Impediments to research progress in development of behavioral approaches to treatment and care of persons with Alzheimer's disease.
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Biomedical subjects
Publications and source records attributed to L Berg.
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In several experimental models, synthetic peptides were shown to activate efficiently cytotoxic T-lymphocyte (CTL) responses and therefore represent an attractive strategy to develop new vaccines. However, the mechanisms by which they induce CTL responses are not yet fully understood. Several studies using 15 16-mer peptides previously demonstrated that CD4 helper T cells are required to induce optimal CTL responses with synthetic peptides. However, recently it was suggested that shorter 8 12-mer peptides could have an increased in vivo immunogenicity. In the present study, we therefore investigated if such optimal-length peptides still require CD4+ T-cell help to activate CTL responses. To address this question three synthetic peptides containing different viral CTL epitopes were injected into mice depleted of CD4+ or CD8+ T cells using specific monoclonal antibodies or into mice genetically deficient in those T-cell populations. Our results clearly established that activation of CTL responses by those short optimal peptides does not require CD4+ T-cell help and therefore suggested that high-density binding of peptides to major histocompatibility complex class I molecules on the surface of antigen-presenting cells is required for direct activation of CD8+ T cells, independently of CD4+ T-cell help.
To investigate the in vitro effects of cytokines on the growth of human papillary thyroid carcinoma (PTC) cells, we established six new PTC cell lines, designated BHP 5, 14, 15, 17, 18, and 19, from different patients. We studied the antiproliferative actions of cytokines by using BHP cells, NP cells (PTC cell line), and ARO cells (anaplastic thyroid carcinoma cell line). These cells were treated with various concentrations of tumor necrosis factor-alpha (TNF alpha), interferon-gamma (IFN gamma), interleukin-1 beta (IL-1 beta), and transforming growth factor-beta 1 (TGF beta 1), alone and in combination. Cell proliferation was assessed by [3H]thymidine incorporation and cell number measurement. In BHP cell lines, IFN gamma, IL-1 beta, and TGF beta 1 inhibited [3H]thymidine incorporation and decreased cell number, but TNF alpha stimulated [3H]thymidine incorporation. In NP cells, treatment with each cytokine decreased [3H]thymidine incorporation and cell number. In contrast, the proliferation of ARO cells was either stimulated by or resistant to TNF alpha, IL-1 beta, and TGF beta 1. The effects of these cytokines on [3H]thymidine incorporation were additive in these cell lines. The results suggest that IL-1 beta and TGF beta 1 play a pivotal role in growth inhibition of PTC cells, and the escape from negative control of IL-1 beta and TGF beta 1 may be a step toward anaplastic changes. The additive effects of these cytokines suggest that they act through different pathways.
The presence of senile plaques in the neocortex of apparently nondemented elderly persons often is accepted as part of "normal" aging. Alternatively, because cerebral deposition of beta-amyloid may be a key mechanism in the development of Alzheimer's disease (AD), the presence of beta-amyloid-containing plaques may represent very early AD. To examine the relationships of cognitively normal aging, very mild dementia of the Alzheimer type, and the presence of neocortical senile plaques, we performed clinicopathologic correlation in 21 longitudinally studied healthy elderly subjects (84.5 +/- 6.6 years old at death). Nine subjects had strikingly high plaque densities in the neocortex; two of these subjects died of head injury before which there was no evidence of cognitive impairment. The other seven subjects with high plaque densities had clinical evidence for very mild cognitive impairment (Clinical Dementia Rating score of 0.5) at some time during their course and mildly impaired psychometric performance at last assessment before death. The remaining 12 subjects had no clinical or psychometric impairment and had few or no neocortical AD lesions. These results suggest that senile plaques may not be part of normal aging but instead represent presymptomatic or unrecognized early symptomatic AD. The high density of senile plaques (predominately of the diffuse subtype) in the cortex of subjects just at the threshold of detectable dementia is consistent with the hypothesis that beta-amyloid deposition is an initial pathogenetic event in the development of AD.
