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Biomedical subjects

W Hartmann

Publications and source records attributed to W Hartmann.

At least 91 records · Page 5Linked to original sources

[Diagnosis and treatment of choledochus cysts (author's transl)].

Two cases we observed initiated a survey of the literature concerning the surgical management of choledochus cysts. We compared long-term results with regard to postoperative complications, rates of necessity of reoperation and operative mortality in 316 reported cases. Resection of the choledochus cyst and a subsequent biliodigestive anastomosis performed as choledocho-jejunostomy (as outlined by Roux) is the therapy of choice in this rare disease, since it gives the best long-term results.

Adolescent↗

[Traumatic pancreatic pseudocysts in childhood (author's transl)].

Two children had extensive resection of the pancreas due to a posttraumatic pseudocyst. Function of the endocrine and exocrine pancreas was reinvestigated following surgery and found to be normal. Based upon these observations pathogenesis, clinical and therapeutical aspects of pancreatic pseudocysts in childhood are reviewed.

Blood Glucose↗

Polymyxin binding to charged lipid membranes. An example of cooperative lipid-protein interaction.

The binding of polymyxin-B to lipid bilayer vesicles of synthetic phosphatidic acid was studied using fluorescence, ESR spectroscopy and electron microscopy. 1,6-Diphenylhexatriene (which exhibits polarized fluorescence) and pyrene decanoic acid (which forms excimers) were used as fluorescence probes to study the lipid phase transition. The polymyxin binds strongly to negatively charged lipid layers. As a result of lipid/polymyxin chain-chain interactions, the transition temperature of the lipid. This can be explained in terms of a slight expansion of the crystalline lipid lattice (Lindeman's rule). Upon addition of polymyxin to phosphatidic acid vesicles two rather sharp phase transitions (width deltaT = 5 degrees C) are observed. The upper transition (at Tu) is that of the pure lipid and the lower transition (at T1) concerns the lipid bound to the peptide. The sharpness of these transitions strongly indicates that the bilayer is characterized by a heterogeneous lateral distribution of free and bound lipid regions, one in the crystalline and the other in the fluid state. Such a domain structure was directly observed by electron microscopy (freeze etching technique). In (1 : 1) mixtures of dipalmitoyl phosphatidic acid and egg lecithin, polymyxin induces the formation of domains of charged lipid within the fluid regions of egg lecithin. With both fluorescence methods the fraction of lipid bound to polymyxin-B as a function of the peptide concentration was determined. S-shaped binding curves were obtained. The same type of binding curve is obtained for the interaction of Ca2+ with phosphatidic acid lamellae, while the binding of polylysine to such membranes is characterized by a linear or Langmuir type binding curve. The S-shaped binding curve can be explained in terms of a cooperative lipid-ligand (Ca2+, polymyxin) interaction. A model is proposed which explains the association of polymyxin within the membrane plane in terms of elastic forces caused by the elastic distortion of the (liquid crystalline) lipid layer by this highly asymmetric peptide.

Calcium↗

Binding of polylysine to charged bilayer membranes: molecular organization of a lipid.peptide complex.

The interaction between a positively charged peptide (poly-L-lysine) and model membranes containing charged lipids has been investigated. Conformational changes of the polypeptide as well as changes in the membrane lipid distribution were observed upon lipid-protein agglutination: 1. The strong binding of polylysine is shown directly by the use of spinlabelled polypeptide. Upon binding to phosphatidic acid a shift in the hyperfine coupling constant from 16.5 to 14.6 Oe is observed. The spectrum of the lipid-bound peptide is superimposed on the spectrum of polylysine in solution. Half of the lysine groups are bound to the charged membranes. A change in the conformation of polylysine from a random coil to a partially ordered configuration is suggested. 2. Spin labelling of the lipid component gives evidence concerning the molecular organization of a lipid mixture containing charged phosphatitid acid. Addition of polylysine induces the formation of crystalline patches of bound phosphatidic acid. 3. Excimer forming pyrene decanoic acid has been employed. Addition of positively charged polylysine (pH 9.0) to phosphatidic acid membranes increases the transition temperature of the lipid from Tt = 50 to Tt = 62 degrees C. Thus, a lipid segregation of lipid into regions of phosphatidic acid bound to the peptide which differ in their microviscosity from the surrounding membrane is induced. One lysine group binds one phosphatidic acid molecule, but only half of the phosphatidic acid is bound. 4. Direct evidence for charge induced domain formation in lipid mixtures containing phosphatidic acid is given by electron microscopy. Addition of polylysine leads to a change in the surface curvature of the bound charged lipid. The domain size is estimated from the electron micrographs. The number of domains present is dependent on both the ratio of charged to uncharged lipids as well as on the amount of polylysine added to the vesicles. The size of the domains is not dependent on membrane composition. However, the size seems to increase in a stepwise manner that is correlated with a multiple of the area covered by one polylysine molecule.

