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Biomedical subjects

A Baer

Publications and source records attributed to A Baer.

At least 19 recordsLinked to original sources

Autotaxin (NPP-2) in the brain: cell type-specific expression and regulation during development and after neurotrauma.

Autotaxin is a secreted cell motility-stimulating exo-phosphodiesterase with lysophospholipase D activity that generates bioactive lysophosphatidic acid. Lysophosphatidic acid has been implicated in various neural cell functions such as neurite remodeling, demyelination, survival and inhibition of axon growth. Here, we report on the in vivo expression of autotaxin in the brain during development and following neurotrauma. We found that autotaxin is expressed in the proliferating subventricular and choroid plexus epithelium during embryonic development. After birth, autotaxin is mainly found in white matter areas in the central nervous system. In the adult brain, autotaxin is solely expressed in leptomeningeal cells and oligodendrocyte precursor cells. Following neurotrauma, autotaxin is strongly up-regulated in reactive astrocytes adjacent to the lesion. The present study revealed the cellular distribution of autotaxin in the developing and lesioned brain and implies a function of autotaxin in oligodendrocyte precursor cells and brain injuries.

Animals↗

Uptake and trafficking of DNA in keratinocytes: evidence for DNA-binding proteins.

The skin is an interesting organ for human gene therapy due to accessibility, immunologic potential and synthesis capabilities. In this study, we attempted to visualize and measure the uptake of naked FITC-labeled plasmid by FACS analysis detecting up to 15% internalization in a dose- and time-dependent manner. Cycloheximide treatment inhibited the uptake by >90%, suggesting a protein-mediated uptake. The inhibition of different internalization pathways demonstrated that blocking macropinocytosis (by amiloride and N,N-dimethylamylorid) reduced DNA uptake by >85%, while the inhibition of clathrin-coated pits (by chlorpromazine) and caveolae (by nystatin/filipin III) did not limit the uptake. Colocalization studies using confocal laser microscopy revealed a time-dependent accumulation of plasmid DNA in endosomes and lysosomes. When a green fluorescent protein (GFP) expression vector was used, specific GFP-RNA became detectable by reverse transcriptase-PCR, whereas measurable amounts of protein could not be identified in FACS experiments. To detect the potential DNA receptors on the keratinocyte surface, membrane proteins were extracted and subjected to South-Western blotting using digoxigenin-labeled calf thymus and lambda-phage DNA. Two DNA-binding proteins, ezrin and moesin, known as plasma membrane-actin linkers, were identified by one- and two-dimensional-South-Western blots and matrix-assisted laser desorption and ionization-mass spectrometry. Ezrin and moesin are functionally associated with a number of transmembrane receptors such as the EGF, CD44 or ICAM-1 receptor. Taken together, naked plasmid DNA seems to enter human keratinocytes through different pathways, mainly by macropinocytosis. Two DNA-binding proteins were identified that seemed to be involved in binding/trafficking of internalized DNA.

Animals↗

Functional characterization of transgene integration patterns by halo fluorescence in situ hybridization: electroporation versus retroviral infection.

Gene transfer techniques are essential for bioengineering and gene therapy. Retroviral vectors constitute an important tool in this context as integrase-catalyzed genomic anchoring is one of the best defined results of nonhomologous recombination, occurring at loci with favorable expression properties. On the basis of a retroviral expression cassette, this study focuses on differences regarding the genomic targets after its transfer by either retroviral infection or electroporation. Fluorescence in situ hybridization (FISH) of clones generated by infection revealed for the majority an association of the transgene with the nuclear matrix while this was true only for a minority of single copy clones if the same construct was transferred by electroporation. Our results demonstrate that the process of integration is distinct for both gene transfer routes and confirm that retroviral survival strategies favor integration next to scaffold/matrix attachment regions. These results may be one key to explain recent consequences of gene therapy trials that have led to the deregulation of endogenous genes.

Animals↗

Targeting CD19 with genetically modified EBV-specific human T lymphocytes.

Human Epstein-Barr virus-specific T cells were genetically modified to express chimeric receptors specific for human CD19, which is expressed on the cell surface of most B cell malignancies. The receptor-modified EBV-specific T cells can be expanded and maintained long term in the presence of EBV-infected B cells. They recognize autologous EBV-infected targets through their conventional T cell receptor, and allogeneic EBV-infected targets and tumor targets through their chimeric receptor. They efficiently lyse both EBV and CD19-positive tumor targets in the absence of background cytotoxicity against CD19-negative targets. Donor-derived EBV-specific T cells expressing chimeric anti-tumor receptors may represent a source of effector cells that could be safely administered to leukemia patients to eradicate minimal residual disease after allogeneic bone marrow transplantation.