Thirteen researchers from five centers in Australia, Germany, the Netherlands, United Kingdom, and United States applied DSM-III-R and Clinical Dementia Rating (CDR) syndrome-level dementia criteria to written vignettes of 100 elderly people identified in clinics or community surveys. Subjects ranged in type from cognitively intact to severely demented and many were also frail, partially sighted, or deaf. This paper concerns reliability within and between centers, and the relationship between reliability and factors such as diagnostic criteria, dementia severity, and respondents' clinical characteristics. Within-center interrater reliability was high, more so for "yes-no" DSM-III-R diagnoses than the multi-level CDR. Between-center rates were lower but still moderate to good. Concordance was lower for intermediate dementia levels than for no dementia and severe dementia. Physical disability made an additional contribution to uncertainty but deafness, poor vision, anxiety, and depression had no discernible effects. Reliability levels are likely to be lower in representative aged populations than in carefully selected clinical groups.
Most dementias in old age are characterized by a progressive course with interindividual variability in pattern and rate of progression. Developing a system for staging such dementia poses a challenge in capturing this variability in a system that will afford comparisons among individuals and predictions of future change. Several core questions underlie the development of such systems: (1) Is there a definable order in which abilities are lost? (2) Which skills and functions should be considered essential for the staging of dementia and what is their relative weight? (3) Can the different skills be captured within one staging system? (4) How is the whole range of function captured, and are the differences between stages clearly defined? (5) Which populations can be rated with each staging system? The determination of this last question is based on understanding which other medical conditions may interfere with the course of dementia and how prior characteristics, such as education, affect ratings on specific scales for the staging of dementia. Several systems for staging dementia in older adults are described. These include the Clinical Dementia Rating, the Global Deterioration Scale/Brief Cognitive Rating Scale/Functional Assessment Staging System, the Six Clinical Phases of Cognitive Decline, the Hierarchic Dementia Scale, and the Functional Capacity Scale. Some aspects of the utility of these systems are reviewed, and the issues for further research are discussed.
Different forms of major histocompatibility complex (MHC) class I heavy chains are known to be expressed on the cell surface, including molecules which are functionally 'empty'. Direct peptide binding to cells is obvious during sensitization of target cells in vitro for cytotoxic T lymphocyte killing and 'empty' MHC-I molecules are comparatively abundant on TAP-1/2 peptide transporter mutant cells. In the present work we have estimated the fraction of 'empty' MHC class I molecules using glycosylated peptides and cellular staining with carbohydrate specific monoclonal antibodies. Synthetic Db and Kb binding peptides were coupled at different positions with different di- or trisaccharides, using different spacing between the carbohydrate and the peptide backbone. Binding of sugar specific mAbs was compared in ELISA and cellular assays. An optimal Db binding glycopeptide was used for comparative staining with anti-Db and anti-carbohydrate monoclonal antibodies to estimate fractions of 'empty' molecules on different T lymphoid cells. On activated normal T cells, a large fraction of Db molecules were found to be 'empty'. The functional role of such 'empty' MHC class I molecules on T cells is presently unclear. However, on antigen presenting cells they might participate in the antigen presentation process.
Rat mast cell protease 1 (RMCP-1) is a chymotrypsin-like serine protease (chymase) that is specifically expressed by connective-tissue-type mast cells. It is stored in the secretory granules of the cells in a complex with heparin proteoglycan, and the chymase/heparin proteoglycan complexes are released following mast cell activation. The present study was undertaken to examine if the association with heparin proteoglycan influenced the regulation of RMCP-1 by various macromolecular protease inhibitors. Endogenous mast cell heparin proteoglycan was shown to significantly block the inhibition of RMCP-1 by the serpins alpha 1-protease inhibitor and alpha 1-antichymotrypsin, as well as the inhibition by alpha 2-macroglobulin, soybean trypsin inhibitor and plasma. The blocking of protease inhibition showed an optimum at a RMCP-1/proteoglycan ratio of 5:1 (by mass), corresponding to approximately 80 RMCP-1 molecules bound/proteoglycan molecule. Chymase activity present on intact peritoneal mast cells, i.e. present in its native complex with heparin proteoglycan, was also shown to be largely resistant to inhibition by alpha 1-antichymotrypsin and alpha 1-protease inhibitor. Heparin 10-saccharides and 20-saccharides were inefficient in preventing the interaction of RMCP-1 with alpha 1-antichymotrypsin, whereas pig mucosal heparin (approximately 50 monosaccharide units) blocked protease inhibition. We have previously shown that heparin potentiates the catalytic activity of RMCP-1 and, in the present study, we show that the mechanism for chymase activation involves a sixfold reduction of the Km,app value of RMCP-1 for the chromogenic substrate S-2586. Thus, the association of mast cell chymase with heparin proteoglycan may serve both to potentiate the catalytic activity of the enzyme and to increase the life-span of the chymases by preventing their inhibition after exocytosis.
