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Biomedical subjects

M Thurnher

Publications and source records attributed to M Thurnher.

At least 19 recordsLinked to original sources

Mannosylated lipoarabinomannans inhibit IL-12 production by human dendritic cells: evidence for a negative signal delivered through the mannose receptor.

IL-12 is a key cytokine in directing the development of type 1 Th cells, which are critical to eradicate intracellular pathogens such as Mycobacterium tuberculosis. Here, we report that mannose-capped lipoarabinomannans (ManLAMs) from Mycobacterium bovis bacillus Calmette-Guérin and Mycobacterium tuberculosis inhibited, in a dose-dependent manner, the LPS-induced IL-12 production by human dendritic cells. The inhibitory activity was abolished by the loss of the mannose caps or the GPI acyl residues. Mannan, which is a ligand for the mannose receptor (MR) as well as an mAb specific for the MR, also inhibited the LPS-induced IL-12 production by dendritic cells. Our results indicate that ManLAMs may act as virulence factors that contribute to the persistence of M. bovis bacillus Calmette-Guérin and M. tuberculosis within phagocytic cells by suppressing IL-12 responses. Our data also suggest that engagement of the MR by ManLAMs delivers a negative signal that interferes with the LPS-induced positive signals delivered by the Toll-like receptors.

Carbohydrate Sequence↗

A clinically approved oral vaccine against pneumotropic bacteria induces the terminal maturation of CD83+ immunostimulatory dendritic cells.

Dendritic cells (DCs) are important antigen-presenting cells of the immune system that have attracted interest as cellular adjuvants to induce immunity in clinical settings. We have investigated the effects of Broncho-Vaxom, an oral vaccine composed of lysates from eight pneumotropic bacteria, on human monocyte-derived dendritic cells (moDCs). Broncho-Vaxom induced the terminal maturation of CD83+ moDCs. MoDCs stimulated with Broncho-Vaxom displayed a phenotype of activated DCs with high levels of major histocompatibility complex (MHC) molecules and increased levels of adhesion and co-stimulatory molecules. In addition, moDCs activated with Broncho-Vaxom exhibited enhanced T cell-stimulatory capacity in the allogeneic mixed leukocyte reaction. Broncho-Vaxom at 100 microg/ml was as potent as TNF-alpha at 1000 U/ml in activating human moDCs. Neither LPS-like activity nor bacterial DNA was found to be responsible for the maturation-inducing activity of Broncho-Vaxom, suggesting that Broncho-Vaxom contains other bacterial factors that are capable of inducing the terminal maturation of moDCs. In DC-based immunotherapy, Broncho-Vaxom could be used as a stimulus of DC maturation, which meets the standards of good manufacturing practice (GMP). In addition, vaccination with Broncho-Vaxom-loaded moDCs may be an attractive treatment option in preventing recurrent airway infection in predisposed individuals.

Adjuvants, Immunologic↗

The disabled dendritic cell.

Dendritic cells are important antigen-presenting cells of the immune system that induce and modulate immune responses. They interact with T and B lymphocytes as well as with natural killer cells to promote activation and differentiation of these cells. Dendritic cells generated in vitro from monocytes by use of the cytokines GM-CSF and IL-4 are increasingly used clinically to enhance antitumor immunity in cancer patients. However, recent studies revealed that the functional repertoire of monocyte-derived dendritic cells may be incomplete. Important functions of monocyte-derived dendritic cells such as migration or the ability to induce natural killer cell activation or type 2 T helper cell differentiation appear to be impaired. We propose that all these deficiencies relate to a single biochemical deficiency of monocyte-derived dendritic cells. IL-4, which is used to generate monocyte-derived dendritic cells, suppresses phospholipase A2, the enzyme that liberates arachidonic acid from membrane phospholipids and contributes to the synthesis of platelet-activating factor. Monocyte-derived dendritic cells must therefore fail to generate platelet-activating factor as well as arachidonic acid derivatives such as prostaglandins, leukotrienes, and lipoxins, collectively referred to as eicosanoids. Since eicosanoids and platelet-activating factor are known to play an important role in processes such as leukocyte migration, natural killer cell activation, and type 2 T helper cell differentiation, the deficiency in eicosanoid and platelet-activating factor biosynthesis may be responsible for the observed handicaps of monocyte-derived dendritic cells.

