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Biomedical subjects

G Baier

Publications and source records attributed to G Baier.

At least 55 records · Page 3Linked to original sources

Homogeneous and Spatio-temporal Chaos in Biochemical Reactions With Feedback Inhibition.

A biochemical oscillator involving feedback inhibition can be extended to generate a chaotic attractor. The simple chaotic attractor may be exploited to create signals of higher dimension by passive forcing of other reactions. Diffusively coupled oscillators with negative feedback exhibit regular and irregular patterns in time and space associated with periodic and hyperchaotic attractors, respectively.Copyright 1998 Academic Press

Journal Article↗

Transcriptional activation of c-fos by oncogenic Ha-Ras in mouse mammary epithelial cells requires the combined activities of PKC-lambda, epsilon and zeta.

The implication of protein kinase C (PKC) isoforms cPKC-alpha, nPKC-epsilon, aPKC-lambda and aPKC-zeta in the transcriptional activation of a c-fos promoter-driven CAT-reporter construct by transforming Ha-Ras has been investigated. This was achieved by employing antisense constructs encoding RNA directed against isoform-specific 5' sequences of the corresponding mRNA, and expression of PKC mutants representing either kinase-defective, dominant negative, or constitutively active forms of the PKC isoforms. The data indicate that in HC11 mouse mammary epithelial cells, transforming Ha-Ras requires the activities of the three PKC isozymes: aPKC-lambda, nPKC-epsilon and aPKC-zeta, not, however, of cPKC-alpha, for the transcriptional activation of c-fos. Co-expression of oncogenic Ha-Ras with combinations of kinase-defective, dominant negative and constitutively active mutants of the various PKC isozymes are in agreement with a tentative model suggesting that, in the signaling pathway from Ha-Ras to the c-fos promoter, aPKC-lambda acts upstream whereas aPKC-zeta functions downstream of nPKC-epsilon.

Animals↗

Physical interaction of ApoE with amyloid precursor protein independent of the amyloid Abeta region in vitro.

Variation at the APOE gene locus has been shown to affect the risk for Alzheimer's disease. To gain deeper insight into the postulated apoE-mediated amyloid formation, we have characterized the three common apoE isoforms (apoE2, apoE3, and apoE4) regarding their binding to amyloid precursor protein (APP). We employed the yeast two-hybrid system and co-immunoprecipitation experiments in cell culture supernatants of COS-1 cells, ectopically expressing apoE isoforms and APP751 holoprotein or a COOH-terminal Abeta deletion mutant protein, designated APPtrunc. We found that all three apoE isoforms were able to bind APP751 holoprotein in an Abeta-independent fashion. The interacting domains could be mapped to the NH2 termini of APP (amino acids 1-207) and apoE (amino acids 1-191). As a functional consequence of this novel APP751 ectodomain-mediated apoE binding, the secretion of soluble APP751 is differentially affected by distinct apoE isoforms in vitro, suggesting a new "chaperon-like" mechanism by which apoE isoforms may modulate APP metabolism and consequently the risk for Alzheimer's disease.

Amyloid beta-Peptides↗

Molecular characterization of the human protein kinase C theta gene locus (PRKCQ).

Members of the protein kinase C (PKC) family of serine/threonine kinases, in particular PKCtheta, play critical roles in the regulation of differentiation and proliferation of T lymphocytes. In this study the genomic structure of the human PRKCQ gene that encodes PKCtheta was determined. Two genomic P1 clones were isolated from human P1 libraries using the PKCtheta cDNA as a probe and have been used to confirm the assignment of the single PRKCQ locus to chromosome 10p15 by FISH analysis. The PRKCQ locus, the first mammalian PKC gene locus characterized so far, spans approximately 62 kb and is composed of 15 coding exons and 14 introns, varying in size between 98 and 16000 bp. All exon-intron boundaries have been determined by long-range PCR and subsequent DNA sequence analysis. Comparison with other known genomic PKC genes reveals a high degree of homology to the genomic organization of the Drosophila melanogaster dPRKC gene. Alignment of the intron positions in the PRKCQ gene with the intron locations in the dPRKC gene indicates that the sites of seven of the 14 PRKCQ introns are exactly conserved. Exons 5 (32 bp), 11 (174 bp) and 12 (92 bp) share highest similarity in size, organization and primary structure with their counterparts in the Drosophila gene. On the basis of this knowledge of the genomic PRKCQ locus, a directed search for potential genetic polymorphisms and/or genetic abnormalities involved in human genetic disease(s) can now be initiated.