We have previously identified rat mast cell protease 1 (RMCP-1), a chymotrypsin-like secretory granule serine protease, as a potent inactivator of thrombin. The present study outlines the cleavage pattern obtained after degradation of thrombin by RMCP-1. The cleavage sites in thrombin were identified by N-terminal amino acid sequence analysis of recovered thrombin fragments. Incubation of thrombin with RMCP-1 resulted in the rapid formation of a 37-kDa fragment, due to cleavage of the Phe1G-Gly1F bond in the thrombin A chain (numbering of amino acid residues according to topological equivalencies with chymotrypsinogen). Further incubation resulted in cleavage of the Trp148-Thr149 bond in the B chain, along with the formation of fragments of 27 kDa and 15 kDa. When the RMCP-1/thrombin mixtures were incubated further, successive degradation of the 37-kDa, 27-kDa and 15-kDa fragments was observed, along with cleavage of the Tyr117-Ile118 bond in the B chain and the formation of fragments of 12, 9 and 6 kDa. No residual thrombin activity was detected after the degradation process had proceeded to this stage. Heparin was shown to markedly enhance the rate of thrombin degradation by RMCP-1.
Developmentally regulated, tissue-specific patterns of nuclear lamin expression occur during vertebrate embryogenesis, but little is known regarding lamin ontogeny during the early development of other phyla. cDNA clones encoding a lamin from the sea urchins Strongylocentrotus purpuratus and Lytechinus variegatus have been identified, and the full coding region from the former has been sequenced. The predicted amino acid sequence indicates that this echinoderm lamin is more closely related to vertebrate B-type lamins than to dipteran fly and nematode lamins--the only other invertebrate lamins sequenced to date. Monoclonal and polyclonal antibodies to sea urchin lamin demonstrate that nuclei of unfertilized eggs and embryos exhibit relatively faint immunoreactivity until the differentiation of primary mesenchymal cells, the nuclear envelopes of which become strongly and selectively labeled by anti-lamin antibodies. Northern blots reveal stage-specific fluctuations in a single 4-kb lamin message during early development and, together with immunoblotting data, suggest that the increase in mesenchymal cell nuclear envelope immunoreactivity is due to a quantitative increase in a single type of lamin. These observations demonstrate that, similar to vertebrates, cell differentiation in invertebrates can be accompanied by a change in lamin expression patterns.
Reversible tyrosine phosphorylation is involved in the fertilization reaction and early embryogenesis of the sea urchin (Foltz and Shilling, 1993; Ramachandran et al., 1993). To determine the enzymes present that may be involved in this regulation, we used a PCR screen to identify sequences that encode protein tyrosine kinases (PTK) and protein tyrosine phosphatases (PTP). We identified five PTKs and eight PTPs using cDNA libraries from two sea urchin species at two different stages of development, and the similarities to known PTK and PTP amino acid sequences ranged from 70 to 95%. The cognate proteins represented both "receptor"-class and cytoplasmic enzymes. Using RNAse protection assays we found that the respective mRNAs showed many accumulation profiles that we have grouped into three basic patterns: (1) mRNA levels that do not vary by more than two to three times throughout development; (2) mRNA levels highest in eggs or ovaries; and (3) mRNA levels highest in gastrula or pluteus stages. mRNAs specific to adult somatic cells of the ovary were not found, nor were mRNAs that accumulated selectively at the blastula stage. The results show that a diversity of enzymes involved in the regulation of reversible tyrosine phosphorylation is present in eggs and embryos of the sea urchin and that the differential accumulation in development of each mRNA suggests specific functional responsibilities by members of these enzyme families.
