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Biomedical subjects

U Gross

Publications and source records attributed to U Gross.

At least 73 records · Page 4Linked to original sources

Tissue engineering of biphasic joint cartilage transplants.

In isolated posttraumatic or idiopathic joint defects the chondral layers and adjacent subchondral spongy bone are usually destructed. For regeneration we suggest the in vitro formation of a cartilage-coated biomaterial carriers (biphases) in order to fill the correspondingjoint defects. In this study Biocoral, a natural coralline material made of calcium carbonate, and calcite, a synthetic calcium carbonate, were used as supports for the cultivation of bovine chondrocytes in a three-dimensional polymer fleece. The cell-polymer-structure was affixed to the biomaterial with a fibrin-cell-solution. The artificial cartilage formed a new matrix and fused with the underlying biomaterial. The results indicate a promising technical approach to anchor tissue engineered cartilage in joint defects.

Animals↗

Stage differentiation of the protozoan parasite Toxoplasma gondii.

The obligate intracellular parasite Toxoplasma gondii is able to persist lifelong in its hosts by differentiating from the replicative tachyzoite stage into cyst forming latent bradyzoites. Beside the clinical relevance of stage conversion and its importance for pathogenesis and prevention of toxoplasmic encephalitis, reversible stage differentiation in T. gondii is an interesting model system of protozoan differentiation in general. In recent years a variety of molecular techniques have been developed for T. gondii, including transfection systems and the development of many selectable markers. Together with tissue culture models in which stage differentiation from tachyzoites to bradyzoites can be induced these techniques provide the tools for a molecular dissection of the differentiation pathways. Three aspects of stage conversion are highlighted in this review, including the alteration of the parasite surface, alterations in parasite metabolism and the induction of genes associated with stress response.

Animals↗

Risk factors associated with early-onset sepsis in premature infants.

OBJECTIVE: To define perinatal factors associated with early-onset neonatal sepsis. STUDY DESIGN: Maternal and neonatal variables were analysed retrospectively in 343 infants born before 35 weeks using univariate and multivariate statistical analysis. RESULTS: Logistic regression analysis identified risk factors for probable neonatal sepsis: gestational age at delivery (odds ratio 0.9, 95% confidence interval (CI) 0.91-0.96), premature rupture of the membranes (odds ratio 2.9, 95% CI 1.004-8.56), Apgar score after 1 min (odds ratio 0.7, 95% CI 0.53-0.96), and histological chorioamnionitis and/or funisitis (odds ratio 4.1, 95% CI 1.36-12.12). There was a strong association between probable sepsis and intracranial haemorrhage of the infant (odds ratio 4.3, 95% CI 1.07-17.40). Funisitis had a high specificity (91%) and positive predictive value (82%) for the detection of neonatal sepsis < or =32 weeks. CONCLUSIONS: Independent obstetrical risk factors for early-onset neonatal sepsis in premature infants may help to identify newborns who benefit from maternal antibiotic prophylaxis before birth. The histological examination of the umbilical cord can be used as an additional diagnostic test to detect newborns at risk of infection.

Antibiotic Prophylaxis↗

Induction of Toxoplasma gondii cystogenesis and multiplication arrest by treatments with a phosphatidylcholine-specific phospholipase C inhibitor.

A model of tissue cyst formation was developed using D609, a specific inhibitor of phosphatidylcholine specific-phospholipase C. The phospholipase inhibitor induced a decrease in Toxoplasma gondii multiplication and several successive treatments could lead to an arrest in parasite multiplication and full encystment of the parasites. This could be a first step towards an in vitro model of T. gondii reactivation.

Animals↗

Human tissue responses to metal stents.

Metal stents have become an important addition to therapeutic strategies available for incurable gastrointestinal malignancies. The responses of human tissues to the presence of metal stents are important for several reasons. The first is to understand the mechanism by which stents are anchored in the stenosis, as this will prevent migration of stents. The second is to develop new designs of stents that would be removable. The third reason is to prevent complications of stents, such as benign hypertrophy at the proximal and distal ends of the stent, and to understand the mechanism of serious complications, such as migration through the esophageal wall or aortoesophageal fistula. In this article, the authors discuss the state of the current knowledge in these three areas.

Animals↗

The past and present role of the Sabin-Feldman dye test in the serodiagnosis of toxoplasmosis.

The dye test for the detection of Toxoplasma-specific antibodies was first described by Sabin and Feldman 50 years ago. The test is highly specific and sensitive and considerable information is available on the development and persistence of dye test antibodies after primary Toxoplasma infection. However, the test uses live Toxoplasma gondii and is now only employed in a few laboratories. It is still the reference method for the serodiagnosis of toxoplasmosis, and a multicentre study comparing dye test results between different laboratories was much needed. We report in this article the results of a multicentre evaluation of the test involving nineteen laboratories in eight countries. The study revealed overall satisfactory standardization between the laboratories, but there were differences in the test protocols, the use of reference/standard preparations and the interpretation of results. There is still no agreement on the level of dye test values which reflect infection with the parasite, and conversion from titres to international units (IUs) did not improve standardization. However, the results indicated that a value of > 4 IU or a titre of 1:16 met the definition of positivity of most participants. We recommend that the dye test be retained as a reference method and that interlaboratory standardization be improved by the use of a common protocol and the expression of results in titres.

