. The whole ultrastructural organization of the seminiferous lamina propria was described here.  相似文献   

20.
Morphological changes and regeneration activity of rat liver after experimental myocardial infarction (MI) caused by a permanent left coronary artery occlusion were investigated. It was shown that, 6 months after MI, considerable changes were observed in the rat liver circulatory system: the vessel amount per unit area increased by 118%, the thickness of their walls increased by 19%, and the average area of vessel lumens increased by 159%. The contribution of connective tissue 6 months after MI increased by more than one- and-a-half times in comparison with control. Inflammatory and necrotic changes in rat liver remained for 6 months after MI. The liver injury caused by MI leads to activation of regeneration processes in its parenchyma. Six months after MI, the number of 4c-hepatocytes decreased by 12% in comparison with control and the number of 4c×2- and 8c-hepatocytes increased by 45 and 71%, respectively. Six months after MI, the hepatocyte ploidy increased by 11%. In this period, the dry mass of rat hepatocytes increased by 19%. Thus, liver regeneration after MI is stipulated by hepatocyte hypertrophy rather than their polyploidization.  相似文献   

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