Antigens, CD19↗

Genomic imbalances in the progression of endocrine pancreatic tumors.

Endocrine pancreatic tumors (EPTs) are neoplasms with malignant potential. To explore the molecular basis of metastatic progression in human EPTs, we analyzed 17 paired specimens of primary EPTs and their metastases and 28 nonmetastatic EPTs using comparative genomic hybridization (CGH). Genomic alterations were detected in all of the matched primary/metastatic tumors and 19 (58%) nonmetastatic EPTs. The mean number of genomic changes was 17.3 in metastases, 12.5 in their primary tumors, and 4.5 in nonmetastatic EPTs. Statistical analysis of shared genomic changes in matched pairs of primary tumors and metastases showed a high probability (>95%) of a clonal relationship in 15 of the 17 cases. A closely related genetic pattern was also demonstrated on the basis of concordance analysis of the two groups. The most striking genomic changes which were enriched in metastases included gains of chromosomes 4 and 7 and losses of 21q. Other common regions of frequent losses (>40%) identified in metastases and/or their primary tumors involved 2p, 2q, 3p, 3q, 6q, 10p, and 11p, whereas frequently detected gains (>40%) in the paired tumors involved 5p, 5q, 12q, 14q, 17q, 18q, and 20q. These chromosomal aberrations were found in significantly fewer nonmetastatic EPTs. Some of these chromosomal loci may harbor genes contributing to the progression of EPT.

Adenoma, Islet Cell↗

Spitzoid malignant melanoma with lymph-node metastasis. Is a copy-number loss on chromosome 6q a marker of malignancy?

Distinction of spitzoid malignant melanomas (SMM) from Spitz nevi may be difficult or even impossible on the basis of conventional histology. In this report, a patient suffering from a primary lesion diagnosed as a Spitz nevus and a metastatic malignant melanoma approximately 4 years thereafter is described. A diagnosis of SMM was made subsequently upon review of the primary lesion. In the present analysis, we used comparative genomic hybridization (CGH) to define markers characteristic of SMM. The primary lesion revealed deletions on chromosomes 6q and 9p. In the metastasis, additional deletions on chromosomes 10p and 10q and gains of chromosome 7 were found. To our knowledge, no chromosomal aberration on chromosome 6 was hitherto demonstrated in benign melanocytic nevi. Findings reported in the literature suggest that human melanoma metastasis suppressor gene maps to 6q. In contrast, losses on chromosome 9p seem to be an early event in the development of melanoma. However, they are not only found in melanomas but are occasionally present in Spitz nevi as well as in atypical nevi. The CGH result with deletion of 6q in this difficult to diagnose primary melanocytic lesion strongly supports the diagnosis of malignant melanoma. To demonstrate the reliability of loss on chromosome 6q as a marker of SMM, a larger number of lesions must be investigated.

Adolescent↗

Coping with kinetic and thermodynamic barriers: RMCE, an efficient strategy for the targeted integration of transgenes.

Site-specific recombinases have become powerful tools for the targeted integration of transgenes into defined chromosomal loci. They have been successfully used both to achieve predictable gene expression in cell culture and for the systematic creation of transgenic animals. A recent improvement of this method, the recombinase-mediated cassette exchange procedure (RMCE), permits expression in the absence of any co-expressed selection marker gene.

Animals↗

Transcriptional properties of genomic transgene integration sites marked by electroporation or retroviral infection.

As a possible consequence of their survival strategy, proviruses are predominantly found in transcription-promoting genomic sites. For certain applications, these findings have led to the preferential use of retroviral vectors for the stable integration of transgenes. This study demonstrates that transcription levels of single-copy proviruses, which have been established either by infection or by single-copy transfection (electroporation), are rather comparable. Therefore, electroporation is suggested as an alternative gene transfer route in cases where the use of infectious retroviral vehicles is to be avoided due to safety considerations. A difference between clones derived from these two gene transfer routes concerns the inactivation pattern which, for electroporated clones, is an exclusive property of the low expressers. This difference may be due to the nature of the illegitimate recombination event which is thought to be less invasive if catalyzed by the retroviral integrase. Substantial differences between infection and Ca phosphate-mediated transfection that have been reported earlier are explained by the respective transfection parameters.

Animals↗

[The sonographic picture of an echogenic liver is an indicator of pathologic glucose tolerance].