Clinical Laboratory Techniques↗

Immunological, enzymatic and biochemical studies of uroporphyrinogen III-synthase deficiency in 20 patients with congenital erythropoietic porphyria.

Congenital erythropoietic porphyria (CEP), a rare autosomal recessive inborn error of heme biosynthesis, results from reduced activity of uroporphyrinogen III synthase (URO-III-S) leading to an excessive production and accumulation of porphyrins. Various clinical and biochemical observations point to a relationship between degree of disease expression and metabolic disturbance. We investigated 20 patients with early onset of clinical symptoms of CEP and, additionally, the relatives of six patients. CEP was confirmed by porphyrinemia and porphyrinuria with dominance of uroporphyrin and its isomer I. The investigation of the immunological nature of the defective URO-III-S gene from unrelated patients with unknown mutations was possible thanks to an antibody against the human enzyme. URO-III-S concentration in erythrocytes was determined by ELISA. No signal was achieved when assaying nonimmune serum by ELISA, whereas there was a positive reaction with the serum after immunisation. Furthermore, specificity of immune sera is demonstrated by immunoprecipitation of URO-III-S activity which caused a 33% reduction of enzyme activity. Normal levels of immunoreactive enzyme protein 100+/-10% of control (x +/- SD, n = 12) with a reduced specific activity 15+/-8.5% (x +/- SD, n = 12) were found in erythrocytes from all patients, with the exception of a girl with a remarkably high enzyme concentration of 149% of controls and a very low specific activity of 4%. In consequence, all patients had cross-reacting immunological material (CRIM)-positive mutations. CRIM-ratios varied between 3.2 and 24.5. The CRIM-positive nature of the gene defect indicated that the mutations altered the activity of URO-III-S. The different CRIM ratios implied the presence of various mutations, which is further evidence for the heterogeneity in the genetic defect found in CEP. URO-III-S activity was determined in erythrocyte lysates by a coupled enzyme assay. Erythrocyte URO-III-S activities of patients were reduced to 4-33% of the normal value (1.72+/-0.14 pkat/mg protein). An increase of urinary coproporphyrin isomer I (40-61%, norm = 17-31%) and a halved URO-III-S activity can serve as a biochemical test for asymptomatic heterozygous gene carriers of CEP.

Adolescent↗

Targeted disruption of the bradyzoite-specific gene BAG1 does not prevent tissue cyst formation in Toxoplasma gondii.

Expression of the 30 kDa small heat shock protein BAG1 is restricted to the latent bradyzoite 'tissue cyst' form of Toxoplasma gondii, first appearing approximately 2-3 days after the initiation of bradyzoite differentiation. Although developmental expression of small heat shock proteins has been described for many species, their precise function is unclear. In order to examine the function of BAG1 in T. gondii bradyzoites and its role during parasite differentiation, we have used homologous recombination to produce a knock-out mutant in the cyst-forming strain P(LK), a clonal derivative of ME49. Under tissue culture conditions that stimulate bradyzoite differentiation (alkaline pH), the mutant was found to express several bradyzoite-specific markers with the same kinetics and frequency as the parental strain. Neither enhanced nor decreased susceptibility to stress was observed for the BAG1-deficient mutant. In vivo studies revealed that tachyzoites of the bag1 knock-out mutant were fully able to establish a chronic infection in C57BL/6 mice, producing brain cysts of a size, morphology and frequency indistinguishable from cysts formed by the parental control strain. Brain cysts of the bag1 knock-out mutant contained viable parasites capable of establishing an acute infection after oral administration, demonstrating that conversion of bradyzoites to tachyzoites is also unimpaired. We conclude that BAG1 is not essential for normal function of bradyzoite containing tissue cysts, at least in intermediate host species. This clone of P(LK) was found to be unable to produce oocysts and is therefore unsuitable for studies in cats.

Amino Acid Sequence↗

Antibiotic resistance in Salmonella enterica serotype typhimurium.

In order to analyse the development of antibiotic resistance in Salmonella spp., a total of 262 Salmonella strains isolated in 1987 (n = 148) and in 1996 (n = 114) from clinical specimens in Wurzburg, Germany, were tested in parallel by the agar diffusion method. In 1987. most of the strains were Salmonella enterica serotype typhimurium (42.6%), whereas in 1996 most were Salmonella enterica serotype enteritidis (68.4%). The majority of Salmonella enterica serotype enteritidis isolates was fully susceptible in 1987 and 1996. In contrast, the percentage of drug-resistant strains of Salmonella enterica serotype typhimurium increased significantly from 27% in 1987 to 52.4% in 1996. This increase, which might reflect uncontrolled use of antibiotics in the environment, should be of concern to public health authorities.

