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Biomedical subjects

Z Hruban

Publications and source records attributed to Z Hruban.

11 recordsLinked to original sources

Haematopoietic malignancies in zoo animals.

Myelogenous leukaemia was found in a Russell's viper, a Honduran milk snake, a marine toad, a Byrne's marsupial mouse and an African hedgehog. Lymphocytic leukaemia was present in a broad banded copperhead and an Indian lion. Visceral lymphomatosis was observed in a snowy owl.

Animal Diseases

Nonlysosomal cytoplasmic degradation.

Several types of cytoplasmic and nuclear inclusions represent stages in the process of non-lysosomal cytoplasmic degradation. Nonlysosomal degradation takes place in regions where cytoplasmic components are trapped and not accessible to primary and secondary lysosomes. Such trapping occurs within the lumina of the nuclear envelope and of endoplasmic reticulum in the form of inverted vesicles, within the nucleus, within mitochondria and within cavities formed by the process of topolysis in neutral lipid droplets. The concept of the process of nonlysosomal degradation permits dynamic interpretation of various inclusions as the concept of the process of focal cytoplasmic degration (autophagy) leads to dynamic interpretation of the lysosome.

Animals

Macromolecular synthetic activity in mice regenerating liver after ethylnitrosourea injection.

The present report is a continuation of our previous studies on the biochemical mechanisms of carcinogenesis; studying the nature of interactions taking place between Ethylnitrosourea and DNA, RNA and protein of various stages of their synthetic activity. As a model system we chose partially hepatectomized mice live 36 hrs after surgery. Synthetic macromolecule activity in the remaining liver segment was determined by means of 3H-thymidine, 3H-uridine and 3H-leucine. We observed complete depression of DNA synthetic activity (immediately after Ethylnitrosourea administration it remained depressed almost through out the whole period of our observations) while protein synthetic activity was highly elevated. Qualitative changes of soluble proteins which were analyzed by isoelectric fractionation on 5% polyacrylamide after previous 3H- and 14C-leucine incorporation, could not be detected. Our biochemical data are correlated with histological studies and with the tumour incidence following the Ethylnitrosourea treatment of partially hepatectomized mice in the course of long-term experiments. The results provide guideline for further analysis, which should be modified according to the information concerning Ethylnitrosourea carcinogenesis induced 36 hours after partial hepatectmoy.

Animals

Effect of chlorpromazine on hepatic perfusion and bile secretory function in the isolated perfused rat liver.

The hepatotoxicity of CPZ was studied in the isolated perfused rat liver in order to more closely define possible mechanisms of phenothiazine-induced cholestasis. Perfusate concentrations of CPZ were increased from 5 x 10(-6) M to 5 x 10(-4) M until bile secretion was significantly inhibited. Measurements were then made of determinants of bile secretory function, including the magnitude of lobar distribution of perfusate flow, BAIF, and liver plasma membrane enzyme activity, Na+,K+-ATPase, Mg++-ATPase and 5'-nucleotidase. BAIF diminished significantly from control values of 1.76 +/- 0.07 microliter min-1gm-1 of liver to 1.34 +/- 0.15 and 0.80 +/- 0.09 following 2.5 and 5 x 10(-4) M CPZ, respectively. Perfusate flow also diminished from 5.64 +/- 0.44 to 1.24 +/- 0.12 ml min-1 gm-1 of liver 20 min following 5 x 10(-4) M CPZ and was associated with reduced flow to peripheral areas of the hepatic lobes as demonstrated by Tc-HAM. By 30 min, perfusate flow had returned to baseline values. CPZ also transiently diminished the excretion of bile acids in livers receiving a constant infusion of 40 mumol hr-1 sodium taurocholate. Defects in hepatic perfusion could not account entirely for the impairment in BAIF, since comparable mechanical restriction of perfusate flow in controls only diminished BAIF to 1.49 +/- 0.08 microliter min-1gm-1 of liver. CPZ signofocamt;u rediced tje secofoc actovotu pf Mg++-ATPase and 5'-nucleotidase but did not affect Na+,K+-ATPase in liver plasma membrane isolated 20 min after 5 x 10(-4) M CPZ. CPZ also resulted in a profound shift in the recovery of protein in isolated liver plasma membrane fractions from the light (density = 1.16) to heavier (density = 1.18) fractions. These findings, together with previous observations demonstrating alterations in hepatic ultrastructure, indicate that CPZ interacts in a complex manner with hepatocyte plasma and cytoplasmic membrane components and suggest that these drug-membrane interactions independently result in diminished hepatic perfusion, impairment of bile acid excretion, and inhibition of bile acid-independent bile secretion.

Adenosine Triphosphatases

Ultrastructural changes during cholestasis induced by chlorpromazine in the isolated perfused rat liver.

Addition of cholestatic doses of chlorpromazine-HC1 to the perfusate of isolated rat livers produces widespread changes in hepatocyte membrane structure. These findings include a marked increase in intrasinusoidal cytoplasmic bullae, appearance of intracellular vacuoles within hepatocytes at both sinusoidal and biliary poles, dilation of bile canaliculi and evagination of canalicular diverticuli, and the formation of myeloid bodies within hepatocytes. These findings obtained in the bile acid depleted perfused liver may result from physiochemical interactions between chlorpromazine or its metabolites and lipid-protein components of cell membranes, consistent with chlorpromazine's properties as a cationic detergent. They occur independently of the vasoconstrictive effects of chlorpromazine and suggest that chlorpromazine may produce cholestasis by altering hepatocyte membrane function.

