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H Stocker

Publications and source records attributed to H Stocker.

At least 19 recordsLinked to original sources

Comparison of sodium bicarbonate and carbicarb for the treatment of metabolic acidosis in newborn calves.

Carbicarb (an equimolar mixture of sodium bicarbonate and sodium carbonate) was compared with sodium bicarbonate alone for the treatment of acidosis in newborn calves: 25 of 49 calves with a blood pH at birth of less than 7-2 and a base deficit of less than -3 mmol/litre were treated intravenously with sodium bicarbonate and 24 were treated with carbicarb. The doses were calculated on the basis of the base deficit in a blood sample taken 10 minutes after birth, and further blood samples were taken immediately after the treatment and 30 and 60 minutes after the treatment for the determination of acid-base status, blood gases and haematological and biochemical variables. Both treatments resulted in a significant increase in blood pH, but there was no difference between them. The mean (sd) blood pH before treatment was 7.09 (0.02) and after treatment it was 7.28 (0.01). There was no increase in the partial pressure of carbon dioxide after treatment with either sodium bicarbonate or carbicarb. Both treatments were associated with an increase in sodium concentration and decreases in the total erythrocyte count, haematocrit and haemoglobin concentration.

Acidosis↗

Long-term pharmacokinetics of amprenavir in combination with delavirdine in HIV-infected children.

Five heavily pretreated HIV-infected children were put on amprenavir and delavirdine plus two nucleoside inhibitors to reverse transcriptase to boost amprenavir levels and to use the antiretroviral activity of a non-nucleoside reverse transcriptase inhibitor. No data are available about this combination in children. It w;as well tolerated, and the median reduction in viral load was 1.5 log after 18 months. Delavirdine boosted amprenavir trough levels more than 10-fold, and delavirdine trough levels remained i several fold above susceptible HIV strains.

Adolescent↗

[Sonographic examinations of the intestines in calves].

The aim of this investigation was to describe the normal ultrasonic appearance of the intestinal loops of calves at different stages of their adolescence and at various intervals after suckling and to determine reliable reference values. Therefore the abdomen of 20 clinically healthy calves have been examined with a 5 MHz sector probe on the right and left flank of each animal and the exact position, the largest diameter, the thickness of the walls, the peristaltic activity and the appearance of the contents of each part of the intestines described. Most often, the pars cranialis duodeni could be seen ventral of the right costal arch as well as in the right flank, with younger calves it also showed in the left flank sometimes. The position could be changed considerably depending on the period elapsed since the last suckling time. The duodenum descendens and the duodenum ascendens could be traced in the right flank. The thickness of the wall was found to measure between 2 and 3 mm throughout the whole duodenum. The examination of the jejunum and the ileum was basically done in the right flank. In cases where the rumen was not yet fully developed visualization was also possible in the left flank. Most often these parts were seen in cross-section displaying permanent peristaltic activity. With the younger calves the large intestine could equally be traced in both flanks. In older animals it could be recognized as voluminous hollow organ filled with gas, or in case of the colon ascendens as garlandshape. In the jejunum and ileum as well as in the large intestine the thickness of the wall measured between 1 and 2 mm. Each part of the intestine showed an increase in diameter as the calves grew older. The peristaltic activity increased during two hours after suckling and during this time the echoing level of the contents was lower.

Age Factors↗

atonal is required for exoskeletal joint formation in the Drosophila auditory system.

Hearing relies on the delicate arrangement of mechanoreceptor neurones and an acoustomechanical interface. The concerted action of these neural and non-neural components is essential to audition, raising the question of whether they also develop in a concerted way. Drosophila hears with its antennae. A specialized antennal joint allows the distal part of the antenna to vibrate in response to sound and, thus, to serve as the sound receiver. This receiver's vibration is transduced by a chordotonal sense organ (CHO) that is closely associated with the joint. Here, we report that atonal (ato), the proneural gene for CHOs, is required for the formation of this antennal joint. Biophysical measurements in hemi- and homozygous ato(1) mutant flies show that, in addition to eliminating the auditory CHO, loss of ato function makes the antennal receiver insensitive to sound, impairing its auditory function. Anatomically, the cause for this mechanical effect resides in the deprivation of mobile exoskeletal joint structures. Hence, ato, the homologue of mouse Math1, is required for the formation of both the auditory CHO and joint, providing a genetic link between the very neural and exoskeletal components that together transform fly antennae into ears.

Acoustic Stimulation↗

[Reference values in the cerebrospinal fluid of calves between four and eight weeks of age].

Reference values for the following parameters were established in the cerebrospinal fluid of 27 calves between four and eight weeks of age: specific weight, protein concentration, erythrocyte count, total leucocyte count with cell differentiation, creatin kinase activity, glucose and sodium. If possible, the findings were compared with those of other authors in calves and adult bovines. With 24.3 cells per microliter the 90% quantile of the total leucocyte count was seated significantly above comparable values for adult bovines. Hence, in individual cases markedly higher leucocyte counts can be expected in the cerebrospinal fluid of calves. In agreement with other authors, the protein concentration in calves was lower than in adult bovines. The reference range for creatin kinase activity was increased whereas the one for sodium was only slightly increased compared to earlier investigations in calves and in adult bovines.