Animals↗

Epidural application of ionomeric cement implants. Experimental and clinical results.

During setting and hardening, the hybrid bone substitute ionomeric cement (Ionocem) achieves a stable and durable bond with the apatite of the adjacent bone without interpository soft tissue. Fluid contact during setting results in the release of aluminium ions which may reach critical levels as high as 3000 micrograms/l. On epidural application it is, therefore, essential to prevent cement constituents from gaining access to the intradural space. After the cement has hardened, the presence of aluminium is demonstrable in the adjacent bone to a maximum depth of 20 microns (EDX microanalysis). In rabbits, epidural placement of freshly mixed cement causes slight thickening of the dura. There is reason to believe that human dura, with a thickness 10 times greater, is impermeable to components of the cement. After epidural application of the freshly mixed cement in the frontobasal and laterobasal regions and at the skull cap and petrous apex, 76 patients in all have been followed for up to 6.5 years. During this period no complications have arisen and functional (and cosmetic) results are promising. The availability of preformed implants (Ionoroc, Ionocast) permitted the peridural placement of minimal quantities of freshly mixed cement. These implants were fixed to localized sites on the adjacent calvarial bone by use of Ionocem. Notwithstanding the stringent manufacturer guidelines, there have been reports in the literature that during the vulnerable stage of setting neurotoxic aluminium ions were released into the dural space with a fatal outcome in two cases. In view of potential intradural complications, such as may occur in case of dural leaks, it was considered that further application of the material adjacent to the dura was no longer warranted. The production of Ionocem was discontinued in May 1995.

Aluminum Silicates↗

[Long-term outcome after reconstruction of the cranial base with ionomer cement].

BACKGROUND: Congenital, posttraumatic, inflammatory or tumours skull base lesions with CSF leakage require reconstruction to mechanically stabilize the CNS and to securely seal the CSF space. PATIENTS AND METHODS: Ionomeric cement was used from 1988 until 1994 in 44 patients for skull base reconstruction at the Department of Otolaryngology-Head and Neck Surgery, University of Würzburg. Thirty-five patients were reexamined. The longest follow-up time was 8 years. The program for the present follow-up study comprised a general ENT and neurological examination as well as CT scans of the skull base, MRI tomography of the CNS, and the determination of the aluminium plasma concentration. RESULTS: None of the patients reexamined presented with complaints. Neurological examinations and MRI tomography in all patients did not reveal any pathological finding related to ionomeric cement application. Aluminium plasma concentrations in patients who received ionomeric cement implantations were not significantly elevated when compared to controls. General ENT examinations and CT scans in thirty-two patients demonstrated regular postoperative findings. The cement at the anterior skull base was not covered completely by mucosa in three patients. In one these cases, CT scans revealed dislocation of the ionomeric cement so that revision surgery was performed for removal. None of the patients to date presented with a CSF leak. CONCLUSION: Long-term results of the present study show that ionomeric cement is a suitable material for closure of osseous skull base lesions to permanently seal the CSF space. These results, however, can only be obtained when handling and application of the material is adequate. Unfortunately, the production of ionomeric cement has been stopped since 1995 following four cases of aluminium encephalopathy reported in the literature.

Adult↗

Novel interaction of apolipoprotein(a) with beta-2 glycoprotein I mediated by the kringle IV domain.

Lipoprotein(a) [Lp(a)], which has been shown to interact with fibrin(ogen) and other components of the blood clotting cascade, is a major independent risk factor for atherothrombotic disease in humans. The physiological function(s) of Lp(a), as well as the precise mechanism(s) by which high plasma levels of Lp(a) increase risk are unknown. Identification of further potential apo(a)-protein ligands may be crucial to illuminate apo(a)'s function(s) and pathophysiological properties. We used the repetitive apo(a) kringle IV type 2, which is variable in number in apo(a), to screen a human liver cDNA library by the yeast two-hybrid interaction trap system. Among 11 positive clones that emerged from the screen, eight clones were identified as beta-2 glycoprotein I and one as fibronectin. Coimmunoprecipitation experiments confirmed that beta-2 glycoprotein I and apo(a)/Lp(a) interact in human plasma and in cell culture supernatants of COS-1 cells, which ectopically expressed apo(a). The apo(a)-beta2-glycoprotein I interaction indicates new potential roles for Lp(a) in fibrinolysis and autoimmunity.

Apolipoproteins↗

Conventional PKC-alpha, novel PKC-epsilon and PKC-theta, but not atypical PKC-lambda are MARCKS kinases in intact NIH 3T3 fibroblasts.

