PubMed HealthSearch

Biomedical subjects

M Kern

Publications and source records attributed to M Kern.

At least 19 recordsLinked to original sources

[Swiss Register for unrelated bone marrow donors: preliminary results].

Bone marrow transplantation from the unrelated volunteer donor is today a realistic possibility for patients lacking an HLA-identical family donor. In 1988, the Swiss Unrelated Bone Marrow Donor Registry was founded to coordinate such bone marrow transplants and create the Swiss volunteer donor registry. Thus for a search has been initiated for 71 patients and 16 transplants have been performed. Donor and recipient were HLA-A-, -B- identical by serology and HLA-Dr-identical by DNA-oligotyping. 10 of the 16 patients are alive without signs of basic disease 2 weeks to 2 years and 4 months after the transplant. These results illustrate that unrelated donor transplantation, using careful selection criteria, is a realistic new therapeutic modality.

Adolescent

Effect of aging and exercise on GLUT-4 glucose transporters in muscle.

This study was conducted to investigate whether changes in muscle glucose transporter GLUT-4 protein might be associated with a previously reported deterioration in glucose tolerance with aging, and, furthermore, to determine whether exercise training could increase GLUT-4 protein levels in older animals. GLUT-4 protein concentration was measured in soleus, gastrocnemius, and extensor digitorum longus muscles of trained (10 or 15 wk treadmill running) and untrained young (6-8 mo), middle-aged (15-17 mo), and old (27-29 mo) Fischer 344 rats. All GLUT-4 protein values were expressed as a percent of the mean for the young untrained group. Two-way analysis of variance demonstrated significant main effects of both training and aging in the gastrocnemius and soleus muscles. Exercise training produced significant increases in GLUT-4 protein in the soleus muscle of young (273 +/- 32.9 vs. 100 +/- 38.5%) and middle-aged rats (215 +/- 19.9 vs. 108 +/- 33.2%) compared with sedentary controls. Similar significant increases were also found in the gastrocnemius muscle of young (169 +/- 20.1 vs. 100 +/- 5.8%) and middle-aged rats (167 +/- 46.7 vs. 60 +/- 7.9%) with training. In the oldest rats, GLUT-4 was not significantly increased with training, but the trend toward an increase was apparent in all three muscle types. The main effect of aging was primarily due to a statistically significant difference between the old trained and young trained rats. A trend toward decreased GLUT-4 with aging was apparent in the untrained animals, but this was not statistically significant.

Aging

Mechanisms of airway protection and upper esophageal sphincter opening during belching.

The mechanisms of airway protection, upper esophageal sphincter (UES) opening, and their coordination during belching were studied with a concurrent videoendoscopic, videofluoroscopic, and manometric technique. Analysis of videoendoscopic recordings revealed that glottal function during gastric and esophageal belching was similar and consisted of vocal cord adduction resulting in closure of intoitus to trachea, followed by anterior-caudad movement of the glottis, followed by slitlike or triangular UES opening. When a belch episode was associated with an intragastric pressure increase, in addition to the above features, there was approximation of arytenoids to the base of the epiglottis before the UES opened. Duration of vocal cord closure during belches induced by 40 ml intraesophageal air injection was significantly longer than belches induced by 20 ml (P less than 0.01). Vocal cord closure preceded the UES opening invariably. Analysis of videofluoroscopic recordings showed that hyoid bone movement during belching had a distinctive pattern different from its movement during swallowing. UES opening started generally when the hyoid bone was pulled anteriorly. Anterior hyoid excursion of 0.78 +/- 0.1 cm during belching was significantly shorter than its excursion of 1.8 +/- 0.09 cm during swallowing (P less than 0.01). We conclude that glottal closure is an integral component of both esophageal and gastric belch reflexes that prevents aspiration of regurgitated material into the airway. Glottal closure mechanism during belching has two tiers of closure: 1) vocal cord closure and 2) aryepiglottic approximation. Glottal and UES functions are closely coordinated during belching, and finally, during belching, UES is pulled open after its relaxation.

Adult

[Tensile strength of the bond to In-ceram after varying modes of surface conditioning].

