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Biomedical subjects

Georg Wick

Publications and source records attributed to Georg Wick.

35 records · Page 2Linked to original sources

Investigations for retinopathy in an avian model for systemic sclerosis.

Systemic Sclerosis (SSc) is a connective tissue disease affecting the skin and internal organs. Retinopathy has been described in patients with SSc, but cannot be distinguished from secondary changes due to concomitant hypertension. UCD 200 chickens, a well-established animal model for SSc, were used in this study to investigate the posterior ocular segment for manifestations of SSc. Terminal deoxynucleotidyl transferase-mediated dUTP-biotin nick end labelling was applied to detect endothelial cell (EC) apoptosis, a condition previously shown to represent the first step in SSc pathogenesis in humans and to be present in the skin and the involved internal organs of UCD 200 chickens in the acute stage. Our study showed a complete absence of EC apoptosis in the pecten and choroidal vessels of UCD 200 chickens in the acute stage. Ophthalmoscopy, biomicroscopy and histology revealed normal structures of the pecten, retina and choroid in the chronic stage. In summary, we showed that there is no primary involvement of the posterior ocular segment in avian SSc. SSc of UCD 200 chickens closely mimics human SSc, presenting all the clinical, serological and histological disease manifestations seen in the human counterpart. Therefore, our data raise serious doubts about primary posterior ocular involvement in human SSc. However, fundal examinations in patients with SSc may have their justification for assessment of hypertensive retinopathy.

Aged↗

Cellular and molecular composition of fibrous capsules formed around silicone breast implants with special focus on local immune reactions.

During the past 30 years, much debate has centered around side effects of silicone breast implants. Meta-analyses rejected the presumed relationship between silicone breast implants and connective tissues diseases but, in seeming contradiction, case reports about connective tissue diseases and rheumatoid symptoms continue to be published. We analyzed the cellular and molecular composition of fibrous capsules removed from patients at various times after surgery for diagnostic purposes (breast cancer relapse) or to relieve painful constrictive fibrosis. Frozen sections of capsule tissue were immunohistochemically stained for subsets of lymphocytes, macrophages, dendritic cells, fibroblasts, smooth muscle cells, for collagenous and non-collagenous extracellular matrix proteins, for heat shock protein 60 (HSP60) and for adhesion molecules. Massive deposition of fibronectin and tenascin was observed adjacent to the implant surface. The capsule/silicone implant contact zone was consistently characterized by a palisade-like single or multilayered cell accumulation consisting of HSP60+ macrophages and HSP60+ fibroblasts. Mononuclear cell infiltrates consisting of activated CD4+ T-cells, expressing CD25 and CD45RO, as well as macrophages were detected beneath the contact zone as well as perivascularly. Importantly, many Langerhans-cell like dendritic cells (DCs) were found with a predilection at the frontier layer zone abutting the silicone implant. Also, at this site, massive expression of ICAM-1, but not VCAM-1 or ELAM-1 emerged. Endothelial cells of the intracapsular neovasculature were P-Selectin+. Our results show that silicone induces a strong local T-cell immune response and future studies will determine the specificity and function of these T-lymphocytes.

Adult↗

Autoimmune and inflammatory mechanisms in atherosclerosis.

The present review focuses on the concept that cellular and humoral immunity to the phylogenetically highly conserved antigen heat shock protein 60 (HSP60) is the initiating mechanism in the earliest stages of atherosclerosis. Subjecting arterial endothelial cells to classical atherosclerosis risk factors leads to the expression of HSP60 that then may serve as a target for pre-existent cross-reactive antimicrobial HSP60 immunity or bona fide autoimmune reactions induced by biochemically altered autologous HSP60. Endothelial cells can also bind microbial or autologous HSP60 via Toll-like receptors, providing another possibility for targetting adaptive or innate immunological effector mechanisms.

Animals↗

Disruption of vascular endothelial homeostasis by tobacco smoke: impact on atherosclerosis.

The World Health Organization (WHO) predicts that by 2020 tobacco will become the largest single health problem worldwide and will cause an estimated 8.4 million deaths annually (http://www5.who.int/tobacco/). Although the impact of smoking on human health is well defined from the medical point of view, surprisingly little is known about the mechanisms by which tobacco smoke mediates its disastrous effects. Here, we demonstrate that tobacco smoke dramatically changes vascular endothelial cell and tissue morphology, leading to a loss of endothelial barrier function within minutes. Long-term exposure of endothelial cells to tobacco smoke extracts induces necrosis that may trigger a pro-inflammatory status of the vessel wall. Pre-incubation of the extracts without cells for 6 h at 37 degrees C led to a complete loss of activity. Further, the endothelium could be rescued by changing to fresh medium even at times when the extracts had lost their activity. Finally, we show that N-acetyl cysteine and statins inhibit the adverse tobacco smoke effects.

