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Biomedical subjects

David Bernhard

Publications and source records attributed to David Bernhard.

15 recordsLinked to original sources

Isogentisin--a novel compound for the prevention of smoking-caused endothelial injury.

The best strategy in the fight against tobacco-induced diseases is prevention. However, more than one billion people around the world are smokers. Most of these people will develop or already suffer from tobacco-induced diseases. In this project, we screened 22 natural alpine plant extracts for their potential to protect human vascular endothelial cells from cigarette smoke-induced cell damage. Extracts from Gentiana lutea (Yellow Gentian) proved to be effective, and were therefore subjected to bio-guided fractionation. Although our analyses suggest that G. lutea contains several active principles, fractions containing isogentisin (1,3-dihydroxy-7-methoxyxanthone), and pure isogentisin, were most effective. In experiments addressing the nature of the mechanism of protection, we were able to show that isogentisin does not directly interfere with cigarette smoke chemicals. Addition of isogentisin to the cells as long as 4.5h after exposure to cigarette smoke chemicals protected endothelial cells from cell death. Finally, detailed analyses of intracellular oxidative stress and protein oxidation suggest that isogentisin promotes cell survival by activating cellular repair functions.

Apoptosis↗

Cigarette smoke--an aging accelerator?

Cigarette smoking reduces life span by an average of 7 years, and tobacco consumption accounts for a shortening of disease free life by 14 years. The exact mechanisms by which smoking causes disease and death are generally not well understood, but evidence continues to mount that cigarette smoking exhausts cellular defense and repair functions, leading to an accumulation of damage e.g. mutations and malfunctioning proteins. In this review, we make an attempt to ascribe many of the deleterious effects of smoking on human health to a general principle, namely the acceleration of aging processes by cigarette smoke chemicals.

Aging↗

Hydrogen peroxide-mediated necrosis induction in HUVECs is associated with an atypical pattern of caspase-3 cleavage.

Oxidative stress, continuously exerted during chronic inflammation, has been implicated as a major causative agent of cellular dysfunction and cell death. In the present study, we investigated the impact of oxidative stress on the mode of cell death in HUVECs using H2O2 as a model reagent. We found that the predominant form of cell death was necrosis. Necrosis induction was accompanied by a distinct mode of caspase-3 cleavage, yielding a 29-kDa fragment. While inhibition of caspases could not prevent the generation of the 29-kDa fragment, general protease inhibitors, such as leupeptin and LLNL, proved to be effective in inhibiting the distinct processing pattern of caspase-3. These results suggest that caspases can act as substrates for non-caspase proteases in cells primed for necrosis induction. Thus, the pattern of caspase-3 cleavage might reflect the proteolytic system engaged in the cell death machinery in HUVECs.

Amino Acid Chloromethyl Ketones↗

Increased serum cadmium and strontium levels in young smokers: effects on arterial endothelial cell gene transcription.

OBJECTIVE: Metal constituents of tobacco have long been suspected to contribute to cardiovascular diseases. In this study, we determined the serum concentrations of aluminum, cadmium (Cd), cobalt, copper, iron, manganese, nickel, lead, strontium (Sr), and zinc of young nonsmokers, passive smokers, and smokers. METHODS AND RESULTS: Cd and Sr were found to be significantly increased in smokers compared with nonsmokers. The effects of these metals on primary arterial endothelial cells were then assessed using microarray technology and real-time polymerase chain reaction (RT-PCR). The data showed that Sr does not interfere with endothelial cell transcription. In contrast, the effects of Cd in amounts delivered to the human body by smoking were dramatic. CONCLUSIONS: Arterial endothelial cells responded to Cd exposure by massively upregulating metal and oxidant defense genes (metallothioneins) and by downregulating a number of transcription factors. In addition, the mRNA of the intermediate filament protein vimentin, crucial for the maintenance of cellular shape, was reduced. Surprisingly, a number of pro-inflammatory genes were downregulated in response to Cd. The present data suggest that by delivering Cd to the human body, smoking deregulates transcription, exerts stress, and damages the structure of the vascular endothelium; furthermore, in contrast to the effects of cigarette smoke as a whole, Cd seems to possess anti-inflammatory properties.

Adult↗

Apoptosis induced by the Tibetan herbal remedy PADMA 28 in the T cell-derived lymphocytic leukaemia cell line CEM-C7H2.

The Tibetan herbal remedy PADMA 28 revealed promising results to support treatment of atherosclerosis, Charot syndrome (intermittent claudication), chronic active hepatitis and infection of the respiratory tract. The remedy was confirmed to be closely linked with anti- and pro-oxidative properties in vitro. In this study, apoptogenic and survival effects of PADMA 28 were investigated in the T cell-derived lymphocytic leukaemia cell line CEM-C7H2. PADMA 28 led to a concentration-dependent inhibition of cell proliferation accompanied by the accumulation of CEM-C7H2 cells in subG1 phase, fragmentation of poly (ADP-ribose) polymerase (PARP) and nuclear body formation. Treatment with PADMA 28 rescued to some extent cells over-expressing Bcl-2 from apoptosis. This finding suggests that the mechanism of action of PADMA 28 may be via interference with Bcl-2 triggered survival pathways.