BACKGROUND: Almost all patients in departments of internal medicine routinely undergo abdominal ultrasound examination in which liver changes indicating hepatic steatosis are often detected. The aim of this study was to assess the occurrence of pathological oral glucose tolerance, manifest diabetes mellitus and other changes indicative of a metabolic syndrome in patients with sonographic signs of hepatic steatosis. PATIENTS AND METHODS: 577 patients were examined during a period of 6 months: 90 patients fulfilled the inclusion criteria. RESULTS: Among the 90 patients with echodense liver who were included in the study (42 female, 48 male) 36 patients presented with previous diagnosis of diabetes mellitus (40%). The oral glucose tolerance test was impaired in 19 patients (21%) and in four patients with manifest diabetes mellitus (4%). Among patients with echodense liver a high percentage presented with obesity and impaired fat metabolism. CONCLUSIONS: The large number of patients with an impaired oral glucose tolerance test converting to manifest diabetes, as well as the large number of patients with manifest disorders of fat metabolism suggest that screening for diabetes should be performed in patients who present with sonographic signs of hepatic steatosis.

Adolescent↗

Dissociative recombination of HD+ in selected vibrational quantum states

Rate coefficients for dissociative recombination of HD+ in selected vibrational states have been measured by a combination of two molecular fragment imaging methods by using the heavy-ion storage ring technique. Recombination fragment imaging yields state-to-state reaction rates. These rates are converted to rate coefficients by using vibrational level populations of the stored ion beam, derived from nuclear coordinate distributions measured on extracted ions. The results show strongly increasing rate coefficients for high vibrational excitation, where additional dissociation routes open up, in agreement with a theoretical calculation. Very low rate coefficients are found for certain, isolated vibrational states.

Journal Article↗

Erythropoietin response to anemia as a function of age.

The erythropoietin (EPO) response to anemia was assessed for 244 subjects aged 1-64 years (mean 45.2 years) and 121 subjects aged 65-94 years (mean 68.3 years). Subjects included non-anemic individuals as well as those with anemia of various etiologies, excluding renal disease and pregnancy. Significant inverse correlations between serum immunoreactive EPO and hematocrit were noted for both groups. Regression lines failed to show a significantly lower slope or y-intercept for older compared to younger subjects. EPO levels were not significantly lower for older compared to younger subjects when controlled for hematocrit level. These results suggest that the EPO response to anemia in older subjects is similar to that of younger subjects.

Adolescent↗

[Determination of plasminogen in milk by an immunoenzymatic technic].

The ELISA assay was used to measure the plasminogen in milk. The results showed that plasminogen concentration was slightly higher than the corresponding enzymatic activity, which could be explained to the fact that several active sites of the enzyme are occupied by inhibitors or caseins. This work shows also that about 75% of plasminogen is bound to caseins.

Animals↗

Insulin-mediated and non-insulin-mediated metabolic effects of gastroenteropancreatic peptides in type I and type II diabetes.

In this brief review of regulatory function of gastroenteropancreatic peptides in control of intermediary metabolism in normal and diabetic states, with and without mediation by insulin and/or glucagon, a variety of possible mechanisms have been described. It is apparent that the pharmacologic actions of the peptides identified in various locations provide models for multiple routes of delivery and modes of action of effectors in this control system. Examples already exist of each of the hypothetical mechanisms illustrated in the scheme in Figure 4. It is clear that a great deal of study will be necessary in identification of the active agents and assessment of their importance in the physiology of intermediary metabolism. With respect to the possible pathophysiologic roles of regulatory peptides of the gastroenteropancreatic system other than insulin and glucagon, a number of considerations of Type I and Type II diabetes have been raised. The balance of the evidence suggests that Type I diabetes may be viewed as an insulin deficiency syndrome, so that physiological replacement with insulin may be expected to result in correction of the metabolic abnormalities. Nevertheless, the difficulty of physiologic replacement treatment, which may call for portal delivery of insulin, is well recognized, and abnormalities secondary to insulin deficiency even in "well-treated" Type I diabetes may be compounded by the effects of gastroenteropancreatic peptides other than insulin, exerted through the various mechanisms discussed. In Type II diabetes mellitus, current understanding of the pathophysiology is much less complete and no convincing description of the etiology exists. The various metabolic actions of the gastroenteropancreatic peptides, and their interactions with other endocrine, paracrine and nervous regulatory mechanisms, represent a dauntingly complex control system. The elucidation of this system can provide fertile ground for the development and testing of hypotheses for the pathophysiology of disordered metabolism in Type II diabetes mellitus.

Blood Glucose↗

Isolation and partial characterization of ovine lactoferrin.

Ovine lactoferrin was isolated by ammonium sulfate precipitation and ion exchange chromatography. Comparative analyses were performed with the bovine protein. Differences in the amino acid compositions and the tertiary structure of the proteins were observed.

Amino Acids↗