Antigen-Presenting Cells↗

Expression and immunogenicity of oncofetal antigen-immature laminin receptor in human renal cell carcinoma.

PURPOSE: The 32 to 44 kDa. oncofetal antigen-immature laminin receptor (OFA-iLR) is a multifunctional protein expressed by various tumors, including breast, lung, ovary and prostate carcinoma as well as lymphoma. OFA-iLR has been implicated in tumor invasiveness, metastasis and growth. Interferon-gamma producing effector T cells and interleukin (IL)-10 producing suppressor T cells specific for OFA-iLR have been described. MATERIALS AND METHODS: The 43515 IgG2a anti-OFA-iLR monoclonal antibody was used to detect OFA-iLR expression in human renal cell carcinoma tissue by flow cytometry and immunoblotting. Spontaneous or therapy induced immune responses against OFA-iLR were determined in patients with metastatic renal cell carcinoma. Proliferative and cytokine (interferon-gamma and IL-10) responses of peripheral blood mononuclear cells from patients with renal cell carcinoma against recombinant OFA-iLR were assessed. RESULTS: Using flow cytometry OFA-iLR was detected in all 13 tumors tested. Immunoblotting revealed differences in OFA-iLR expression in renal cell carcinoma and normal kidney tissue. OFA-iLR specific proliferative and cytokine responses of mononuclear cells were detected in all 6 patients tested. Importantly evidence was also obtained that treating metastatic renal cell carcinoma with tumor lysate pulsed dendritic cells would enhance OFA-iLR specific immunity. CONCLUSIONS: This study demonstrates that OFA-iLR is an immunogenic tumor associated antigen in human renal cell carcinoma. OFA-iLR specific effector T cells producing interferon-gamma may have a role in the control of tumor growth, whereas suppressor T cells producing IL-10 may promote tumor tolerance and, thus, tumor progression.

Antigens, Neoplasm↗

Effects of alpha1-adrenoceptor antagonists on cultured prostatic smooth muscle cells.

BACKGROUND: alpha1-adrenoceptor (alpha1-AR) antagonists, used to relieve the lower tract urinary symptoms (LUTS) in benign prostate hyperplasia (BPH) patients, are thought to act in inhibiting the contraction of stromal smooth muscle. An attempt was made using new technology to visualize and quantify the effect of alpha1-AR antagonists in a cell culture model of prostatic smooth muscle cells (SMC). METHODS: Prostatic smooth muscle cells cultured from human prostate tissue were treated with alpha1-AR agonists and antagonists. The effects on cell growth, cell contraction, differentiation status, and apoptosis were determined by means of an MTT cell viability assay, time-lapse video microscopy, RT-PCR analysis, and FACS analysis of annexin V/propidium iodide-stained cells, respectively. RESULTS: Prostatic smooth muscle cells derived from prostate tissue expressed SMC-specific markers. They showed spontaneous contractions, and phenylephrine increased the percentage of contracting cells by 3-fold. alpha1-AR antagonists inhibited spontaneous as well as phenylephrine-induced contractions. Long-term treatment with doxazosin induced differentiation tended towards a contractile phenotype, as indicated by an increase of the ratio of smooth muscle heavy chain myosin subtypes SM2/SM1. There was, however, no effect on cell growth. High concentrations of antagonist (100 microM) induced apoptosis in about 80% of the treated SMC. This effect was not cell-type-specific and was also seen in skin fibroblasts and immortalized prostate epithelial cells. CONCLUSION: In an easy-to-handle cell culture model of prostatic smooth muscle cells, the effects of alpha1-AR antagonists on cell contraction, growth, and differentiation can be investigated. The results indicate that in addition to inhibition of cell contraction, alpha1-AR antagonists have the potential to induce apoptosis.