Phosphorylation of myristoylated alanine-rich protein kinase C substrate (MARCKS) in intact cells has been employed as an indicator for activation of protein kinase C (PKC). Specific PKC isoenzymes responsible for MARCKS phosphorylation under physiological conditions, however, remained to be identified. In our present study using stably transfected NIH 3T3 cell clones we demonstrate that expression of constitutively active mutants of either conventional cPKC-alpha or novel nPKC-epsilon increased phosphorylation of endogenous MARCKS in the absence of phorbol 12,13-dibutyrate in intact mouse fibroblasts, implicating that each of these PKC isoforms itself is sufficient to induce enhanced MARCKS phosphorylation. Similarly, ectopic expression of a constitutively active mutant of PKC-theta significantly increased MARCKS phosphorylation compared to vector controls, identifying PKC-theta as a MARCKS kinase. The PKC-specific inhibitor GF 109203X (bisindolylmaleimide I) reduced MARCKS phosphorylation in intact cells at a similar dose-response as enzymatic activity of recombinant isoenzymes cPKC-alpha, nPKC-epsilon, and nPKC-theta in vitro. Consistently, phorbol 12,13-dibutyrate-dependent MARCKS phosphorylation was significantly reduced in cell lines expressing dominant negative mutants of either PKC-alpha K368R or (dominant negative) PKC-epsilon K436R. The fact, that the constitutively active PKC-lambda A119E mutant did not alter the MARCKS phosphorylation underscores the assumption that atypical PKC isoforms are not involved in this process. We conclude that under physiological conditions, conventional cPKC-alpha and novel nPKC-epsilon, but not atypical aPKC-lambda are responsible for MARCKS phosphorylation in intact NIH 3T3 fibroblasts.

3T3 Cells↗

trans-Activation of the HIV type 1 promoter by 7,8-dihydroneopterin in vitro.

Infection with human immunodeficiency virus type 1 and 2 is associated with elevated concentrations of neopterin, released in large quantities by human macrophages on stimulation with interferon gamma. Evidence has suggested a potential role of neopterin derivatives in oxygen radical-mediated processes. Here we show that the redox-sensitive transcription factors AP-1 and NF-kappaB are activated by 7,8-dihydroneopterin, either directly (AP-1), or by the synergistic action with tumor necrosis factor alpha (NF-kappaB). We could further demonstrate that 7,8-dihydroneopterin enhances HIV-1 expression as shown in transient transfection assays using HIV-1 CAT promoter-reporter gene constructs. In sera of HIV+ patients 7,8-dihydroneopterin significantly correlated with neopterin and HIV-1 p24 antigen. On the basis of our data we therefore assume that 7,8-dihydroneopterin might augment progression to higher stages of HIV-associated disease.

Biopterins↗

[Oropharyngeal fat hernia in Madelung's neck as a rare cause of acute dysphagia].

BACKGROUND: Multiple symmetric lipomatosis (MSL) is a rare disorder clinically characterized by the presence of nonencapsulated lipomatous tissue around the neck, shoulders, and upper part of the thorax. The entity is frequently associated with peripheral neuropathy, chronic hepatopathy, and alcoholism. Despite of the cosmetically aspect of the patient with a reduced range of motion of the head and neck, MSL is asymptomatic in most cases. CASE REPORT: A 61-year-old man with Madelung's disease complaining of acute dysphagia is presented. Magnetic resonance imaging revealed an oropharyngeal fat prolapse originating from the lipomatous tissue at the neck site. A symmetric resection of the neck fat with removal of the fat prolapse resulted in a satisfying functional and cosmetically outcome. CONCLUSION: To prevent complications and cosmetically disfigurement, early surgical intervention is recommended.

Acute Disease↗

[Long-term outcome after frontal sinus obliteration with an ionomer bone substitute in the cat. I: Histological results].