Animals

Glomiform and fibrillar cytoplasmic inclusions.

Glomiform inclusions, also called tubular arrays in endoplasmic reticulum, are found in the epithelial cells of glandular tissues of a patient with systemic lupus erythematosus, a patient with Reye's syndrome, and a dog. Their three dimensional structure is interpreted as a skein of contorted tubules of endoplasmic reticulum. Fibrillar inclusions found in the pancreatic acinar cells of two patients are believed to represent altered zymogen granules.

Adult

Concentric nuclear inclusions.

Membrane bound concentric lamellar inclusions were found in the nuclei of pancreatic acinar cells of a patient with multiple primary neoplasms and in the parotid acinar cells of a patient with systemic lupus erythematosus. It is proposed that these inclusions form from rough cisternae sequestered in the nucleus.

Adenoma, Islet Cell

Pulmonary changes induced by amphophilic drugs.

Administration of amphophilic drugs to experimental animals causes formation of myeloid bodies in many cell types, accumulation of foamy macrophages in pulmonary alveoli, and pulmonary alveolar proteinosis. These changes are the result of an interaction between the drugs and phospholipids which leads to an alteration in physicochemical properties of the phospholipids. Impairment of the digestion of altered pulmonary secretions in phagosomes of macrophages results in accumulation of foam cells in pulmonary alveoli. Impairment of the metabolism of altered phospholipids removed by autophagy induces an accumulation of myeloid bodies. In summary, administration of amphophilic compounds causes a drug-induced lysosomal disease or generalized phospholipidosis.

Animals

Experimental porphyria induced by 3-(2,4,6-trimethylphenyl)-thioethyl)-4 methylsydnone.

Administration of 3-[2-(2,4,6-trimethylphenyl)-thioethyl]-4-methylsydnone (TTMS) induces hepatic porphyria in rats, mice and dogs. The protoporphyrin pigment in livers of rats and mice is found mainly in bile ducts and leads to bile duct proliferation and portal inflammation. Dog livers contain protoporphyrin predominantly in bile canaliculi. The birefringence of the pigment appears to be associated with bilamellar components within the pigment. The markedly depressed catalase activity in livers of rats does not increase after clofibrate administration. The catalase activity of mouse liver is depressed slightly and responds to clofibrate treatment.

Alcohol Oxidoreductases

Effect of citrate and aminotriazole on matrical plates induced in hepatic microbodies.

Feeding of acetylsalicylic acid (ASA), clofibrate and dimethrin induces formation of matrical plates in heptaic microbodies. Administration of sodium citrate prevents formation of matrical plates in rats fed ASA, but not in rats treated with clofibrate or dimethrin. Propionate has a similar effect on rats fed ASA but not those fed clofibrate. Feeding of aminotriazole prevents formation of matrical plates in rats fed ASA without inhibiting the proliferation of microbodies. Sodium citrate and aminotriazole and feeding decrease also the activity of hepatic catalase in rats fed ASA.

Amitrole

Ultrastructure of hepatocellular tumors.

The lesions that appear during hepatocarcinogenesis can be separated into morphologically distinct entities, which have been arranged into sequences believed to represent stages in carcinogenesis. Similarly, the primary and transplantable hepato-cellular carcinomas (HCC) can be arranged into a sequence of stages believed to represent the progression toward the ultimate cancer cell. Separation of morphological entities has been most successful in rat liver. Ultrastructural studies differentiate between lesions derived from hepatocytes and those originating in other cellular components of the liver. They show that there is variability and divergence in the structure of cellular organelles in the early stages of carcinogenesis, that there is simplification of cellular structure and of organelles during the progression of HCC, and that qualitative changes specific for cancer cells do not exist. Toxic changes associated with the process of carcinogenesis are loss of stacks; wrapping of cisternae around mitochondria; dilation, denudation, and vesiculation of cisternae; increase of autophagy; depletion of glycogen, and enlargement of nuclei and nucleoli. Early changes are storage of glycogen and hyperplasia of smooth endoplasmic reticulum. Subsequent alterations are increased variability in the size, shape, and structure of mitochondria and in the structure of endoplasmic reticulum, including the appearance of fingerprints. A transient stage recognizable by storage of lipid may represent a degenerative process. Ultrastructural characteristics of basophilic cells such as abundance of free ribosomes and absence of glycogen and of smooth endoplasmic reticulum suggest that they may be a stage in the formation of HCC. Progression of HCC is associated with a decrease in the number and size of mitochondria, reduction of mitochondrial cristae, decrease in the number and complexity of microbodies, reduction of the tubulovesicular form of smooth reticulum, accumulation of free ribosomes, and increase of the granular component and condensation of the fibrillar component of nucleoli. Various types of nuclear inclusions reflect the increased mitotic rate of the neoplastic tissue. Changes of the cellular surface are believed to be associated with the ability of the cells to invade and metastasize. Future investigations will require the use of single doses of potent carcinogens, application of morphometric methods at the ultrastructural level, and acceptance of primates as models for human hepatocarcinogenesis.

2-Acetylaminofluorene