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Biomedical subjects

B Hennig

Publications and source records attributed to B Hennig.

At least 109 records · Page 6Linked to original sources

[Gas chromatographic determination of nitroglycerin in human plasma].

A selective and sensitive method for the determination of nitroglycerin in human plasma is described. The drug and 1,3-dinitrobenzene as internal standard were extracted from plasma with n-hexane followed by a concentration step. A further cleaning of extract is not necessary. Measurements are made by GLC on a packed OV-17/QF-1 column using electron capture detection. The standard curve for the determination of nitroglycerin was linear over the concentration range from 0.2 to 30 ng/ml plasma. The detection limit was 0.1 ng/ml. The assay may be used for pharmacokinetic studies as well as drug monitoring in the clinical laboratory.

Chromatography, Gas↗

[The stability of hydrochlorothiazide and cyclopenthiazide in various dosage forms. 4. Stability of hydrochlorothiazide injection solutions II].

The hydrolytic decomposition of hydrochlorothiazide (1) in an optimized dispensing with polyethyleneglycol 400/ethanol as solvent led to an equilibrium in the isothermic short-term test as well as in the long-term stability test. Corresponding equilibrium concentrations were obtained for forward and back reaction. When comparing the precalculated equilibrium values with the long-term results the evaluation after Van't Hoff proved superior compared with an evaluation after the Arrhenius plot which is only applicable when the equilibrium concentrations are taken into consideration. By adding the decomposition product aminodisulfamide (2) the hydrolysis of 1 can be inhibited completely.

Cyclopenthiazide↗

Linoleic acid hydroperoxide increases the transfer of albumin across cultured endothelial monolayers.

Exposure to albumin-bound linoleic acid (60 to 150 microM) for 24 h significantly increased the rate of albumin transfer across cultured endothelial monolayers. The increase was dependent on the linoleic acid (18:2) concentration to which the cultures were exposed. Linoleic acid hydroperoxide (18:2-OOH) further accelerated the rate of albumin transfer over that of 18:2. A near maximum albumin transfer was observed after a 2-h incubation with 90 microM 18:2-OOH. Cells exposed to 18:2-OOH caused a marked release of lactate dehydrogenase into the media. On the other hand, 18:2 at concentrations as high as 150 microM, did not significantly affect lactate dehydrogenase release. These results suggest that exposure to 18:2, and in particular to 18:2-OOH, reduces the ability of the endothelium to act as a selective permeability barrier to plasma components.

Animals↗

[The stability of hydrochlorothiazide and cyclopenthiazide in various dosage forms. 3. Stability of hydrochlorothiazide injection solutions].

Studies of the stability of hydrochlorothiazide (1) in N-methylacetamide prove that a temperature dependent equilibrium is found in the isothermic short-term test as well as in the longterm stability test. Whereas the kinetic reaction evaluation after Arrhenius doesn't allow a forecast, the 25 degrees C-values, extrapolated after the Van't Hoff-equation, were confirmed using the long-term test. By adding the decomposition product aminodisulfamide (2) the hydrolysis is restricted.

Cyclopenthiazide↗

Exposure to fatty acid increases human low density lipoprotein transfer across cultured endothelial monolayers.

Human low density lipoproteins radiolabeled with 125I transfer across confluent monolayers of cultured porcine pulmonary artery endothelial cells. The amount transferred was dependent on the low density lipoprotein concentration and was not saturable at concentrations up to 300 micrograms protein per 0.5 ml medium. Gel filtration showed that more than 90% of the 125I which crossed the endothelial monolayer remained associated with low density lipoproteins, indicating that appreciable amounts of lipoprotein were not degraded during the transfer process. When the endothelial monolayer was exposed for 24 hours to culture media supplemented with 100-300 microM fatty acid complexed with 100 microM albumin, the amount of low density lipoprotein subsequently transferred increased by 65% to 150%. The extent of the increase was dependent on the type of fatty acid added and its concentration. At 200 microM, albumin-bound oleic and linoleic acids increased low density lipoprotein transfer, whereas palmitic, linolenic, arachidonic, and eicosapentaenoic acids did not. These results are consistent with the hypothesis that exposure of the endothelium to elevated concentrations of fatty acid may allow excessive amounts of cholesterol-rich lipoproteins to enter the arterial intima.

Animals↗

[The stability of hydrochlorothiazide and cyclopenthiazide in various drug forms. 2. The stability of Disalunil tablets].