Journal Article↗

CXCR4 chemokine receptors, histone deacetylase inhibitors and acute lymphoblastic leukemia.

Acute lymphoblastic leukemia (ALL) is a malignancy with the potential to infiltrate the liver, spleen, lymph nodes and brain. The mechanism for selective homing of ALL cells to preferential sites has long been unclear. Recent reports indicate that the chemokine receptor CXCR4 is found on ALL cells and its ligand is highly expressed at sites associated with ALL-induced organ infiltration. This results in chemotaxis, or directed migration of leukemic cells from the bone marrow via the circulation to preferential sites of extramedullary organ infiltration. Because overexpression of CXCR4 on ALL cells is associated with high extramedullary organ infiltration and shorter disease-free survival, numerous pharmacological agents affecting CXCR4 have currently been investigated. The most promising data are available for histone deacetylase inhibitors (HDAIs), which have been shown to be safe and well tolerated in phase I clinical trials. In vitro, HDAIs extensively down-regulate CXCR4 protein and mRNA levels. As a result, the ability of CXCR4 ligand to induce cellular migration is impaired. Wider recognition of the role of CXCR4 in ALL and manipulation of this important mechanism may lead to novel approaches in the treatment and outcome of this disease.

Down-Regulation↗

Metals in cigarette smoke.

Metals are vital for a huge number of physiological processes in the human body, but can also destroy health when the concentration is not within the physiologically favourable range. Cigarette smoking interferes with the carefully controlled metal homeostasis of the human body. This review focuses on the consequences of metal delivery to the human body by cigarette smoking and discusses the body's responses. The metal content of tobacco plants, smoke, the circulation, and various organs is discussed. Finally, we link individual cigarette smoke contained metals to the genesis of human diseases.

Humans↗

Cigarette smoke metal-catalyzed protein oxidation leads to vascular endothelial cell contraction by depolymerization of microtubules.

Smoking is a significant risk factor for development of atherosclerosis. However, the pathophysiology of smoking-mediated vessel wall damage is not understood. With tools ranging from analytical chemistry to cell biology, we show that cigarette smoke contains metals that catalyze the direct oxidation of cellular proteins by smoke oxidants. Oxidation of cellular proteins causes a loss of microtubule function, culminating in microtubule depolymerization and proteasome-dependent degradation of alpha-tubulin. As a consequence of the microtubule collapse, cytoskeletal structures as well as intermediate filaments break down, leading finally to a contraction of vascular endothelial cells. We observed a smoke extract-induced, calpain-dependent degradation of the intracellular form of platelet-endothelial cell adhesion molecule 1/CD31, as well as a release of P-selectin/CD62P, IL-6, and IL-8 from endothelial cells into the supernatant. Increased levels of soluble CD62P and IL-6 are well known to be associated with smoking in humans. Increased permeability of the vascular endothelium is a crucial event in atherogenesis. This work highlights the compounds and mechanisms by which cigarette smoke induces leakiness of the vascular endothelium.

Acetylcysteine↗

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↗

Enhanced MTT-reducing activity under growth inhibition by resveratrol in CEM-C7H2 lymphocytic leukemia cells.

Inhibition of proliferation by resveratrol of CEM-C7H2 lymphocytic leukemia cells was paradoxically associated with an enhanced cellular 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide (MTT)-reducing activity. This phenomenon was most pronounced at the sub-apoptotic concentration range of 5-20 microM resveratrol. The results of our study show that the MTT-reducing activity can be increased by the polyphenolic antioxidant resveratrol without a corresponding increase in the number of living cells and that this occurs at a concentration range of the antioxidant which is not sufficient to induce apoptosis but suffices to slow down cell growth. This phenomenon appears to be restricted to proliferation inhibitors with antioxidant properties and is cell type-specific. Thus, in determining the effects of flavonoids and polyphenols on proliferation, in certain cell types this might represent a pitfall in the MTT proliferation assay.

Antioxidants↗

Functional analysis of the mutated Epstein-Barr virus oncoprotein LMP1(69del): implications for a new role of naturally occurring LMP1 variants.

