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Biomedical subjects

L Hansen

Publications and source records attributed to L Hansen.

At least 91 records · Page 5Linked to original sources

Abnormal distribution of the non-Abeta component of Alzheimer's disease amyloid precursor/alpha-synuclein in Lewy body disease as revealed by proteinase K and formic acid pretreatment.

The precursor of the non-Abeta component of Alzheimer's disease amyloid (NACP) (also known as alpha-synuclein) is a presynaptic terminal molecule that abnormally accumulates in the plaques of Alzheimer's disease (AD) and in the Lewy bodies (LBs) of Lewy body variant of AD, diffuse Lewy body disease, and Parkinson's disease. To better understand the distribution of NACP/alpha-synuclein and its fragments in the LB-bearing neurons and neurites, as well as to clarify the patterns of NACP/alpha-synuclein compartmentalization, we studied NACP/alpha-synuclein immunoreactivity using antibodies against the C-terminal, N-terminal, and NAC regions after Proteinase K and formic acid treatment in the cortex of patients with LBs. Furthermore, studies of the subcellular localization of NACP/alpha-synuclein within LB-bearing neurons were performed by immunogold electron microscopy. These studies showed that the N-terminal antibody immunolabeled the LBs and dystrophic neurites with great intensity and, to a lesser extent, the synapses. In contrast, the C-terminal antibody strongly labeled the synapses and, to a lesser extent, the LBs and dystrophic neurites. Whereas Proteinase K treatment enhanced NACP/alpha-synuclein immunoreactivity with the C-terminal antibody, it diminished the N-terminal NACP/alpha-synuclein immunoreactivity. Furthermore, formic acid enhanced LB and dystrophic neurite labeling with both the C- and N-terminal antibodies. In addition, whereas without pretreatment only slight anti-NAC immunoreactivity was found in the LBs, formic acid pretreatment revealed an extensive anti-NAC immunostaining of LBs, plaques, and glial cells. Ultrastructural analysis revealed that NACP/alpha-synuclein immunoreactivity was diffusely distributed within the amorphous electrodense material in the LBs and as small clusters in the filaments of LBs and neurites. These results support the view that aggregated NACP/alpha-synuclein might play an important role in the pathogenesis of disorders associated with LBs.

Cadaver↗

Patellofemoral pain syndrome in athletes: a 5.7-year retrospective follow-up study of 250 athletes.

Two hundred fifty athletes from a sports clinic, 122 (49%) females and 128 (51%) males (mean age 21.1 years), who were diagnosed as having patellofemoral pain syndrome (PFPS) and were instructed to practice vastus medialis training, returned a completed questionnaire after an average of 5.7 years' follow-up. Sixty-eight (27%) were pain-free for an average of 8.1 months: 17 (25%) women and 51 (75%) men. As to the remaining 182 (73%) who were still suffering, 95 (52%) had experienced a decrease in pain, 64 (35%) were unchanged and 23 (13%) had experienced an increase in pain. Sixty-eight (37%) described the pain as being mild, 88 (48%) as moderate, and 26 (15%) as severe. Athletic activity was affected in 184 (74%) of the cases, employment in 16 (6%) cases. The prognosis was not correlated with a history of trauma or with age. Athletes with a hypermobile patella had a less good prognosis (r = 0.23, p = 0.04). For about half of the athletes the prognosis was good, although the other half obtained an inadequate result, using a self-training program.

Adolescent↗

The influence of stereoisomerism on the pharmacokinetics of Tc radiopharmaceuticals.

The influence of stereoisomerism on the pharmacokinetics of Tc mono-oxo complexes is reviewed. Tc(V) monooxo complexes formed with N/S ligands have four donor groups from the ligands in an equatorial plane; the oxo ligand coordinates in an axial position. Stereoisomerism in Tc (V) mono-oxo complexes can be centered within the ligand (carbon atom in the chelate ring or ligating nitrogen of amine donors) or at the Tc. The metal center becomes chiral when an equatorial ligand has a head and a tail (i.e., the two ends of the ligand differ). All types of stereocenters can produce significantly different pharmacokinetic profiles for individual isomers. Thus, biological evaluation of separated stereoisomers is necessary to identify the optimal sterochemical configuration, particularly for radiopharmaceuticals targeted to receptor molecules with low specificity. Because of interspecies variation, there is ultimately no substitute for human testing. Although it is possible that the increase in non-specific binding of agents incorporating L-vs D-amino acids may more than offset any increased receptor binding, much more information is needed. Stereochemical factors can also lead to unpredictable differences in coordination geometry and thermodynamic preference of a single isomer; thus chemical characterization of stereoisomers continues to be an important component of radiopharmaceutical development.