The tensile bond strengths of six different resin-bonding-systems to the aluminium oxide ceramic In-Ceram were tested. The samples were stored in artificial saliva (37 degrees C) up to 150 days and thermocycled (5 degrees-55 degrees C, 18,750 cycles). After sandblasting or silicoating of In-Ceram the tensile bond strength of the modified Bis-GMA resin Panavia-Ex showed no significant changes within this observation period. Using the conventional Bis-GMA resin Microfill-pontic, silicoating In-Ceram with the Rocatec-system resulted in a better bond strength than the use of a silane. The used etching procedure with boiling 70% sulphuric acid was proven to be unsuitable for a long-term stable bond.

Acid Etching, Dental

[Rehabilitation of partially edentulous cases with telescope crowns: modified, fully veneered tapered crowns].

Telescope crowns are well established as prosthodontic retainers for removable partial dentures. After a short review of the advantages and disadvantages of telescope crowns, the specifies of tapered crowns are described. By the use of appropriate tooth preparation and the fabrication of modified, fully resin-veneered tapered crowns, it is possible to improve on the crown contours and the aesthetics provided by conventional tapered crowns. Periodontal prophylactic conditions are also considered.

Aged

The all-porcelain, resin-bonded bridge.

This case report describes the clinical and laboratory procedures for the fabrication and insertion of In-Ceram all-porcelain, resin-bonded bridges. All-porcelain crowns and fixed partial dentures have better biocompatibility and better esthetic results than do ceramometal restorations. In-Ceram has been shown to have better physical properties than other ceramic or glass materials. However, long-term clinical studies of the material are not yet available.

Aluminum Oxide

Insulin responsiveness in skeletal muscle is determined by glucose transporter (Glut4) protein level.

Glucose transport in skeletal muscle is mediated by two distinct transporter isoforms, designated muscle/adipose glucose transporter (Glut4) and erythrocyte/HepG2/brain glucose transporter (Glut1), which differ in both abundance and membrane distribution. The present study was designed to investigate whether differences in insulin responsiveness of red and white muscle might be due to differential expression of the glucose transporter isoforms. Glucose transport, as well as Glut1 and Glut4 protein and mRNA levels, were determined in red and white portions of the quadriceps and gastrocnemius muscles of male Sprague-Dawley rats (body wt. approx. 250 g). Maximal glucose transport (in response to 100 nM-insulin) in the perfused hindlimb was 3.6 times greater in red than in white muscle. Red muscle contained approx. 5 times more total Glut4 protein and 2 times more Glut4 mRNA than white muscle, but there were no differences in the Glut1 protein or mRNA levels between the fibre types. Our data indicate that differences in responsiveness of glucose transport in specific skeletal muscle fibre types may be dependent upon the amount of Glut4 protein. Because this protein plays such an integral part in glucose transport in skeletal muscle, any impairment in its expression may play a role in insulin resistance.

Animals

Insulin resistance induced by high-fat feeding is only partially reversed by exercise training.

Diets high in saturated fat and simple carbohydrate result in an insulin-resistant state, while training increases insulin sensitivity. Insulin resistance was induced by feeding a high-fat, high-sucrose (HFS) diet to 4-week-old female Sprague-Dawley rats. A control diet (low-fat, complex-carbohydrate) was fed to another group for comparison. During the 4-week dietary treatment, half of each group was trained by treadmill running (2 h day-1, 6 days week-1m 30 m min-1, 0% grade). At the end of this 4-week experimental period, hindquarter perfusions were performed at either basal (0) or maximal (100 nM) insulin concentrations to determine glucose uptake, glycogen synthesis, total glycogen content and the activity of several enzymes. Insulin (100 nM) significantly increased glucose uptake and glycogen synthesis in all four groups (CON-UN, CON-TR, HFS-UN, HFS-TR, where CON, UN and TR refer to control, untrained and trained respectively). HFS feeding significantly decreased (P less than 0.002) glucose uptake (mumol g-1 h-1) with maximal insulin stimulation, while training significantly increased uptake (P less than 0.01) at both insulin concentrations. Glycogen synthesis was also increased by training (P less than 0.05) at both insulin concentrations, but accounted for only 25-28% of the glucose uptake. Although training improved the insulin resistance caused by the HFS diet, glucose uptake in the HFS-TR group was still significantly lower than the CON-TR group. Changes in glycogen synthesis are not great enough to account for the decrease or increase in glucose uptake found in the HFS-fed or trained animals.