BACKGROUND AND OBJECTIVES: The role of carboxyterminal deletions of the latent membrane protein-1 (LMP1) in Epstein-Barr virus (EBV) infection and oncogenesis is unclear. Here we describe functional properties of a rare 69-bp LMP1 deletion mutant (LMP1(69del)) isolated from a patient with polyclonal B-cell lymphocytosis. DESIGN AND METHODS: Colony focus assay was used to evaluate the transforming capacity of LMP1(69del) in comparison to that of wild-type LMP1 from EBV strain B95/8. Transient transfectants of B-, T-, epithelial and 3T3 cells, and stable transfectants with ecdysone-inducible LMP1 expression were produced. The signaling capacity of both LMP1s on nuclear transcription factors NFkappaB and AP-1 were studied. Secretion of matrix metalloproteinase MMP-9, apoptosis, and EBV lytic and latent gene expression were also investigated. RESULTS: LMP(69del) showed transforming properties comparable to those of the wild-type oncoprotein. Induction of NFkappaB but a markedly reduced influence on AP-1 were observed. Both oncoproteins induced secretion of MMP-9, and enhanced pre-apoptotic effects in Jurkat-T cells leading to increased Fas/Apo-1 and doxorubicin-mediated apoptosis. Furthermore, LMP1(69del) showed a more effective down-regulation of the EBV lytic cycle master gene BZLF1(Zebra) than did wild-type LMP1. INTERPRETATION AND CONCLUSIONS: (i) LMP1(69del) possesses oncogenic properties, (ii) the observed impaired activity on AP-1 does not interfere with MMP-9 induction, (iii) the enhanced inhibition of BZLF1 could compensate for previously described mutations of our isolate leading to a more lytic phenotype and may be responsible for counteracting permanent virus replication in the chronic active EBV syndrome observed in this patient.

Animals↗

Stressful death of T-ALL tumor cells after treatment with the anti-tumor agent Tetrocarcin-A.

The T-ALL cell lines CCRF-CEM and Jurkat were studied for their sensitivity toward apoptosis induced by tetrocarcin-A (TC-A), an antibacterial and antitumor agent isolated from the actinomycete Micromonospora. This substance promoted cell death via a mitochondrial signaling pathway, that is, by activation of Bid and Bax, loss of the mitochondrial transmembrane potential, release of cytochrome c, and activation of effector caspases, even under conditions of Bcl-2 overexpression. Furthermore, sensitivity to TC-A was not dependent on expression of wild-type caspase-8. In contrast, this apoptotic pathway was inhibited markedly by pretreatment of cells with cycloheximide, an inhibitor of de novo protein synthesis. cDNA microarray chip analysis revealed that TC-A induced a significant up-regulation of members of the heat shock protein family known to be involved in the endoplasmic reticulum (ER)-stress-induced apoptotic program. The activation of caspase-12, the central inducer caspase involved in ER-stress by TC-A treatment, is in concordance with this result. These results show that, in T-ALL cells, TC-A induces an apoptotic machinery via mitochondrial and ER signaling, which is not inhibited by aberrant expression/function of important regulators of death receptor- and drug-induced apoptosis.

Aminoglycosides↗

Suberoylanilide hydroxamic acid (SAHA) overcomes multidrug resistance and induces cell death in P-glycoprotein-expressing cells.

Multidrug resistance (MDR) mediated by the ATP-dependent efflux protein P-glycoprotein (P-gp) is a major obstacle to the successful treatment of many cancers. In addition to effluxing toxins, P-gp has been shown to protect tumor cells against caspase-dependent apoptosis mediated by Fas and tumor necrosis factor receptor (TNFR) ligation, serum starvation and ultraviolet (UV) irradiation. However, P-gp does not protect against caspase-independent cell death mediated by granzyme B or pore-forming proteins (perforin, pneumolysin and activated complement). We examined the effects of the chemotherapeutic hybrid polar compound suberoylanilide hydroxamic acid (SAHA) on P-gp-expressing MDR human tumor cell lines. In the CEM T-cell line, SAHA, a histone deacetylase inhibitor, induced equivalent death in P-gp-positive cells compared with P-gp-negative cells. Cell death was marked by the caspase-independent release of cytochrome c, reactive oxygen species (ROS) production and Bid cleavage that was not affected by P-gp expression. However, consistent with our previous findings, SAHA-induced caspase activation was inhibited in P-gp-expressing cells. These data provide evidence that P-gp inhibits caspase activation after chemotherapeutic drug treatment and demonstrates that SAHA may be of value for the treatment of P-gp-expressing MDR cancers.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Histone deacetylase inhibitors potently repress CXCR4 chemokine receptor expression and function in acute lymphoblastic leukaemia.

The chemokine receptor CXCR4 plays a crucial role in the survival and trafficking of leukaemia cells and requires further attention as human immunodeficiency virus type I (HIV-I) utilises CXCR4 as the major coreceptor for cellular entry. We demonstrated that inhibitors of histone deacetylases, currently being tested in clinical trials for the treatment of various tumours, extensively downregulated CXCR4 protein and mRNA levels in leukaemia cell lines and lymphoblasts from patients with childhood acute leukaemia. As a result, the ability of stromal cell-derived factor-1 to induce cellular migration was impaired. Repression of CXCR4 transcription by inhibitors of histone deacetylases might therefore represent a promising novel approach in the treatment of acute leukaemias.

Apoptosis↗

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↗