BACKGROUND: Osteoplastic frontal sinus surgery in combination with sinus obliteration may occasionally be performed for indications such as severe sinus inflammations, extensive wall fractures involving the nasofrontal duct, or osteomas. The material most frequently used for this obliteration is autogenous adipose tissue. Autografts such as muscle, cartilage, and bone chips have been also recommended for this purpose. In order to avoid the surgical procedure required for harvesting an autograft from other body sites, alloplastic materials have been suggested for frontal sinus obliteration. METHODS: In an animal study using cats, the mucous lining of the frontal sinus was removed, the nasofrontal duct sealed with semifluid ionomer cement, and the cavity filled up with a solid and porous ionomer-based microimplant. RESULTS: Histological investigations were performed up to two years after surgery. Increasing obliteration of the sinus cavity by bone regeneration, starting from the sinus wall, as well as formation of connective tissue between the cement grains was detected as early as one month after implantation. Osteoblasts lining the osteoid layer were considered to be an indication of active bone regeneration. Osteogenesis inside the sinus cavity continuously progressed during the following months. Two years after implantation, osteoid and newly mineralized bone encircled the microimplants leading to an almost complete obliteration. There was no evidence for mucosal regeneration or foreign body reaction. CONCLUSIONS: Because of its osteoconductive effect, biocompatibility, and biostability the ionomer-based microimplant is a suitable alloplastic material for frontal sinus obliteration.

Animals↗

[Long-term outcome after obliteration of the cat frontal sinus with ionomer bone substitute. II: Histomorphometric measurements].

BACKGROUND: Stenosis or occlusion of the nasofrontal duct with subsequent recurrent frontal sinusitis or mucocele formation may require osteoplastic surgery in combination with frontal sinus obliteration. METHODS: To study its suitability as an implant material in sinuses, granular ionomeric cement was applied for frontal sinus obliteration in 15 cats. The frontal sinus specimens were processed for histological studies after 1, 3, 6, 12, and 24 months, respectively. To obtain quantitative data from the histological sections, areas of osteoid, connective tissue, and implanted ionomeric cement were measured with a computerized digitizing pad and compared to the total area of each frontal sinus. To our knowledge, histomorphometrical analysis of mesenchymal tissue reactions in close contact to an alloplastic material inside the frontal sinus cavity has not been described to date. RESULTS: Bone regeneration, starting from the sinus wall, was detected as early as one month after implantation. The quantitative data for osteoid indicated increasing osteoneogenesis and decreasing connective tissue growth inside the sinus cavity over the period of investigation. Two years after surgery, the osteoid represented 43.5%, the connective tissue 10.7%, and the ionomeric cement 45% of the whole cavity. The implanted cement did not show a significant degradation after two years. CONCLUSION: The results of the present study demonstrated the biocompatibility and biostability of the ionomer-base microimplant.

Animals↗

[Extramedullary plasmacytoma--manifestation in petrous bone].

BACKGROUND: Extramedullary plasmocytoma of the temporal bone is a rare neoplastic disorder. Only a very few cases are described in the world literature. CASE: We report on a patient who presented with the clinical signs of a glomus jugular tumor. Postoperative histological evaluation revealed an extramedullary plasmocytoma of the temporal bone. CONCLUSION: If a glomus tumor is suspected, histological investigation appears necessary if surgery is not possible or is contraindicated.

Angiography↗

Role of 7,8-dihydroneopterin in T-cell apoptosis and HTLV-1 transcription in vitro.

Adult T-cell leukemia is associated with high levels of neopterin, released in large amounts from human macrophages upon stimulation with interferon-gamma. Recent data suggested a potential role of neopterin-derivatives in oxygen radical-mediated processes, and evidence accumulates that oxidative stress is involved in the pathogenesis of viral diseases. We now report that increased concentrations of 7,8-dihydroneopterin may lead to enhanced apoptosis and disturbance of the redox-balance of human leukemic Jurkat T cells. Additionally, we demonstrate that 7,8-dihydroneopterin and hydrogen peroxide activate the type 1 human T-cell leukemia virus (HTLV-1) long terminal repeat (LTR). Furthermore, we found that the activity of the HTLV-1 transactivator protein Tax is amplified by an elevated concentration of 7,8-dihydroneopterin. Tax did not significantly augment 7,8-dihydroneopterin mediated apoptosis. Based on our data we propose that 7,8-dihydroneopterin may be involved in the progression to higher stages of HTLV-1 associated disease.

Antioxidants↗

Oscillations in the peroxidase-oxidase reaction: a comparison of different peroxidases.

The nonlinear behavior of the peroxidase-oxidase reaction was studied using structurally different peroxidases. For the first time sustained oscillations with peroxidases other than horseradish peroxidase in a single-enzyme system were observed. All peroxidases that showed significant oxidase activity were able to generate sustained oscillations. When adjusting the overall reaction rate, either of the two modifiers 2,4-dichlorophenol or Methylene blue could be omitted from the reaction. Due to the observation of different enzyme intermediates when using different peroxidases, we conclude that the mechanisms responsible for oscillatory kinetics may vary from one peroxidase to the other.