Animals↗

PDK1 regulates growth through Akt and S6K in Drosophila.

The insulin/insulin-like growth factor-1 signaling pathway promotes growth in invertebrates and vertebrates by increasing the levels of phosphatidylinositol 3,4,5-triphosphate through the activation of p110 phosphatidylinositol 3-kinase. Two key effectors of this pathway are the phosphoinositide-dependent protein kinase 1 (PDK1) and Akt/PKB. Although genetic analysis in Caenorhabditis elegans has implicated Akt as the only relevant PDK1 substrate, cell culture studies have suggested that PDK1 has additional targets. Here we show that, in Drosophila, dPDK1 controls cellular and organism growth by activating dAkt and S6 kinase, dS6K. Furthermore, dPDK1 genetically interacts with dRSK but not with dPKN, encoding two substrates of PDK1 in vitro. Thus, the results suggest that dPDK1 is required for dRSK but not dPKN activation and that it regulates insulin-mediated growth through two main effector branches, dAkt and dS6K.

3-Phosphoinositide-Dependent Protein Kinases↗

Extension of life-span by loss of CHICO, a Drosophila insulin receptor substrate protein.

The Drosophila melanogaster gene chico encodes an insulin receptor substrate that functions in an insulin/insulin-like growth factor (IGF) signaling pathway. In the nematode Caenorhabditis elegans, insulin/IGF signaling regulates adult longevity. We found that mutation of chico extends fruit fly median life-span by up to 48% in homozygotes and 36% in heterozygotes. Extension of life-span was not a result of impaired oogenesis in chico females, nor was it consistently correlated with increased stress resistance. The dwarf phenotype of chico homozygotes was also unnecessary for extension of life-span. The role of insulin/IGF signaling in regulating animal aging is therefore evolutionarily conserved.

Aging↗

An evolutionarily conserved function of the Drosophila insulin receptor and insulin-like peptides in growth control.

BACKGROUND: Size regulation is fundamental in developing multicellular organisms and occurs through the control of cell number and cell size. Studies in Drosophila have identified an evolutionarily conserved signaling pathway that regulates organismal size and that includes the Drosophila insulin receptor substrate homolog Chico, the lipid kinase PI(3)K (Dp110), DAkt1/dPKB, and dS6K. RESULTS: We demonstrate that varying the activity of the Drosophila insulin receptor homolog (DInr) during development regulates organ size by changing cell size and cell number in a cell-autonomous manner. An amino acid substitution at the corresponding position in the kinase domain of the human and Drosophila insulin receptors causes severe growth retardation. Furthermore, we show that the Drosophila genome contains seven insulin-like genes that are expressed in a highly tissue- and stage-specific pattern. Overexpression of one of these insulin-like genes alters growth control in a DInr-dependent manner. CONCLUSIONS: This study shows that the Drosophila insulin receptor autonomously controls cell and organ size, and that overexpression of a gene encoding an insulin-like peptide is sufficient to increase body size.

Amino Acid Sequence↗

The peptides of alpha-aminosuberic acid II. Synthesis of deamino-dicarba-eel-calcitonin sequence 1-9.

The paper describes the synthesis of Asu6-octapeptide derivatives by condensing two alternative pentapeptide fragments with Asu-containing tripeptides. After partial deprotection these linear peptides compounds are subject to cyclization experiments aimed to give the N-terminal [1-9] sequence of deamino-dicarba-eel calcitonin. This is a key substance for the semi-synthesis of the respective analogues of eel calcitonin.

Amino Acid Sequence↗

Ras controls growth, survival and differentiation in the Drosophila eye by different thresholds of MAP kinase activity.

Ras mediates a plethora of cellular functions during development. In the developing eye of Drosophila, Ras performs three temporally separate functions. In dividing cells, it is required for growth but is not essential for cell cycle progression. In postmitotic cells, it promotes survival and subsequent differentiation of ommatidial cells. In the present paper, we have analyzed the different roles of Ras during eye development by using molecularly defined complete and partial loss-of-function mutations of Ras. We show that the three different functions of Ras are mediated by distinct thresholds of MAPK activity. Low MAPK activity prolongs cell survival and permits differentiation of R8 photoreceptor cells while high or persistent MAPK activity is sufficient to precociously induce R1-R7 photoreceptor differentiation in dividing cells.

Animals↗

Genetic control of size in Drosophila.

During the past ten years, significant progress has been made in understanding the basic mechanisms of the development of multicellular organisms. Genetic analysis of the development of Caenorhabditis elegans and Drosophila has unearthed a fruitful number of genes involved in establishing the basic body plan, patterning of limbs, specification of cell fate and regulation of programmed cell death. The genes involved in these developmental processes have been conserved throughout evolution and homologous genes are involved in the patterning of insect and human limbs. Despite these important discoveries, we have learned astonishingly little about one of the most obvious distinctions between animals: their difference in body size. The mass of the smallest mammal, the bumble-bee bat, is 2 g while that of the largest mammal, the blue whale, is 150 t or 150 million grams. Remarkably, even though they are in the same class, body size can vary up to 75-million-fold. Furthermore, this body growth can be finite in the case of most vertebrates or it can occur continuously throughout life, as for trees, molluscs and large crustaceans. Currently, we know comparatively little about the genetic control of body size. In this article we will review recent evidence from vertebrates and particularly from Drosophila that implicates insulin/insulin-like growth factor-I and other growth pathways in the control of cell, organ and body size.

