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Biomedical subjects

C Haas

Publications and source records attributed to C Haas.

At least 91 records · Page 5Linked to original sources

beta-Amyloid, protein processing and Alzheimer's disease.

Alzheimer's disease (AD) is a neurodegenerative disorder resulting in the deposition of amyloid beta-peptide (A beta) in senile plaques in cerebral and limbic corteces and the walls of meningeal and cerebral blood vessels. A beta is a proteolytic break-down product of a membrane bound precursor, the beta-amyloid precursor protein (beta APP). Conventional secretory processing of beta APP prevents A beta formation. An additional processing pathway of beta APP involving endosomal/lysosomal targeting is described. Within isolated lysosomes amygloidogenic fragments are found which might serve as precursors for A beta production. From such precursors A beta might be proteolytically processed. Indeed, secreted A beta was identified in the media of cultured cells. A beta is also secreted in vivo and can be detected in human plasma and cerebral spinal fluid. These findings provide a cellular system to analyze the molecular mechanism and the biological regulation of A beta generation. Furthermore, the effect of inherited mutations within the beta APP gene in some cases of familial AD can now be analyzed in such tissue culture cells transfected with the mutant cDNA constructs. A model will be presented proposing that A beta generation might occur during reinternalization of the full-length molecule.

Alzheimer Disease↗

[The concept of early functional management of spontaneous Achilles tendon ruptures in patients with kidney transplants].

The special risk constellation of renal transplant patients suffering from rupture of the Achilles tendon promoted the development of a therapeutic concept with early functional treatment. The significant differences to the methods usually employed so far are: local anaesthesia, additional interlacing of the tendon suture, and early functional after-treatment. In a total of ten patients, 15 spontaneous ruptures of the Achilles tendon were treated according to this therapeutic principle. Follow-up after an average of 26 months yielded in all cases a good to very good functional result. This treatment method avoids risk factors that can lead to secondary complications and is thus very suitable for treating spontaneous ruptures of the Achilles tendon in the renal transplant patient.

Achilles Tendon↗

Carob pod (Ceratonia siliqua) meal in geese diets.

1. The apparent and true metabolisable energy values of carob pods meal for geese were measured to be 6.1 MJ/kg and 6.6 MJ/kg respectively. 2. Performance from 5 to 12 weeks was examined in geese fed on four diets containing 0, 100, 200 and 300 g/kg of carob pods meal. 3. The inclusion of carob pods meal up to 200 g/kg in geese diets did not affect the performance. 4. At 300 g/kg performance was highly depressed. 5. The digestibility of protein in the diets decreased linearly with an increase in the level of inclusion of carob pods meal. 6. The length of small intestine, large intestine and caeca and the weight of gizzard expressed per kg of body weight increased with an increase in the level of carob pods meal, which is rich in fibre, in the diets.

Animal Feed↗

Assembly and disulfide rearrangement of recombinant surfactant protein A in vitro.

The surfactant-associated protein, protein A, produced by transgenic Chinese hamster ovary cells exhibits a heterogeneous population of structures. Electron microscopy reveals lollipop-shaped monomers consisting of a collagenous triple helix and a globular domain as well as oligomers in which two, three or more protomers are connected by their collagenous stalks. Each protomer consists of three alpha-chains (36 kDa) but under non-reducing conditions few free alpha-chains are observed by SDS/PAGE. Instead gamma-components (three chains), gamma 2 (six chains) and higher components are observed which are derived from intra- and inter-protomer disulfide cross-linking. Complete reduction at low temperature dissociates the oligomers, but preserves the intact structure of monomers as demonstrated by electron microscopy and trypsin digestion. Circular dichroism revealed an unfolding of the collagen triple helices of fully reduced protein A at 26 degrees C and of the unreduced protein A around 41.5 degrees C. Reoxidation of the fully reduced protein A re-established mainly the disulfide bonds within the triple helix but not between monomers. Very few higher assembly forms were reformed even at high protein A concentrations. Cellular in vivo systems must possess an efficient assembly mechanism which cannot be simulated by an in vitro system.

Disulfides↗