Acetylcysteine↗

Cardiovascular risk factors and atherosclerosis in young males: ARMY study (Atherosclerosis Risk-Factors in Male Youngsters).

BACKGROUND: Necropsy studies suggest that atherosclerosis begins in childhood, but in vivo confirmation of this concept is sparse and limited to selected population samples. Furthermore, new risk concepts of atherosclerosis focusing on inflammation, infections, and immunity have not yet been evaluated in this age group. METHODS AND RESULTS: This study was conducted in a sample of 141 17- to 18-year-old white males homogenous in age and sex. In addition to classic risk factors, C-reactive protein and the humoral and cellular immune reactivity to heat-shock proteins (HSPs) were assessed. Intima-media thickness (IMT) was quantified at 4 vessel segments of the carotid and femoral arteries. High IMT was considered to be present if the IMT of at least 1 vessel segment exceeded the 90th percentile. In a multivariate logistic regression analysis, cigarette smoking, high diastolic blood pressure, prominent immune reactivity to human and/or mycobacterial HSP60s, alcohol consumption (inverse), and low HDL cholesterol levels were all associated with high IMT. The prevalence of high IMT substantially increased from 0 to 60% when the number of risk conditions in a single individual increased from 0 to 4 (P<0.001 for linear trend). CONCLUSIONS: Our study supports the concept that atherosclerosis begins in the first decades of life and suggests a role of the immune system, especially immunoreactivity against HSP60s, in atherosclerosis of young individuals.

Adolescent↗

Cross-reactive B-cell epitopes of microbial and human heat shock protein 60/65 in atherosclerosis.

OBJECTIVE: Growing evidence suggests that immune reactions to heat shock protein 60 (HSP60) are involved in atherogenesis. Because of the high phylogenetic conservation between microbial and human HSP60, bacterial infections might be responsible for breaking the tolerance to self-HSP60, which is expressed on the surface of stressed arterial endothelial cells. METHODS AND RESULTS: We purified serum antibodies to Escherichia coli HSP60 (GroEL), the 60-kD chlamydial HSP, and HSP65 of Mycobacterium tuberculosis by affinity chromatography from clinically healthy subjects with sonographically proven carotid atherosclerosis. Reactivity of the purified antibodies with overlapping human HSP60 peptides was measured, and 8 shared common epitopes, recognized by all anti-bacterial HSP60/65 antibodies, were identified. Antisera specific for these cross-reactive epitopes were produced by immunizing rabbits with peptides derived from human HSP60. By immunohistochemistry, the epitopes were found to be present in the arterial wall of young subjects during the earliest stages of the disease. CONCLUSIONS: Antibodies to microbial HSP60/65 recognize specific epitopes on human HSP60. These cross-reactive epitopes were shown to serve as autoimmune targets in incipient atherosclerosis and might provide further insights into the mechanisms of early atherogenesis.

Amino Acid Sequence↗

Increased risk of atherosclerosis is confined to CagA-positive Helicobacter pylori strains: prospective results from the Bruneck study.

BACKGROUND AND PURPOSE: Accumulating evidence indicates that a variety of infections contribute to the pathogenesis of atherosclerosis, but there is controversy concerning the impact of Helicobacter pylori infections in atherosclerosis. METHODS: We evaluated seropositivity to H pylori and to its cytotoxin-associated gene A (CagA) product in a large, prospective, population-based study (n=684). Intima-media thickness and atherosclerosis of carotid arteries were thoroughly assessed by high-resolution duplex scanning. RESULTS: In our study population, H pylori infections defined by seropositivity have no relationship with levels of classic cardiovascular risk factors or markers of systemic inflammation, except for elevated levels of immune reactions to mycobacterial heat shock protein 65. The latter showed a trend toward highest levels in those harboring virulent H pylori strains (P=0.08). Common carotid artery intima-media thickness-both absolute values and changes between 1995 and 2000-were significantly enhanced in subjects seropositive to CagA but not in those infected with CagA-negative H pylori strains. There was a clear dose-response relation between anti-CagA antibodies and both intima-media thickness and atherosclerosis risk. Notably, the risk of atherosclerosis associated with CagA seropositivity was amplified by elevated C-reactive protein levels. CONCLUSIONS: Infections with virulent CagA-bearing H pylori strains may contribute to the pathogenesis of early atherosclerosis by aggravating immune-inflammatory reactions.

Adult↗

In vivo analysis of the apoptosis-inducing effect of anti-endothelial cell antibodies in systemic sclerosis by the chorionallantoic membrane assay.