Tumor necrosis factor-alpha (TNF-alpha), a cytokine produced by macrophages in response to a variety of pathological conditions, can inhibit thyroid cell function in vitro and in vivo. TNF-alpha induction of transforming growth factor-beta 1 (TGF-beta 1) in rat endothelial cells suggested that TGF-beta, a known mediator of inflammatory effects of TNF-alpha, may be involved in the sensitivity of aged thyroid cells to TNF-alpha (G. Chen, A. E. Pekary, and J. M. Hershman. Endocrinology 131: 863-870, 1992). To determine whether TNF-alpha induces TGF-beta production in FRTL-5 cells, young (< 20 passages) and aged (> 40 passages) FRTL-5 cells were grown to near confluency in medium containing 2 U/l of bovine thyroid-stimulating hormone [TSH; 6-hormone (6H) medium] or no TSH [5-hormone (5H) medium]. TNF-alpha (0-100 ng/ml) was added 0-48 h before total RNA was extracted. Northern blots were hybridized with 32P-TGF-beta 1, -beta 2, and -beta 3 cDNAs. In aged cells TNF-alpha increased their TGF-beta 1 (and -beta 2 and -beta 3) mRNA levels 5.4-fold (and > 10-fold), respectively, while in young cells all TGF-beta mRNAs remained almost undetectable during incubation with TNF-alpha. In contrast, TNF-alpha and TSH had a highly significant stimulatory effect on the secretion rate of TGF-beta precursors in both young and old cells as measured in the mink lung cell bioassay.(ABSTRACT TRUNCATED AT 250 WORDS)
A survey was undertaken of the policies and practices concerning organisation and implementation of health education and health promotion in schools in 151 of the total 213 Local Educational Areas (LEAs) in Stockholm county in 1990. Health education was included in the workplan of 49% of the responding LEAs, while 39% of respondents had a local action programme or guidelines for health education. Topic areas taught to all pupils and considered most important included alcohol, drug abuse, smoking, sex education, bullying, nutrition and physical exercise. Most senior level schools (55-83%) had written policies concerning pupils using alcohol, drugs or smoking in school, and 68% of LEAs had restrictions on staff smoking in school. Continuing health education was desired by 87% of the respondents. A written programme/plan regarding health education was identified as an important indicator of interest and commitment in health education and health policy issues by the local school.
To test the hypothesis that interferon-gamma (IFN gamma) and interleukin-1 beta (IL-1 beta) possess antitumor activity on human papillary thyroid carcinoma cells, we studied the in vitro effects of IFN gamma and IL-1 beta on the proliferation and invasiveness of two human PTC cell lines, TPC-1 (TP) and NPA (NP) cells. TP and NP cells were treated with various concentrations of IFN gamma and IL-1 beta alone and in combination. Cell proliferation was assessed by [3H]thymidine incorporation and cell number measurement. Tumor cell invasion was assessed by the ability of cells to penetrate through a Matrigel membrane. Both IFN gamma and IL-1 beta inhibited [3H]thymidine incorporation into TP cells in a dose-dependent manner and decreased TP cell number. In NP cells, treatment with IFN gamma and IL-1 beta also decreased [3H]thymidine incorporation and cell number. The inhibitory effects of IFN gamma and IL-1 beta on tumor cell proliferation were additive in both cell lines. In the invasion experiments, IFN gamma and IL-1 beta reduced the invasiveness of TP and NP cells. Again, the inhibitory effects of IFN gamma and IL-1 beta on tumor cell invasion were additive in both cell lines. In summary, the results showed that both IFN gamma and IL-1 beta are potent inhibitors of the proliferation and invasiveness of TP and NP cells. The additive effects of IFN gamma and IL-1 beta are evidence that they act through different pathways. Our findings suggest that IFN gamma and IL-1 beta are two of the anticancer factors that act to suppress the proliferation and reduce the invasive potential of human papillary thyroid carcinoma cells.
