PubMed Health⌕ Search

Biomedical subjects

Elisabeth Lindeck-Pozza

Publications and source records attributed to Elisabeth Lindeck-Pozza.

4 recordsLinked to original sources

Creutzfeldt-Jakob disease and inclusion body myositis: abundant disease-associated prion protein in muscle.

Pathologicalprion protein (PrP(Sc)) is the hallmark of prion diseases affecting primarily the central nervous system. Using immunohistochemistry, paraffin-embedded tissue blot, and Western blot, we demonstrated abundant PrP(Sc) in the muscle of a patient with sporadic Creutzfeldt-Jakob disease and inclusion body myositis. Extraneural PrP(C)-PrP(Sc) conversion in Creutzfeldt-Jakob disease appears to become prominent when PrP(C) is abundantly available as substrate, as in inclusion body myositis muscle.

Aged↗

Complement activation in human prion disease.

The central event in the neuropathological process of prion diseases (PrD) is the accumulation of abnormal prion protein accompanied by severe neuronal loss. Despite the infectious nature of these diseases, no prominent immune response has been detected yet. However, recent studies have shown that complement, a component of the innate immune system, is involved in the early pathogenesis of experimental prion infection. Here we demonstrate, in the diseased human brains, the presence of active compounds of the complement system, like C1q and C3b, in extracellular disease-associated prion protein deposits and the membrane attack complex in neurons. The neuronal localization of the membrane attack complex correlates well with the severity of disease-specific pathology and TUNEL labeling of neurons, irrespective of genotype or molecular phenotype of human prion diseases.

Adolescent↗

Nucleus-specific alteration of raphe neurons in human neurodegenerative disorders.

Neurodegenerative diseases share symptoms suggested to be related to the serotonergic system. To evaluate the involvement of serotonergic raphe nuclei, we compared the percentage of neurons synthesizing serotonin in the nucleus centralis superior (NCS), raphe obscurus and pallidus (NROP) in Alzheimer's disease (AD), progressive supranuclear palsy (PSP), Parkinson's disease (PD), multiple system atrophy (MSA), and control brains. We used immunohistochemistry for tryptophan hydroxylase (TpOH), phosphorylated tau, and alpha-synuclein. We observed a significant decrease in the NCS in the NROP in AD, but a significant increase in PSP and MSA. Cytoskeletal pathology was present in the NCS and NROP to a variable degree. We conclude that there is disease- and nucleus-specific alteration of serotonin synthesis in the raphe.

Aged↗

Visualizing central effects of S-adenosyl-L-methionine (SAMe), a natural molecule with antidepressant properties, by pharmaco-EEG mapping.

In a double-blind, placebo-controlled, cross-over study, the central effects of the natural molecule S-adenosyl-L-methionine (SAMe), or ademetionine (ADE), used in low doses as a nutraceutical and in higher doses as a pharmaceutical, were investigated by means of EEG mapping and psychometry. Ten young, normal healthy volunteers of both sexes, with a mean age of 25.2+3.9 yr received, in random order, infusions of 800 mg ADE in 250 ml of isotonic solution, and placebo consisting of 250 ml of isotonic solution administered over 30 min for 7 d, with a wash-out period of 3 wk in between. EEG recordings and psychometric tests were carried out 0, 1, 3 and 6 h after drug administration on days 1 and 7. While there were no significant changes in psychometric findings, multivariate analyses of the EEG results based on MANOVA/Hotelling T 2 tests demonstrated significant encephalotropic effects of ADE compared to placebo. ADE-induced changes were characterized by a decrease in total power, an increase in absolute delta power and a decrease in absolute alpha and beta power, further by an increase in relative delta and beta power and a decrease in relative alpha power, a slowing of the delta/theta centroid, an acceleration of the alpha centroid as well as a slowing of the centroid of the total power spectrum. These changes are typical of classical antidepressants of the thymoleptic type such as imipramine and amitriptyline. Time-efficacy calculations demonstrated a significant central effect of ADE in the first hour after the first infusion, declining slowly until the third hour and thereafter steeply until the sixth hour; a further significant effect was after 1 wk of daily infusions and in the third hour after one superimposed infusion on day 7 of subacute treatment. Our pharmaco-EEG findings suggest both inhibitory and excitatory drug effects at the neurophysiological level, underlying the antidepressant properties well-documented in clinical trials.

Adult↗