Checking-up the stability of hydrochlorothiazid tablets (Disalunil), chemical and especially pharmaceutical-technological analyses were forming part of the adequate test programme. The pharmaceutical and chemical properties of the Disalunil tablets will be regarded as sufficient ones at normal conditions of their storage. In case the tablets will be stored, however, in their original packing under conditions of an increased humidity or with additional water, the water sorption will result in prolonged disintegration rates as well as in a reduced radial breaking strength and dissolution rate. This significant depreciation of the drug cannot be recognized by chemical-analytical methods.

Cyclopenthiazide↗

Transport of the precursor to neurospora ATPase subunit 9 into yeast mitochondria. Implications on the diversity of the transport mechanism.

Isolated yeast mitochondria were able to take up Neurospora ATPase subunit 9 in vitro although the homologous yeast protein is synthesized within the mitochondria and inserted into the membrane from the matrix side (Tzagoloff, A., and Meagher, P. (1972) J. Biol. Chem. 247, 594-603). The transfer of the protein was dependent on an energized mitochondrial inner membrane. It was accompanied by proteolytic processing of the precursor to the mature protein with the correct NH2 terminus as determined by Edman degradation of the transferred protein. The possibility is discussed that there are common features in the uptake machinery neither specific for one species nor specific for individual precursor proteins in the same species.

Adenosine Triphosphatases↗

Receptor sites involved in posttranslational transport of apocytochrome c into mitochondria: specificity, affinity, and number of sites.

Assembly of cytochrome c involves a series of steps: synthesis of apocytochrome c on free ribosomes, specific binding of apocytochrome c to the mitochondrial surface, transfer across the outer membrane, covalent addition of protoheme, refolding of the polypeptide chain, and association of holocytochrome c with its functional sites at the inner membrane. The binding step of apocytochrome c to Neurospora crassa mitochondria was studied by inhibiting the subsequent transfer steps with the heme analogue deuterohemin. The binding sites are highly specific for mitochondrial apocytochromes c. Bound labeled Neurospora apocytochrome c was competitively displaced by unlabeled apocytochrome c from various species. These exhibited different abilities for displacement. Apocytochrome c from Paracoccus denitrificans, the amino-terminal (heme-binding) fragment of Neurospora apocytochrome c, and Neurospora holocytochrome c did not recognize the binding sites. Polylysine did not interfere with apocytochrome c binding. Apocytochrome c is reversibly bound. The binding sites are present in limited number. High-affinity binding sites were present at about 90 pmol/mg of mitochondrial protein. They displayed an association constant of 2.2 X 10(7) M-1. Apocytochrome c was imported into mitochondria and converted to holocytochrome c directly from the binding sites when inhibition by deuterohemin was relieved. We conclude that the apocytochrome c binding sites on mitochondria represent receptors that function in the recognition and import of this precursor by mitochondria.

Animals↗

Biosynthetic pathway of mitochondrial ATPase subunit 9 in Neurospora crassa.

Subunit 9 of mitochondrial ATPase (Su9) is synthesized in reticulocyte lysates programmed with Neurospora poly A-RNA, and in a Neurospora cell free system as a precursor with a higher apparent molecular weight than the mature protein (Mr 16,400 vs. 10,500). The RNA which directs the synthesis of Su9 precursor is associated with free polysomes. The precursor occurs as a high molecular weight aggregate in the postribosomal supernatant of reticulocyte lysates. Transfer in vitro of the precursor into isolated mitochondria is demonstrated. This process includes the correct proteolytic cleavage of the precursor to the mature form. After transfer, the protein acquires the following properties of the assembled subunit: it is resistant to added protease, it is soluble in chloroform/methanol, and it can be immunoprecipitated with antibodies to F1-ATPase. The precursor to Su9 is also detected in intact cells after pulse labeling. Processing in vivo takes place posttranslationally. It is inhibited by the uncoupler carbonylcyanide m-chlorophenylhydrazone (CCCP). A hypothetical mechanism is discussed for the intracellular transfer of Su9. It entails synthesis on free polysomes, release of the precursor into the cytosol, recognition by a receptor on the mitochondrial surface, and transfer into the inner mitochondrial membrane, which is accompanied by proteolytic cleavage and which depends on an electrical potential across the inner mitochondrial membrane.

Adenosine Triphosphatases↗

Lipoprotein lipid and protein responses to dietary fat and diabetes in rats.

