Search PubMed⌕ Search

Biomedical subjects

A Giese

Publications and source records attributed to A Giese.

At least 55 records · Page 3Linked to original sources

Allogeneic astrocytoma in immune competent dogs.

We have induced in canines long-term immune tolerance to an allogeneic cell line derived from a spontaneous canine astrocytoma. Allogeneic astrocytoma cells were implanted endoscopically into the subcutaneous space of fetal dogs before the onset of immune competency (< 40th gestational day). At adulthood, dogs rendered tolerant successfully serve as recipients of intracranial transplants of their growing allogeneic, subcutaneous tumor. Transplanted dogs subsequently develop a solid brain tumor with histological features similar to the original astrocytoma. This model may allow rapid development and evaluation of new therapies for brain tumors, as well as afford tumor biology studies that are untenable in smaller, immune incompetent, or inbred animals harboring less representative tumors.

Animals↗

"...those left behind." Biology and oncology of invasive glioma cells.

Although significant technical advances in surgical and radiation treatment for brain tumors have emerged in recent years, their impact on clinical outcome for patients has been disappointing. A fundamental source of the management challenge presented by glioma patients is the insidious propensity of the malignant cells to invade into adjacent normal brain. Invasive tumor cells escape surgical removal and geographically dodge lethal radiation exposure. Recent improved understanding of the biochemistry and molecular determinants of glioma cell invasion provide valuable insight to the underlying biological features of the disease, as well as illuminating possible new therapeutic targets. Heightened commitment to migrate and invade is accompanied by a glioma cell's reduced proliferative activity. The microenvironmental manipulations coincident to invasion and migration may also impact the glioma cell's response to cytotoxic treatments. These collateral aspects of the glioma cell invasive phenotype should be further explored and exploited as novel antiglioma therapies.

Animals↗

Thromboxane synthase regulates the migratory phenotype of human glioma cells.

The capacity of glial tumor cells to migrate and diffusely infiltrate normal brain compromises surgical eradication of the disease. Identification of genes associated with invasion may offer novel strategies for anti-invasive therapies. The gene for TXsyn, an enzyme of the arachidonic acid pathway, has been identified by differential mRNA display as being overexpressed in a glioma cell line selected for migration. In this study TXsyn mRNA expression was found in a large panel of glioma cell lines but not in a strain of human astrocytes. Immunohistochemistry demonstrated TXsyn in the parenchyma of glial tumors and in reactive astrocytes, whereas it could not be detected in quiescent astrocytes and oligodendroglia of normal brain. Glioma cell lines showed a wide range of thromboxane B2 formation, the relative expression of which correlated with migration rates of these cells. Migration was effectively blocked by specific inhibitors of TXsyn, such as furegrelate and dazmegrel. Other TXsyn inhibitors and cyclooxygenase inhibitors were less effective. Treatment with specific inhibitors also resulted in a decrease of intercellular adhesion in glioma cells. These data indicate that TXsyn plays a crucial role in the signal transduction of migration in glial tumors and may offer a novel strategy for anti-invasive therapies.

Arachidonic Acids↗

Classification of sporadic Creutzfeldt-Jakob disease based on molecular and phenotypic analysis of 300 subjects.

Phenotypic heterogeneity in sporadic Creutzfeldt-Jakob disease (sCJD) is well documented, but there is not yet a systematic classification of the disease variants. In a previous study, we showed that the polymorphic codon 129 of the prion protein gene (PRNP), and two types of protease-resistant prion protein (PrP(Sc)) with distinct physicochemical properties, are major determinants of these variants. To define the full spectrum of variants, we have examined a series of 300 sCJD patients. Clinical features, PRNP genotype, and PrP(Sc) properties were determined in all subjects. In 187, we also studied neuropathological features and immunohistochemical pattern of PrP(Sc) deposition. Seventy percent of subjects showed the classic CJD phenotype, PrP(Sc) type 1, and at least one methionine allele at codon 129; 25% of cases displayed the ataxic and kuru-plaque variants, associated to PrP(Sc) type 2, and valine homozygosity or heterozygosity at codon 129, respectively. Two additional variants, which included a thalamic form of CJD and a phenotype characterized by prominent dementia and cortical pathology, were linked to PrP(Sc) type 2 and methionine homozygosity. Finally, a rare phenotype characterized by progressive dementia was linked to PrP(Sc) type 1 and valine homozygosity. The present data demonstrate the existence of six phenotypic variants of sCJD. The physicochemical properties of PrP(Sc) in conjunction with the PRNP codon 129 genotype largely determine this phenotypic variability, and allow a molecular classification of the disease variants.