OBJECTIVE: Systemic sclerosis (SSc) is a connective tissue disease of unknown etiology characterized by mononuclear cell infiltration and fibrosis. Vascular injury occurs early in the course of disease, and previous in vitro studies suggest a primary role for anti-endothelial cell antibodies (AECAs) in mediating endothelial cell apoptosis. The aim of the present study was to analyze the apoptosis-inducing effect of AECAs in vivo. METHODS: The optimum animal model for transfer experiments was the University of California at Davis line 200 (UCD-200) chickens that spontaneously develop a hereditary disease with features closely resembling those of scleroderma in humans. AECA-positive serum samples from UCD-200 chickens were used for intravenous injection into normal CC chicken embryos on embryonic day (ED) 13 as well as for application onto chorionallantoic membranes (CAMs) of healthy control lines on ED 10. CAMs of ED 16 embryos and combs of 1-week-old CC chickens that had received the injected serum samples were analyzed for apoptotic endothelial cells by TUNEL. RESULTS: Staining of frozen CAM sections by immunofluorescence showed evidence of in vivo binding of AECAs to the microvascular endothelium. In most groups, transfer of AECA-positive sera resulted in a significant increase in endothelial cell apoptosis as compared with controls. CONCLUSION: This study is the first to demonstrate the in vivo apoptosis-inducing effects of AECAs. The findings support our hypothesis of a primary pathogenetic role of AECAs in SSc.

Allantois↗

Atherosclerosis as a paradigmatic disease of the elderly: role of the immune system.

When a new hypothesis about the etiology and pathogenesis of a disease is developed, there is always the danger that it will be presented as the only acceptable explanation for the occurrence of a given pathologic condition. In view of the well-proven multifactoral pathogenesis of atherosclerosis, we would like to emphasize that we are not postulating that immunity to HSP60 is the only cause of atherogenesis, especially in the later stages where there are clinically-apparent sequelae, such as myocardial infarction, stroke, and other atherosclerosis-dependent symptoms. In this article, we summarized some of the experimental and clinical data that we and others have collected in support of the concept that atherosclerosis is a good example of pleotropic antagonism, and postulated that age-dependent diseases are the price we pay for genetic traits established by natural selection to assure maximum survival until the age of reproduction, the effects of which may, however, become deleterious later in life. In the present case, the cost we pay for protective immunity to microbial and altered autologous HSP60 is the risk of cross-reactivity with HSP60 expressed by arterial endothelial cells that are subjected to stress factors already known as classical atherosclerosis risk factors. We showed that the first inflammatory stage of atherosclerosis starts early in life, long before it becomes clinically apparent. More severe lesions that lead to atherosclerosis-dependent organ-specific or systemic symptoms will only occur if classical atherosclerosis risk factors, especially those involving the cholesterol metabolism, remain present.

Aged↗

Progression of arteriovenous bypass restenosis in mice exposed to a 50 Hz magnetic field.

The controversy over whether magnetic fields (MF) produced by electrical wiring and appliances contribute to diseases such as cancer has been debated in the literature for more than 2 decades. These extremely low frequency fields at 50 or 60 Hz are omnipresent in the industrialized world and have been linked to various forms of cancer by epidemiological studies. Little has been published investigating any possible role of MF and cardiovascular disease, and this is the first study looking specifically at the effect of exposure to high-intensity MF on the development and progression of restenosis. A mouse arteriovenous bypass model was used, and mice were exposed to MF for periods of 1, 2, or 3 weeks. Neointima formation, infiltration of mononuclear cells, and heat shock protein 60 expression were all studied at the conclusion of the exposure regimen. Animals exposed to the MF for 1 week showed significantly smaller neointima formation compared with control mice exposed to a null field, although this difference was not observed in mice exposed for 2 or 3 weeks. No difference was found between mice exposed to MF and controls in any of the other parameters investigated.

Animals↗

Disease-associated prion protein in vessel walls.

Human prion diseases like Creutzfeldt-Jakob disease are infectious, inherited, or sporadic neurodegenerative disorders, characterized by the accumulation of an abnormal isoform of the host-encoded prion protein. This affects nervous tissue in sporadic Creutzfeldt-Jakob disease and, additionally, in lymphoid tissue in bovine spongiform encephalopathy-linked variant Creutzfeldt-Jakob disease. Experimental studies have established the involvement of cells of the lymphoid and peripheral nervous system in the transport of prions to their target central nervous system tissue. To evaluate the role of vessel wall-associated mobile cells, we obtained formalin-fixed tissue blocks from various brain regions and/or basal arteries from sporadic, variant and iatrogenic Creutzfeldt-Jakob disease, and unselected control cases. We demonstrate disease-associated prion protein deposits in intracranial vessel walls, in sporadic and variant Creutzfeldt-Jakob disease by performing immunohistochemical staining and paraffin-embedded tissue blotting. Using double immunofluorescence, these deposits co-localize with HLA-DR and S-100 immunoreactive cells in the intima, which are components of the vascular-associated dendritic cell network, as well as with HLA-DR and CD-68 immunopositive macrophages of the intima and media. We conclude that mobile cells in vessel walls like dendritic and monocyte/macrophage lineage cells may be involved in spread of disease-associated prion protein and possibly also of infectivity.