Animals

Differences in glucose transport rates between perfused and in vitro incubated muscles.

In vitro incubated muscles are a convenient preparation for glucose transport studies, but it is not known how closely they reflect the in vivo condition. Perfused muscle preparations more closely resemble the in vivo condition, and thus to validate the use of in vitro incubated muscles, we have compared glucose transport rates in the two preparations. 3-O-Methylglucose transport rates in incubated soleus (SOL) and extensor digitorum longus (EDL) muscle strips were compared to transport rates obtained in SOL and EDL muscles removed from perfused hindquarters. Male Sprague-Dawley rats (250 g) were used for both procedures. SOL muscles showed an average 25% higher transport rate than EDL muscles at all insulin concentrations examined (0-100 nM) in the perfused system. This difference was diminished in the incubated muscles, SOL being 15% greater than EDL, but the relationship between the two muscles was maintained. Basal transport was lower and maximal transport was higher in the perfused muscles compared to the incubated muscles. This resulted in significantly higher fold stimulation in the perfused vs. incubated muscles (15 vs. 2.5 in the SOL, and 9.8 vs. 2.3 in the EDL). We conclude that in vitro muscle preparations may be convenient for showing relative differences between experimental treatments, but absolute transport rates and insulin stimulation must be interpreted with caution.

Animals

Effect of a high-fat-sucrose diet on in vivo insulin receptor kinase activation.

Insulin-stimulated glucose uptake into muscle is depressed by high-fat-sucrose (HFS) feeding of rats. To investigate the mechanism of this insulin resistance, the in vivo activation of the insulin receptor kinase in liver and muscle of control and HFS-fed rats was determined. Rats were injected with glucose and insulin and killed 0, 5, 15, and 30 min after injection. Insulin binding was not changed in partially purified receptors from muscle of HFS rats. In control rats insulin receptor kinase activity was maximally stimulated threefold in liver at 5 min and fourfold in muscle at 15 min after insulin-glucose injection. The insulin-stimulated tyrosine kinase activity of receptors isolated from the liver of rats fed the HFS diet was decreased by 30% in comparison with the controls. In contrast, receptors isolated from muscle did not show any difference in basal or insulin-stimulated kinase activity between HFS-fed and control rats. Decreased in vivo activation of the insulin receptor kinase may be at least partially responsible for insulin resistance in liver. Because insulin binding and insulin stimulation of receptor kinase were normal in muscle of HFS-fed animals, it is concluded that the insulin resistance of glucose uptake into muscle is caused by a defect distal to the insulin receptor.

Animals

[Resin bonding bridges--state of the art].

Adhesive fixed partial denture (FPD) technology has gradually become viable in recent years, suitable for use in general dental practice. The most important prerequisites for success are patient selection and meticulous production techniques. Indications and limits of this technique are evaluated on the basis of the current state of the art. Initial preprosthetic treatment and clinical procedures are described. Research that has been done so far appears to demonstrate that adhesive FPDs are compatible with healthy periodontal tissues, even though some over-contouring of the adhesive tabs on the abutment teeth seems to be unavoidable. First clinical long-term studies have shown, however, that the failure rate of adhesive FPDs is higher than with conventional crown and bridge techniques. Porcelain-fused-to-metal FPDs on pure titanium frames and full ceramic FPDs are new developments in adhesive FPD technology which are not yet fit for use in dental practice.

Acid Etching, Dental

[Optimizing the bond between metal and bonding agent in bonded restorations using a simplified silicoating procedure].

The tensile bond strengths of five different resinbonding-systems to a Co-Cr-alloy (Dentitan) are tested. The samples were stored in artificial saliva (37 degrees C) up to 150 days and thermocycled (5 degrees-55 degrees C, 18,750 cycles). In contrast to micromechanical bonding-systems, mechanical-chemical ones showed no significant changes in tensile bonding strength during this observation period. The tribochemical silicoating procedure (Rocatec) seems to be suitable for Co-Cr-alloys used in resin-bonded restorations.

Chromium Alloys