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Tumor necrosis factor-alpha (TNF-alpha), interleukin-1beta (IL-1beta), and interferon-gamma (INF-gamma) have inhibitory effects on thyroid function both in vivo and in vitro. We have studied the effects of these cytokines on type I 5'-deiodinase (5'-DI) mRNA expression and enzyme activity in FRTL-5 cells maintained in standard cell culture medium containing 0 (5H) or 2 mIU/ml bovine TSH (6H). Northern blots were hybridized with 5'-DI cDNA. 5'-DI mRNA levels were reduced to 20% of control values after treating cells with 100 ng/ml TNF-alpha in 6H for 2 days while the corresponding enzyme activity was reduced 50%. Other cytokines, including IL-1beta and interferon-gamma, also significantly inhibited expression of 5'-DI in FRTL-5 cells grown in 6H medium. Because the majority of circulating T3 in the rat is secreted by the thyroid gland, the highly significant decline in the serum T3/T4 ratio following in vivo administration of cytokines may be due to their direct inhibitory effect on thyroidal 5'-DI expression.
hCG is known to have thyroid-stimulating activity and may cause hyperthyroidism in patients with trophoblastic diseases. hCG occurs in normal and molar pregnancy with breaks or nicks in the alpha- or beta-subunit peptide linkage and with substantial heterogeneity in the composition and degree of branching within the oligosaccharide side-chains. The bioactivity of hCG is markedly influenced by these structural variations. We purified hCG from five hydatidiform moles, using chromatofocusing separation after gel filtration. The hCG molecules were fractionated according to their isoelectric points, with a linear pH gradient from 3.2-6.1 and a final 1.0 mol/L NaCl step elution. The hCG immunoreactivity of each fraction was measured by RIA, and the thyroid-stimulating activity of hCG was determined by means of the cAMP response in Chinese hamster ovary cells expressing functional human TSH receptors (Chinese hamster ovary-JP09 cells). The chromatofocusing profile showed that hCG from the moles was eluted in six or seven major peaks at pH 6.1, 5.5, 5.3, 4.8, 3.8, and 3.2 and with 1.0 mol/L NaCl, whereas hCG extracted from serum of hydatidiform moles and standard hCG preparation CR-127 extracted from pregnancy urine showed only small peaks at pH greater than 5.3. Each fraction increased cAMP production significantly in Chinese hamster ovary-JP09 cells. The relative bioactivity/immunoreactivity, represented as the ratio of cAMP/hCG (picomoles per IU), was significantly higher in basic components (pI 6.1, 6.2 +/- 1.2; pI 5.5, 4.4 +/- 2.7; pI 5.3, 5.8 +/- 0.3) than in hCG CR-127 (bioactivity/immunoreactivity, 0.42; P < 0.05). The difference in pI of each hCG isoform was attributable to the extent of sialylation; basic hCG isoforms contained less sialic acid by immunological detection using lectins. These results indicate that isoforms of hCG with more thyrotropic activity were produced by trophoblastic tissues in patients with hydatidiform mole. We speculate that these isoforms of hCG may be responsible for the hyperthyroidism in some patients with hydatidiform moles.
It is now generally accepted that human chorionic gonadotropin (hCG) has thyroid-stimulating activity. Heterologous forms of the hCG molecule occur in the purified preparations extracted from urine of pregnant women and patients with trophoblastic diseases. This work was undertaken to determine the effect of peptide nicking in the hCG-beta subunit on its thyrotropic potency. Using Chinese hamster ovary cells expressing functional human thyroid-stimulating hormone (TSH) receptors, we examined the effect of nicked hCG on cycliC AMP (cAMP) production and receptor binding. The effect of human leukocyte elastase (hLE), a nicking enzyme, on standard hCG also was examined in the cAMP assay and on receptor binding. We studied five hCG preparations extracted from the urine of normal pregnancy (CR-127 and P8) and trophoblastic diseases (C2, C5 and M4). Two preparations (C2, 96% nicked and M4, 100% nicked in the beta 44-49 region) showed about a 1.5-fold potency of standard hCG CR-127, which is also 20% nicked in the same region. Non-nicked hCG (P8) had the weakest potency among all of the samples tested. Treatment of standard hCG with hLE increased the cAMP response about two-fold. Dose-dependent displacement of bovine [125I]TSH by standard hCG and hLE increased the cAMP response about two-fold. Dose-dependent displacement of bovine [125I]TSH by standard hCG and hLE-digested hCG was observed and was almost identical. We have confirmed the increased in vitro thyrotropic activity of hCG nicked in the beta-intercysteine loop on recombinant human TSH receptors.(ABSTRACT TRUNCATED AT 250 WORDS)