Adult↗

Familial Creutzfeldt-Jakob disease with a novel 120-bp insertion in the prion protein gene

The clinical course, neuropathological features, and genetic findings in 3 members of a German family carrying a novel 120-bp insertion in the prion protein (PrP) gene are described. Genetic analysis of the mutated allele revealed a sequence of five extra octapeptide repeats, distinct from those of the two previously reported families with an insertion of this size. There was distinctive variation in the clinical course and the onset and duration of the illness in the documented subjects. Neuropathological evaluation showed neuronal loss and gliosis in the neocortex of the 3 examined cases; spongiform degeneration was found in 2 of them. PrP immunoreactivity of unusual morphology and distinct distribution was present in the cerebellum and neocortex ("blurred staining") of 2 examined cases. One subject showed features usually found in sporadic Creutzfeldt-Jakob disease with a punctate type of PrP deposition in the cerebellum. In addition, there were some plaque-like PrP aggregates morphologically similar to the other 2 cases in the molecular layer of the cerebellum, and unusual PrP immunoreactivity ("fleecy staining") was found in the neocortex. The clinicopathological heterogeneity in the documented family is in accordance with the phenotypic variability associated with previously reported insertions.

Journal Article↗

Familial Creutzfeldt-Jakob disease with a novel 120-bp insertion in the prion protein gene.

The clinical course, neuropathological features, and genetic findings in 3 members of a German family carrying a novel 120-bp insertion in the prion protein (PrP) gene are described. Genetic analysis of the mutated allele revealed a sequence of five extra octapeptide repeats, distinct from those of the two previously reported families with an insertion of this size. There was distinctive variation in the clinical course and the onset and duration of the illness in the documented subjects. Neuopathological evaluation showed neuronal loss and gliosis in the neocortex of the 3 examined cases; spongiform degeneration was found in 2 of them. PrP immunoreactivity of unusual morphology and distinct distribution was present in the cerebellem and neocortex ("blurred staining") of 2 examined cases. One subject showed features usually found in sporadic Creutzfeldt-Jacob disease with a punctate type of PrP deposition in the cerebellum. In addition, there were some plaque-like PrP aggregates morophologically similar to the other 2 cases in the molecular layer of the cerebellum, and unusual Prp immunoreactivity ("fleecy staining") was found in the neocortex. The clinicopathological heterogeneity in the documented family is in accordance with the phenotypic variability associated with previously reported insertions.

Adult↗

Diagnosis of Creutzfeldt-Jakob disease by measurement of S100 protein in serum: prospective case-control study.

OBJECTIVE: To analyse serum concentrations of brain specific S100 protein in patients with Creutzfeldt-Jakob disease and in controls. DESIGN: Prospective case-control study. SETTING: National Creutzfeldt-Jakob disease surveillance unit. SUBJECTS: 224 patients referred to the surveillance unit with suspected Creutzfeldt-Jakob disease and 35 control patients without dementia. MAIN OUTCOME MEASURE: Serum concentration of S100 protein in patients with Creutzfeldt-Jakob disease, in patients with other diseases causing dementia, and in the control group. RESULTS: Of the 224 patients with suspected Creutzfeldt-Jakob disease, 65 were classed as definitely having the disease after neuropathological verification, an additional 6 were classed as definitely having the disease as a result of a genetic mutation, 43 as probably having the disease, 36 as possibly having the disease, and 74 patients were classed as having other disease. In the 108 patients classed as definitely or probably having Creutzfeldt-Jakob disease the median serum concentration of S100 was 395 pg/ml (SD 387 pg/ml). This was significantly higher than concentrations found in the 74 patients classed as having other diseases (median 109 pg/ml; SD 177 pg/ml; P = 0.0001). At a cut off point of 213 pg/ml sensitivity for the diagnosis of the disease was 77.8% (95% confidence interval 68.8% to 85.2%) and specificity was 81.1% (70.3% to 89.3%). There was a significant difference in survival at different concentrations of S100 in Kaplan-Meier curves (P = 0.023). CONCLUSION: Measurement of serum concentrations of S100 is a valuable tool which can be used more easily than tests on cerebrospinal fluid in the differential diagnosis of Creutzfeldt-Jakob disease. More studies are needed to determine whether serial testing of serum S100 improves diagnostic accuracy.

Biomarkers↗

Altered gene expression in human astrocytoma cells selected for migration: I. Thromboxane synthase.