Humans↗

Targeted disruption of the epidermal growth factor receptor impairs growth of squamous papillomas expressing the v-ras(Ha) oncogene but does not block in vitro keratinocyte responses to oncogenic ras.

We have assessed the role of epidermal growth factor receptor (EGFR) signaling in biological responses to the v-ras(Ha) oncogene using primary keratinocytes from Egfr -/- mice and wild-type littermates. On the basis of several criteria, Egfr -/- keratinocytes were unresponsive to either acute or chronic exposure to several EGFR ligands but were stimulated to proliferate in response to several other mitogens. Although conditioned medium from primary keratinocytes transduced with v-ras(Ha) retrovirus (v-ras(Ha) keratinocytes) was a potent mitogen for wild-type but not Egfr -/- keratinocytes, v-ras(Ha) transduction of primary keratinocytes of either genotype resulted in a strong mitogenic response, arguing against an obligatory role for EGFR activation in v-ras(Ha)-mediated stimulation of keratinocyte proliferation. Infection with high-titer v-ras(Ha) retrovirus altered the keratin expression pattern in keratinocytes of both genotypes, suppressing differentiation-specific keratins K1 and K10 while activating aberrant expression of K8 and K18. In wild-type but not Egfr -/- cultures, K1 and K10 were also suppressed following infection at lower retroviral titers, presumably as a result of paracrine EGFR activation on uninfected cells present in these cultures. Squamous papillomas produced by grafting Egfr -/- v-ras(Ha) keratinocytes onto nude mice were only 21% of the size of wild-type v-ras(Ha) tumors, and a striking redistribution of S-phase cells was detected by immunostaining for bromodeoxyuridine. In Egfr -/- v-ras(Ha) papillomas, the fraction of total labeled nuclei detected in suprabasal layers was increased from 19 to 39%. In contrast, the basal layer labeling index of Egfr -/- papillomas was reduced to 34%, compared to 43% in wild-type tumors. Our results indicate that, although autocrine EGFR signaling is not required for keratinocyte responses to oncogenic ras in culture or benign tumor formation in nude mouse grafts, disruption of this pathway impairs growth of v-ras(Ha) papillomas by a mechanism that may involve alterations in keratinocyte cell cycle progression and/or migration in vivo.

Animals↗

Neuritic plaques in the Lewy body variant of Alzheimer disease lack paired helical filaments.

The Lewy body variant of Alzheimer disease (LBV) is a distinct category of dementia which, unlike pure diffuse Lewy body disease (DLBD), meets clinical and neuropathologic criteria for Alzheimer disease (AD) but differs from pure AD in having a neocortical predominance of diffuse and neuritic plaques (NP), with very few neurofibrillary tangles (NFT). We investigated the immunoreactivity of NP with a monoclonal antibody against paired helical filaments (PHF) composed of phosphorylated microtubule associated protein tau. With routine thioflavin-S preparations, 12 LBV and 14 AD cases had similar numbers of NP, but the LBV had significantly (P < 0.05) fewer NFT per microscopic field in the midfrontal cortex. Among subjects with midfrontal NFT, 81-84% of NP in AD and LBV were anti-PHF positive. Among subjects without midfrontal NFT, 52% of NP in AD but only 12% of NP in LBV cases were anti-PHF positive (P < 0.05). LBV differs from AD in that its NP generally do not contain PHF, unless they are accompanied by neocortical NFT.

Aged↗

Genetic evidence for the involvement of tau in progressive supranuclear palsy.

A dinucleotide repeat polymorphism in a tau intron was identified and used in a case-control study to analyze the genetic association of tau with several neurodegenerative diseases with tau pathology. Subjects with the homozygous tau AO alleles were excessively represented in the progressive supranuclear palsy (PSP) group, compared with the age-matched healthy control group. Consequently, this allele is more frequently found in PSP than in a group of healthy subjects. This trend was not found in Alzheimer's disease or parkinsonism-dementia complex of Guam, both of which are accompanied by major tau pathology. The result suggests a possible involvement of tau in the pathogenesis of PSP.