Anti-Bacterial Agents↗

Exon 1 donor splice site mutations in the porphobilinogen deaminase gene in the non-erythroid variant form of acute intermittent porphyria.

Acute intermittent porphyria (AIP) is an autosomal dominant disorder caused by a partial defect of the heme biosynthesis enzyme, porphobilinogen deaminase (PBGD). PBGD is encoded by two distinct mRNA species expressed in a tissue-specific manner from a single gene. One transcript is expressed in erythroid tissues, while the housekeeping transcript is expressed in all tissues. In classical AIP (95% of cases) the housekeeping and the erythroid-specific enzymes both have half-normal activity in erythroid and non-erythroid tissues, whereas in the variant non-erythroid form of the disease the enzymatic defect is present only in non-erythroid cells. A large allelic heterogeneity of mutations (n>135) has been demonstrated in classical AIP, but to date only three different mutations have been characterized in the non-erythroid variant form of AIP. We describe the molecular abnormalities responsible for the non-erythroid variant form of AIP in two French and two German unrelated AIP patients with normal PBGD activity in the erythrocytes. Three different splicing defects located in the intron 1 donor splice site were identified: a 33+1 g-->a mutation, previously described in a Dutch family, was found in two patients; two novel mutations (33+2 t-->a, 33+5 c-->g) affected the two remaining patients. All the mutations resulted in the activation of a cryptic splice site 67 bp downstream in intron 1, leading to a frameshift and a premature stop codon in exon 4. Mutations in the exon 1 donor splice site are involved in eight of the nine non-erythroid variant AIP families reported in the literature. These data show that most mutations causing the non-erythroid variant AIP are exon 1 splice defects, in contrast with classical AIP, where missense mutations are chiefly involved. Moreover, the allelic heterogeneity of PBGD gene defects causing the non-erythroid variant AIP is demonstrated, with five different mutations identified. These mutations could be easily detected by a single denaturing gradient gel electrophoresis which also allows the presymptomatic detection of gene carriers in the affected families.

Adult↗

In vitro investigation of novel calcium phosphates using osteogenic cultures.

A rat bone marrow stromal cell (RBM) culture was used to evaluate novel bioactive calcium phosphate ceramics. Three rapidly resorbable, glassy crystalline materials with the main crystalline phase Ca2KNa(PO4)2 were investigated (sample code GB 1a, GB 14, GB 9). These materials were designed to exhibit a higher degree of biodegradability than tricalcium phosphate. Additionally, a bioactive glass ceramic of low biodegradability was examined (sample code AP 40). RBM cells were cultured on the disc-shaped test substrata for 14 d. The culture medium was changed and calcium and phosphate concentrations of the medium were determined daily. Specimens were evaluated using light microscopy and morphometry of the cell-covered substrate surface, scanning electron microscopy and energy dispersive X-ray analysis. Except for GB 1a, the rat bone marrow cells attached and grew on all substrate surfaces. Of the different calcium phosphate ceramics tested, AP 40 facilitated osteoblast growth and the elaboration of the extracellular matrix to the highest degree followed by GB 9 and GB 14. The inhibition of cell growth encountered with GB 1a seemed to be related to its high phosphate ion release.

Journal Article↗

Functionality of MDCK kidney tubular cells on flat polymer membranes for biohybrid kidney.

The prerequisite for the development of a biohybrid artificial kidney, is a substrate for confluent growth of renal cells forming an epithelial monolayer without any leaks. Conventional cell culture supports cannot be adapted for this purpose, because they lack adequate mechanical properties and thermal stability. From two suitable materials, polysulfone and polyacrylonitrile, two permeable polymeric membranes have been produced that were, according to ISO 10993-5, not cytotoxic. Cloned Madin Darby Canine Kidney (MDCK) cells (an established renal cell line) were cultured on the surface of the plastic materials, and on conventional cell culture supports. With all materials, assays of mitochondrial and lactate dyhydrogenases exhibited similar proliferation and the viability of the MDCK cells. Transmission electron microscopy showed the expression of a normal morphology of kidney tubular cells. Perfect barrier function, consequent on the formation of intercellular junctions in a confluent tight epithelium, was visualized in electron micrographs, and quantified by measurement of the transepithelial resistance. The uniformity of the cells grown was demonstrated in samples by electron microscopy and in the whole epithelium by intravital impedance analysis. It was concluded that polymeric membranes produced from polysulfone or polyacrylonitrile are appropriate substrates in the design of biohybrid kidney devices.

Journal Article↗