Animals↗

Direct interaction between protein kinase C theta (PKC theta) and 14-3-3 tau in T cells: 14-3-3 overexpression results in inhibition of PKC theta translocation and function.

Recent studies have documented direct interactions between 14-3-3 proteins and several oncogene and proto-oncogene products involved in signal transduction pathways. Studies on the effects of 14-3-3 proteins on protein kinase C (PKC) activity in vitro have reported conflicting results, and previous attempts to demonstrate a direct association between PKC and 14-3-3 were unsuccessful. Here, we examined potential physical and functional interactions between PKC theta, a Ca(2+)-independent PKC enzyme which is expressed selectively in T lymphocytes, and the 14-3-3 tau isoform in vitro and in intact T cells. PKC theta and 14-3-3 tau coimmunoprecipitated from Jurkat T cells, and recombinant 14-3-3 tau interacted directly with purified PKC theta in vitro. Transient overexpression of 14-3-3 tau suppressed stimulation of the interleukin 2 (IL-2) promoter mediated by cotransfected wild-type or constitutively active PKC theta, as well as by endogenous PKC in ionomycin- and/or phorbol ester-stimulated cells. This did not represent a general inhibition of activation events, since PKC-independent (but Ca(2+)-dependent) activation of an IL-4 promoter element was not inhibited by 14-3-3 tau under similar conditions. Overexpression of wild-type 14-3-3 tau also inhibited phorbol ester-induced PKC theta translocation from the cytosol to the membrane in Jurkat cells, while a membrane-targeted form of 14-3-3 tau caused increased localization of PKC theta in the particulate fraction in unstimulated cells. Membrane-targeted 14-3-3 tau was more effective than wild-type 14-3-3 tau in suppressing PKC theta-dependent IL-2 promoter activity, suggesting that 14-3-3 tau inhibits the function of PKC theta not only by preventing its translocation to the membrane but also by associating with it. The interaction between 14-3-3 and PKC theta may represent an important general mechanism for regulating PKC-dependent signals and, more specifically, PKC theta-mediated functions during T-cell activation.

14-3-3 Proteins↗

Protein kinase C-theta isoenzyme selective stimulation of the transcription factor complex AP-1 in T lymphocytes.

T-lymphocyte stimulation requires activation of several protein kinases, including the major phorbol ester receptor protein kinase C (PKC), ultimately leading to induction of lymphokines, such as interleukin-2 (IL-2). The revelant PKC isoforms which are involved in the activation cascades of nuclear transcription factors involved in IL-2 production have not yet been clearly defined. We have examined the potential role of two representative PKC isoforms in the induction of the IL-2 gene, i.e., PKC-alpha and PKC-theta, the latter being expressed predominantly in hematopoietic cell lines, particularly T cells. Similar to that of PKC-alpha, PKC-theta overexpression in murine EL4 thymoma cells caused a significant increase in phorbol 12-myristate 13-acetate (PMA)-induced transcriptional activation of full-length IL-2-chloramphenicol acetyltransferase (CAT) and NF-AT-CAT but not of NF-IL2A-CAT or NF-kappaB promoter-CAT reporter gene constructs. Importantly, the critical AP-1 enhancer element was differentially modulated by these two distinct PKC isoenzymes, since only PKC-theta but not PKC-alpha overexpression resulted in an approximately 2.8-fold increase in AP-1-collagenase promoter CAT expression in comparison with the vector control. Deletion of the AP-1 enhancer site in the collagenase promoter rendered it unresponsive to PKC-theta. Expression of a constitutively active mutant PKC-theta A148E (but not PKC-alpha A25E) was sufficient to induce activation of AP-1 transcription factor complex in the absence of PMA stimulation. Conversely, a catalytically inactive PKC-theta K409R (but not PKC-alpha K368R) mutant abrogated endogenous PMA-mediated activation of AP-1 transcriptional complex. Dominant negative mutant Ha-RasS17N completely inhibited the PKC-O A148E-induced signal, PKC-O. Expression of a constitutively active mutant PKC-O A148E (but not PKC-alpha A25E) was sufficient to induce activation of AP-1 transcription factor complex in the absence of PMA stimulation. Conversely, a catalytically inactive PKC-O K409R (but not PKC-alpha K368R) mutant abrogated endogenous PMA-mediated activation of AP-1 transcriptional complex. Dominant negative mutant Ha-enRasS17N completely inhibited in the PKC-O A148E-induced signal, identifying PKC-theta as a specific constituent upstream of or parallel to Ras in the signaling cascade leading to AP transcriptional activation.

Animals↗