Base Sequence↗

Genetic variation in the hepatocyte nuclear factor-1 alpha gene in Danish Caucasians with late-onset NIDDM.

Non-insulin-dependent diabetes mellitus (NIDDM) is a phenotypically and genetically heterogeneous disorder. A recent random genome mapping study has localized a locus termed NIDDM2 that maps to the region of chromosome 12 that includes MODY3, one of the three genes responsible for maturity-onset diabetes of the young, a monogenic form of NIDDM characterized by early age of onset and autosomal dominant inheritance. These findings suggest that NIDDM2 and MODY3 may represent different alleles of the same gene. MODY3 has recently been shown to be the gene encoding the transcription factor hepatocyte nuclear factor-1 alpha (HNF-1 alpha) thereby allowing us to determine whether mutations in the HNF-1 alpha gene are present in subjects with late-onset NIDDM. We screened 84 white NIDDM patients of Danish ancestry and found four nucleotide substitutions that changed the sequence of HNF-1 alpha, Ile27-->Leu, Ala98-->Val, Ser487-->Asn and Arg583-->Gln, five nucleotide substitutions that were silent and did not change the amino acid, Leu17, Gly288, Leu459 and Thr515, and five substitutions in the intron regions. The frequencies of the codon 27, 98 and 487 amino acid variants were similar in 245 unrelated NIDDM patients and 242 age-matched control subjects. The Arg583-->Gln mutation was found in 2 of 245 NIDDM patients and in none of the control subjects. Thus, genetic variation in the HNF-1 alpha gene is not a common factor contributing to NIDDM susceptibility in white subjects of Danish ancestry.

Age of Onset↗

Chromosomal mapping and mutational analysis of the coding region of the glycogen synthase kinase-3alpha and beta isoforms in patients with NIDDM.

Activation of glycogen synthesis in skeletal muscle in response to insulin results from the combined inactivation of glycogen synthase kinase-3 (GSK-3) and activation of the protein phosphatase-1, changing the ratio between the inactive phosphorylated state of the glycogen synthase to the active dephosphorylated state. In a search for genetic defects responsible for the decreased insulin stimulated glycogen synthesis seen in patients with non-insulin-dependent diabetes mellitus (NIDDM) and their glucose-tolerant first-degree relatives we have performed mutational analysis of the coding region of the 2 isoforms of GSK-3alpha and GSK-3beta in 72 NIDDM patients and 12 control subjects. No structural changes were detected apart from a few silent mutations. Mapping of the GSK-3alpha to chromosome 19q13.1-13.2 and the GSK-3beta to chromosome 3q13.3-q21 outside known genetic loci linked to NIDDM further makes it unlikely that these genes are involved in the pathogenesis of common forms of NIDDM.

Alleles↗

Alterations in glutamate receptor 2/3 subunits and amyloid precursor protein expression during the course of Alzheimer's disease and Lewy body variant.

Alterations in the processing and patterns of trophic and/or toxic factors might lead to the increased neuronal vulnerability in the entorhinal cortex in Alzheimer's disease (AD) and Lewy body variant (LBV). Therefore, patterns and levels of amyloid precursor protein (APP) and glutamate receptor (gluR) expression in the entorhinal cortex and hippocampus in relation to disease severity were investigated. Sections from the hippocampus and entorhinal cortex were single and double immunolabeled for APP, gluR2/3, and N-methyl-D-aspartate receptor (NMDA-R). Within the hippocampus and entorhinal cortex, image analysis revealed progressively decreased APP and gluR2/3 levels during the course of AD and LBV, whereas levels of NMDA-R were unaltered. Furthermore, the present study showed a positive correlation and close co-localization of APP and gluR2/3 immunoreactivity in neurons, suggesting a possible interaction between these two factors. In conclusion, these data imply that alterations in neuronal APP and gluR2/3 expression in the entorhinal cortex lead to increased susceptibility to neurodegeneration and might be markers of vulnerability.