Animals↗

Early inflammatory-immunological lesions in juvenile atherosclerosis from the Pathobiological Determinants of Atherosclerosis in Youth (PDAY)-study.

The Pathobiological Determinants of Atherosclerosis in Youth (PDAY)-study gave insight into the correlation between the classical risk factors for atherosclerosis development, such as hypercholesterolemia, hyperglycemia, high blood pressure and smoking in young Americans. We now present immunohistochemical data showing that immunological-inflammatory signs represent the first step towards atherosclerosis development in the arteries of young adults. In previous publications, we coined the term 'vascular-associated lymphoid tissue' (VALT) for the accumulation of mononuclear cells at regions of the arterial wall in healthy children and adolescents that are predisposed to the development of atherosclerotic lesions later in life if risk factors are present. In the present communication, we intended to close the gap between data from atherosclerotic arteries and those of healthy young children studied previously by our group. The PDAY-study comprising 15-34-year-old Americans who had no clinical symptoms of cardiovascular diseases offered a good basis for our intention. We document that inflammatory activity was found in all specimens, represented by activated T-lymphocytes, dendritic cells, macrophages and aberrant MHC class II expression in the intima. We therefore demonstrated that immunological-inflammatory cells are present in the earliest stages of atherogenesis in 15-34-year-old subjects, arguing in favour of an initiating role of the immune system in atherosclerosis development.

Adolescent↗

Valediction.

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Editorial↗

Development and evaluation of an in vitro model for the analysis of cigarette smoke effects on cultured cells and tissues.

INTRODUCTION: Smokers have an increased risk for a variety of diseases. Among the most prominent is atherosclerosis, the leading cause of death in the Western world. Although this conjunction is accepted knowledge, the basic biological mechanisms and the identities of the active tobacco smoke constituents surprisingly are still unknown. One reason for this is the lack of accurate in vitro models. METHODS: Cell culture experiments, including cell morphology and cell death analyses, high-performance liquid chromatography, and liquid chromatography coupled to mass spectrometry via an electrospray ionization interface allowing collision-induced dissociation analyses, were applied. RESULTS AND DISCUSSION: In this study, we present and validate an in vitro model that has proven to be useful for standardized studies of cellular and histological effects of cigarette smoke. The system consists of a cigarette smoke sampling device in which water-soluble cigarette smoke constituents pass over from the gas phase into the aqueous phase resulting in nicotine concentrations identical to the in vivo concentrations, suggesting in vivo similar conditions for gas-to-liquid compound exchange.

Cell Survival↗

'Anti-aging' medicine: does it exist? A critical discussion of 'anti-aging health products'.

'Anti-aging' medicine has become a popular topic, in the lay press, the (semi-) scientific literature and the Internet.(1) In almost all instances, claims of drugs, health supplements and other types of intervention are not based on any evidence supported by sound scientific knowledge. Specifically, the aging process itself, in contrast to age-related diseases, has so far neither been fully understood, nor significantly influenced in higher species, notably humans. In addition to the ill-defined effects, claims of anti-aging medicine also pose a considerable economic burden on the usually poorly informed older segment of the population. The present paper is based on a recent report by the United States General Accounting Office (GAO) on the questionable and even harmful effects of anti-aging health products for seniors.

Aging↗

A Darwinian-evolutionary concept of age-related diseases.

Humans and animals are structurally designed as a compromise to guarantee optimal survival until the time of reproduction based on natural selection that is effective until that age. Modern conditions of life including improvement of hygiene, preventive and curative medicine as well as socio-economic and political developments have led to an increase of the mean life expectancy that allows ever larger proportions of the population to reach an age that is far beyond that of the reproductive phase. The concept of a Darwinian-evolutionary basis for the development of age-related diseases in principle postulates that genetic traits that are beneficial in younger years to allow for successful reproduction may become deleterious in the elderly, i.e. when selective pressure does not seem to be effective anymore. Examples for this mechanism of pleiotropic antagonism taken from the work of the Institute for Biomedical Aging Research in Innsbruck, Austria, include atherosclerosis, benign and malignant prostate hypertrophy, Alzheimer's disease and the reciprocal relationship between cellular senescence and cancer.

Adult↗