Animals↗

The peptides of alpha-aminosuberic acid I. New intermediates for synthetic studies.

The paper describes the synthesis of alpha-aminosuberic acid derivatives suitable for the synthesis of peptides. These include Z-, Boc- and Fmoc-protection on the alpha-amino group, benzyl ester, Boc-hydrazide and Z-hydrazide as well as the free carboxylic function in the side chain, and methyl ester, benzyl ester or free alpha-carboxylic group. Their use is demonstrated on the synthesis of the respective derivatives of Asu-Val-Leu. The enzyme catalyzed reaction was successfully used both as a route to L-Asu from the D,L-compound as well as for the direct synthesis of the optically active tripeptide derivative from the Z-D,L-Asu-OH.

Amino Acids, Dicarboxylic↗

Genetic control of cell size.

Over the past 25 years, the genetic control of cell size has mainly been addressed in yeast, a single-celled organism. Recent insights from Drosophila have shed light on the signalling pathways responsible for adjusting and maintaining cell size in metazoans. Evidence is emerging for a signalling cascade conserved in evolution that links external nutrient sources to cell size.

Animals↗

[Bovine herpes mammillitis: clinical symptoms and serologic course].

Bovine herpes mammillitis was diagnosed in a dairy herd with udder and teat skin lesions. Clinical symptoms seen in 6 cows consisted of round dry areas at the teats as well as large red and painful areas with crust formation at the teats, the teat basis and the udder. Diagnosis was verified by demonstrating numerous virus particles with the typical herpes structure and by BHV-2 serum neutralization test. Prevalence of BHV-2 in the herd was determined by using BHV-2 SNT at 7 occasions during a period of 15 months. The relatively low BHV-2 SNT-titres as well as the seasonal increase of BHV-2 titres and seroprevalence in the month of September were indicative of a chronic and latent BHV-2 infection in the herd.

Animals↗

Drosophila S6 kinase: a regulator of cell size.

Cell proliferation requires cell growth; that is, cells only divide after they reach a critical size. However, the mechanisms by which cells grow and maintain their appropriate size have remained elusive. Drosophila deficient in the S6 kinase gene (dS6K) exhibited an extreme delay in development and a severe reduction in body size. These flies had smaller cells rather than fewer cells. The effect was cell-autonomous, displayed throughout larval development, and distinct from that of ribosomal protein mutants (Minutes). Thus, the dS6K gene product regulates cell size in a cell-autonomous manner without impinging on cell number.

Animals↗

Acid-base disorders in milk-fed calves with chronic indigestion.

Acid-base disorders were investigated in 50 calves with chronic indigestion and metabolic acidosis. In the calves that were unable to stand up, the acidosis was significantly more severe than in the calves that could stand up. The anion gap and four different components of the base excess were calculated by the method described by Fencl. The anion gap was high in more than half of the calves, and it was significantly associated with the base excess due to unidentified anions. However, in seven of the calves, the excess of unidentified anions would not have been detected without the calculations, which made it possible to measure the effect of sodium, chloride, plasma protein and unidentified anions on the acid-base balance. Twenty-four of the calves had a combination of hyperchloraemic and high anion gap metabolic acidosis. Changes in sodium and plasma protein concentrations had a minor impact on the calves' acid-base status.

Acid-Base Equilibrium↗

Clinical, haematological and biochemical findings in milk-fed calves with chronic indigestion.

The principal clinical signs in 59 milk-fed calves with chronic indigestion were general malaise and depression, poor appetite, poor body condition, dehydration, a dull and scaly hair coat, alopecia and clay-like faeces. All the calves had metabolic acidosis, which was associated with an inability to stand up in more than half of them. There were significant differences in the severity of acidosis between the calves that could stand and those that could not. Other signs in some of the calves were dehydration, leucocytosis, and increased activities of liver enzymes.

Acidosis↗

Autonomous control of cell and organ size by CHICO, a Drosophila homolog of vertebrate IRS1-4.

The control of growth is fundamental to the developing metazoan. Here, we show that CHICO, a Drosophila homolog of vertebrate IRS1-4, plays an essential role in the control of cell size and growth. Animals mutant for chico are less than half the size of wild-type flies, owing to fewer and smaller cells. In mosaic animals, chico homozygous cells grow slower than their heterozygous siblings, show an autonomous reduction in cell size, and form organs of reduced size. Although chico flies are smaller, they show an almost 2-fold increase in lipid levels. The similarities of the growth defects caused by mutations in chico and the insulin receptor gene in Drosophila and by perturbations of the insulin/IGF1 signaling pathway in vertebrates suggest that this pathway plays a conserved role in the regulation of overall growth by controling cell size, cell number, and metabolism.

Amino Acid Sequence↗