Calcium↗

Studies on the cell cycle of Myxobacter AL-1. II. Activities of seven enzymes during the cell cycle.

The properties of seven enzymes were studied in extracts from Myxobacter AL-1. The enzymes were isocitrate dehydrogenase (E.C.1.1.1.42), succinate dehydrogenase (E.C.1.3.99.1), alkaline phosphatase (E.C.3.1.3.1), alpha-glucosidase (E.C.3.2.1.20), beta-glucosidase (E.C.3.2.1.21), beta-galactosidase (E.C.3.2.1.23), and N-acetyl-glucosaminidase (E.C. 3.2.1.30). Four of these enzymes: isocitrate dehydrogenase, alpha-glucosidase, beta-glucosidase, and beta-galactosidase are cytosolic enzymes. Succinate dehydrogenase was found to be located on the cytoplasmic membrane system, whereas alkaline phosphatase and N-acetylglucosaminidase were considered as enzymes which bind the outer membranes resp. the cell wall. During the cell cycle, all enzymes have a pattern of discontinuous activity increase. Succinate dehydrogenase and isocitrate dehydrogenase exhibit a stepwise increase of activity, whereas the other enzymes follow the pattern of a peak enzyme.

Acetylglucosaminidase↗

Brain acetylcholine, adenine nucleotides and their degradation products after intraperitoneal and intracerebral adenosine administration.

The paper describes adenosine effects on the acetylcholine synthesis and the profiles of adenine nucleotides, adenosine, inosine, and hypoxanthine in the rat brain in vivo after intracerebral (intraventricular) and intraperitoneal administration of adenosine. Intracerebral as well as extracerebral adenosine injection caused a dose- and time-dependent increase of the cerebral acetylcholine level, which was not accompanied by an equal development of the contents of adenine compounds and their degradation products. However, a considerable turnover of adenosine was observed in the brain after both routes of administration concerning the nucleotide as well as the degradation pathway. The kinetics of the purified enzymes of choline acetyltransferase and acetylcholinesterase were not influenced by adenosine. By this, the adenosine-caused increase of the cerebral acetylcholine cannot be explained by a direct molecular attack of adenosine on the enzymes of the synthesis or degradation of acetylcholine. An indirect mechanism which includes cAMP was discussed as a possible interpretation at present.

Acetylcholine↗

Changes in bone and bone marrow of rabbits bearing the VX-2 carcinoma. A comparison of local and distant effects.

The VX-2 carcinoma in 32 New Zealand white rabbits was studied morphologically with respect to the osseous effects induced by the innoculation and subsequent growth of tumour in the soft tissues over periods ranging from 1 to 5 weeks. Although more severe changes were noted in bones of tumor-bearing than in non-tumor-bearing limbs, effects could be seen in both experimental situations. Severe bone marrow hyperplasia was noted consistently in tumor-bearing animals. A marked increase in numbers of osteoclasts over control rabbit bones was observed along the surface of bones near and distant from the tumor. Resorptive changes were also noted in the cortex of tumor-bearing rabbits. The increase in osteoclast numbers was related chronologically to the development of hypercalcemia and was proportional to the degree of hypercalcemia at the time the animals died. The number of osteoclasts was inversely proportional to the serum creatinine. A diminution of osteoclast numbers was noted in the latter stages of the disease. These changes may be the morphologic expression of humoral hypercalcemia accompanying the VX-2 carcinoma.

Animals↗

Partial trisomy 2q and familial translocation t(2;12)(q31;q24).

Report is given of a boy with trisomy of the distal part of the long arm of chromosome 2 (q31 leads to ter) due to a balanced 2/12 translocation in the mother: 46,XX,t(2;12) (q31;q24). Other phenotypically normal carriers of this balanced translocation are the patients sister and grandfather. The patient shows a variety of dysplastic signs mainly of the face.

Chromosome Aberrations↗