Dietary and insulin-deficiency types of hyperlipidemia were compared in adult normal and streptozotocin-induced diabetic male breeder rats. High beef tallow, high corn oil or low fat diets (BT, CO and LF, respectively) were fed ad libitum for 2 months. Glucose and insulin were measured in plasma and total cholesterol, free cholesterol, cholesteryl ester, triglycerides and apoproteins in very low density, low density and high density lipoproteins (VLDL, LDL and HDL, respectively). Diet did not affect plasma glucose or insulin levels. LDL-triglycerides were higher in BT and diabetic than in CO and LF rats. HDL-free cholesterol levels were higher in CO- and LF-than in BT-fed rats. Diabetes resulted in a decrease in HDL-cholesterol. Diabetic animals had higher HDL-apoA-I (apolipoprotein A-I) levels than did CO- and LF- but not BT-fed rats. VLDL-triglycerides were higher in diabetic than in normal rats, with no dietary differences in normal rats. In LDL, apoB levels were lower and apoE levels were higher in LF-fed rats than in animals fed high fat diets. Diabetes resulted in an increase in LDL-apoB but a decrease in LDL-apoE. HDL-apoE levels were higher, although HDL-apoA-I levels were lower in LF than in high fat-fed rats. The results related to lipoprotein composition supported the hypothesis that excess intake of a diet high in saturated fat may contribute to a metabolic pattern that resembles that of a diabetic state.

Animals↗

Effects of diet composition and fasting on glucose turnover in lean and polygenic obese mice.

Effects of high beef tallow (BT), high corn oil (CO) or low-fat (LF) diets upon the outcome of genetic obesity were investigated. Diets were instituted ad libitum at the time of weaning. When mice were six months of age, blood samples were taken 1, 5, 15, 30, and 60 minutes after intravenous injection of glucose-U-14C. Within dietary treatments, obese and lean mice showed similar plasma glucose-U-14C disappearance patterns. Plasma glucose disappearance always tended to be faster in ad libitum-fed mice relative to 24-hour fasted mice. Body glucose pool sizes tended to be larger in fed obese BT and LF mice compared to their lean counterparts. This pattern was not seen in non-fasted CO mice. Fasting caused a decrease in body glucose pool sizes in all mice. In contrast to CO and LF mice, lean BT mice appeared to conserve glucose during fasting the same as the obese line. Since the glucose disappearance curves can be described by a two-exponential decay function, at least a two-component or two-pool system must be involved in plasma glucose turnover. Calculated rate constants were used to express interchanges of carbon molecules between the glucose and glycogen pool and the net movement of glucose carbon to a carbon pool representing "irreversible end products". The data indicate that differences in glucose metabolism, in part, explain the possibility that dietary energy source can overcome the genetic tendency to leanness.

Animals↗

1H NMR studies of eukaryotic cytochrome c. Resonance assignments and iron-hexacyanide-mediated electron exchange.

1H NMR resonance assignments in the spectra of horse, tuna, Neurospora crassa and Candida krusei cytochromes c are described. Assignments have been made using NMR double-resonance techniques in conjunction with electron-exchange experiments, spectral comparison of related proteins, and consideration of the X-ray structure of tuna cytochrome c. Resonances arising from 11 residues of horse cytochrome c have been assigned.

Animals↗

Different transport pathways of individual precursor proteins in mitochondria.

Transport of mitochondrial precursor proteins into mitochondria of Neurospora crassa was studied in a cell-free reconstituted system. Precursors were synthesized in a reticulocyte lysate programmed with Neurospora mRNA and transported into isolated mitochondria in the absence of protein synthesis. Uptake of the following precursors was investigated: apocytochrome c, ADP/ATP carrier and subunit 9 of the oligomycin-sensitive ATPase. Addition of high concentrations of unlabelled chemically prepared apocytochrome c (1-10 microM) inhibited the appearance in the mitochondrial of labelled cytochrome c synthesized in vitro because the unlabelled protein dilutes the labelled one and because the translocation system has a limited capacity [apparent V is 1-3 pmol X min-1 X (mg mitochondrial protein)-1]. Concentrations of added apocytochrome c exceeding the concentrations of precursor proteins synthesized in vitro by a factor of about 10(4) did not inhibit the transfer of ADP/ATP carrier or ATPase subunit 9 into mitochondria. Carbonylcyanide m-chlorophenylhydrazone, an uncoupler of oxidate phosphorylation, inhibited transfer in vitro of ADP/ATP carrier and of ATPase subunit 9, but not of cytochrome c. These findings suggest that cytochrome c and the other two proteins have different import pathways into mitochondria. It can be inferred from the data presented that different 'receptors' on the mitochondria. It can be inferred from the data presented that different 'receptors' on the mitochondrial surface mediate the specific recognition of precursor proteins by mitochondria by mitochondria as a first step in the transport process.

Adenosine Triphosphatases↗