Human glioma cells from a long-term cell line were selected for their ability to migrate on a glioma-derived extracellular matrix. When tested over 28 serial passages, the migration-selected strain showed a genetically stable, enhanced migration rate compared with the parental cells. Proliferation studies demonstrated that the growth rate of migration-selected cells was slightly arrested. Both the selected strain and the parental culture showed anchorage-independent growth in soft agarose and were tumorigenic in athymic mice. Using molecular genetic strategies' display to isolate genes expressed differentially between the 2 populations, a 300-bp sequence homologous to thromboxane synthase was upregulated in the migration-selected cells relative to the parental cells. Expression levels of thromboxane synthase were highly elevated in the migration-selected cells when assessed by RNAse-protection assay and by flow cytometry. Two specific thromboxane synthase inhibitors, Dazmegrel and Furegrelate, reduced the migration rate of the migration-selected cells to a rate equal to or less than the rate exhibited by the parental cells, respectively. The inhibitors effect on the parental cells was inconsequential. These results suggest that aberrations in the regulation of thromboxane synthase expression or activity may influence the motility of human glioma cells.

Animals↗

Role of microglia in neuronal cell death in prion disease.

To elucidate the role played by the prion protein in scrapie pathogenesis, we performed experiments with PrP27-30 isolated from scrapie-infected hamster brains in cell culture and studied in vivo the temporal and spatial correlation between deposition of the disease-associated isoform of the prion protein (PrPSc), microglial activation and neuronal cell death in mice infected with scrapie strains 79A, ME7 and RML. The results presented here show that cellular expression of PrPc and the presence of microglia are necessary for the neurotoxicity of PrPSc in vitro. In vivo, accumulation of protease-resistant prion protein was detected early in the incubation period using the histoblot technique. Microglial activation was also detected early in the incubation period of all models studied. Both the time course and the spatial distribution of microglial activation closely resembled the pattern of PrPSc deposition. Microglial activation clearly preceded the detection of apoptotic neuronal cell death which was assessed using the in situ end-labeling technique (ISEL). Taken together, our results indicate that microglial activation is involved in the neurotoxicity of PrPSc both in vitro and in vivo.

Animals↗

Cardiac involvement in proximal myotonic myopathy.

Proximal myotonic myopathy (PROMM) is a recently described autosomal dominantly inherited disorder resulting in proximal muscles weakness, myotonia, and cataracts. A few patients with cardiac involvement (sinus bradycardia, supraventricular bigeminy, conduction abnormalities) have been reported. The cases of three relatives with PROMM (weakness of neck flexors and proximal extremity muscles, calf hypertrophy, myotonia, cataracts) are reported: a 54 year old man, his 73 year old mother, and 66 year old aunt. All three presented with conduction abnormalities and one had repeated, life threatening, sustained monomorphic ventricular tachycardia. This illustrates that severe cardiac involvement may occur in PROMM.

Aged↗

Phenotypic variability in fatal familial insomnia (D178N-129M) genotype.

OBJECTIVE: To report the clinical and pathologic features of patients with the D178N-129M mutation living in Germany. METHODS: Patients with clinically suspected Creutzfeldt-Jakob disease (CJD) were seen in an ongoing, prospective epidemiologic study from June 1993 to August 1997 throughout Germany. Suspect patients were referred to the CJD unit by the participating hospitals or physicians. Patients were seen by a physician, and each patient underwent a detailed neurologic examination. Prion protein gene (PRNP) analysis was performed to distinguish patients with familial forms of CJD. RESULTS: The constellation D178N-129M was identified in eight individuals; in one patient, the diagnosis was made by neuropathologic examination. Four affected men and five women belong to eight unrelated families. A family history of a neurodegenerative disorder was recalled in only five patients. In contrast to the first reported fatal familial insomnia (FFI) patient, none of our patients complained of severe, untreatable insomnia in the early stages. Dysautonomia was observed in varying degrees in most patients. The clinical course of these patients resembled sporadic CJD. In six patients, brain tissue was available for neuropathologic study. In one patient, the neuropathologic examination showed changes that were more reminiscent of forms of sporadic CJD; in the remaining five, the histopathology was typical of FFI. CONCLUSIONS: The clinical presentation in patients with FFI may vary to a great extent. Genotyping of the patients was crucial in providing laboratory confirmation of the diagnosis of FFI, even when there was no family history of a prion disease.

Adult↗

Cell death in prion disease.

Prion diseases are neurodegenerative transmissible diseases. The infectious agent, termed prion, is thought to consist of an altered host-encoded protein. The pathogenesis of these diseases which typically in a very short time lead to rampant nerve cell death and astrocytic gliosis is poorly understood. Investigations using the in situ endlabeling technique and electron microscopy in a scrapie model in the mouse (79A strain) show that nerve cell death is due to apoptosis. A cell culture model using a synthetic peptide of the prion protein (PrP106-126) shows that this peptide is toxic only to normal neurons whereas nerve cells derived from PrP knock-out (PrP0/0) mice are unaffected by this neurotoxic effect. In addition, microglia play a crucial part in this process by secreting reactive oxygen species. Experiments in animals will have to show whether these cell culture findings adequately reflect the in vivo pathogenesis.

Amino Acid Sequence↗