Alzheimer Disease↗

Subpial vacuolar myelopathy after intrathecal ketamine: report of a case.

Previous studies of intrathecal ketamine use in humans have documented the clinical effects of its administration without reference to local central nervous system (CNS) toxicity (Reich and Silvay, 1989). Although several post-mortem studies in small groups of rabbits, monkeys, and baboons have largely shown no significant CNS damage after intrathecal ketamine use, a study in rats reported vacuolation of dorsal root ganglia (Ahuja, 1983). We report post-mortem CNS histopathological changes of subpial spinal cord vacuolation in a terminally ill cancer patient who received continuous infusion intrathecal ketamine at a rate of 5 mg/day for a duration of 3 weeks.

Anesthetics, Intravenous↗

Identification of two novel missense mutations in the human OB gene.

OBJECTIVE: To clone the human OB gene and to investigate if mutations in the OB gene are related to juvenile onset obesity in Caucasians. DESIGN: Case-cohort study with mutational scanning of the OB gene in an obese cohort and in a population sample of young Caucasians. SUBJECTS: An obese cohort of 156 subjects with juvenile onset obesity and a population sample of 380 healthy young Caucasians. MEASUREMENTS: Various anthropometric and biochemical measures of obesity and insulin sensitivity and single strand conformation polymorphism scanning and nucleotide sequencing. RESULTS: Analysis of the coding region of the OB gene in the 536 participants revealed that one obese subject was heterozygous for a mutation at codon Phe17Leu and one normal weight subject was heterozygous for a mutation at codon Val110Met. The phenotypes of the carriers were not different from matched non-mutation carrying subjects. CONCLUSIONS: Mutations exist in the OB gene among obese as well as lean subjects although they are rare. However, it is unlikely that mutations in the coding region of the OB gene are a common cause of juvenile onset obesity among Caucasians.

Adult↗

Dementia with Lewy bodies versus pure Alzheimer disease: differences in cognition, neuropathology, cholinergic dysfunction, and synapse density.

Dementia with Lewy bodies (DLB) is the second leading cause of cognitive impairment among the elderly. While it is usually accompanied by the neocortical neuritic plaques (NP) and entorhinal neurofibrillary tangles (NFT) characteristic of Alzheimer disease (AD), and so can be construed as a Lewy body variant of AD (LBV), it also occurs in pure form as diffuse Lewy body disease (DLBD). We assessed cognitive status in 17 DLB patients (12 with LBV and 5 with DLBD) and compared the results with 12 AD subjects and 5 controls. We then sought to determine which neuropathologic abnormalities correlated with cognitive impairment. Among DLB cases, neocortical Lewy body (LB) counts, modified Braak stages of NFT burden in the entorhinal cortex, neocortical NP counts, and loss of choline acetyltransferase (ChAT) activity all correlated with dementia severity. Unlike AD, neocortical NFT and anti-synaptophysin reactivity were uncorrelated with DLB dementia. Despite comparable LB counts and ChAT losses, the DLBD were significantly less demented than the LBV patients. We conclude that neocortical LB and ChAT depletion contribute to cognitive impairment in DLB and that concomitant AD pathology in LBV, represented by higher Braak stages and NP, promotes increased dementia severity compared with that encountered in DLBD.

Aged↗

Studies of the impact of a liver glucokinase promoter variant on glucose tolerance and insulin sensitivity index.

Because a frequently occurring nucleotide substitution at position -258 in the liver glucokinase promoter has been reported to be associated with impaired promoter activity, we have examined in Danish Caucasians whether this variant is associated with alterations in glucose tolerance and/or the insulin sensitivity index (Si). Among 246 Danish Caucasian patients with noninsulin-dependent diabetes mellitus, the allelic frequency of the -258 promoter variant was 15.2% (95% confidence interval: 12.0-18.4%) vs. 16.5% (13.2-19.8%) among 242 matched control subjects. In the control group, the glucokinase variant was not related to serum insulin or plasma glucose levels before or during an oral glucose tolerance test. Neither was the gene variant among 380 young, healthy subjects associated with altered Si or altered insulin secretion after an i.v. glucose load. We conclude that in Danish Caucasians, the -258 glucokinase promoter variant has no impact on glucose tolerance, whole-body Si, or insulin secretion.

Adult↗