Adrenergic alpha-1 Receptor Antagonists↗

Inhibition of LncaP prostate cancer cells by means of androgen receptor antisense oligonucleotides.

Currently available methods for treatment of human prostatic carcinoma aim to inactivate the androgen receptor (AR) by androgen deprivation or blockade with anti-androgens. Failure of endocrine therapy and tumor progression is characterized by androgen-independent growth despite high levels of AR expression in metastatic disease. We inhibited AR expression in LNCaP prostate tumor cells by using antisense AR oligodeoxynucleotides (ODNs) and explored whether antisense AR treatment would be conceivable as a therapy for advanced prostate cancer. Among the various AR antisense ODNs tested, a 15-base ODN targeting the CAG repeats encoding the poly-glutamine region of the AR (as750/15) was found to be most effective. Treatment of LNCaP cells with as750/15 reduced AR expression to approximately 2% within 24 hours compared with mock-treated controls. AR down-regulation resulted in significant cell growth inhibition, strongly reduced secretion of the androgen-regulated prostate-specific antigen, reduction of epidermal growth factor receptor expression, and an increase in apoptotic cells. Mis-sense and mismatched control ODNs had no or only slight effects. Antisense inhibition was also very efficient in LNCaP-abl cells, a subline established after long-term androgen ablation of LNCaP cells, resulting in inhibition of AR expression and cell proliferation that was similar to that seen for parental LNCaP cells. This study shows that inhibition of AR expression by antisense AR ODNs may be a promising new approach for treatment of advanced human prostate cancer.

Apoptosis↗

The postoperative spine.

During the last decade, magnetic resonance imaging (MRI) mostly has replaced computed tomography for evaluation of spinal surgery patients. The inherent advantages of MRI are obvious for this particularly difficult field of imaging. With MRI, it is possible to demonstrate anatomic as well as pathological and iatrogenic changes in three different imaging planes and countless neighboring planes and to obtain a superior view of the complex postoperative situation regardless of the spinal level imaged. Soft-tissue masses in particular can be identified more readily and located within three-dimensional space. One of the major advantages is that the nature and histology of the mass can be estimated precisely using different MR sequences in combination with intravenous contrast media. The most important benefit may be demonstration of inflammatory and hemorrhagic masses in the early postoperative periods (with special emphasis on alterations visible in the spinal cord itself) as well as repair processes and ongoing degeneration in later stages. This visualization is possible even when their extent is limited. In the postoperative spine, the application of MRI was facilitated with the advent of new materials, such as titanium alloys, used for surgical instrumentation. These new materials limit the amount of artifacts visible on MR images. Earlier implants made of other metallic material prohibit the use of computed tomography in the spine. This article provides a brief overview of the progress in spinal surgery and focuses on the developments in MRI techniques during the last decade. Technical questions about imaging of spinal instrumentation are discussed. "Normal" postoperative findings needed for interpretation of pathologic conditions are also discussed. Finally, the most important frequently asked questions from referring surgeons that radiologists must be able to answer by MRI are presented.

Alloys↗

Mature dendritic cells induce T-helper type-1-dominant immune responses in patients with metastatic renal cell carcinoma.

We performed a pilot study on a dendritic cell (DC)-based vaccine in 4 patients with advanced renal cell carcinoma. The vaccine consisted of cultured blood DCs loaded with autologous tumor cell lysate plus keyhole limpet hemocyanin (KLH) and matured with a combination of tumor necrosis factor alpha and prostaglandin E(2). We describe the immune response against KLH induced by DC-based immunization in a patient undergoing an objective partial response and compare it with the responses observed in patients with either stable or progressive disease. The patient with the clinical response developed strong delayed-type hypersensitivity (DTH) against KLH after a single vaccination with antigen-loaded DCs, whereas the other patients failed to develop DTH reactivity even after repeated vaccinations. Antigenic stimulation of mononuclear cells (MNCs) induced proliferation and IFN-gamma but not IL-4 production as well as expression of the chemokine receptor CXCR3 consistent with a T-helper (Th) type-1 bias. Exogenous IL-12 enhanced and exogenous IL-4 diminished IFN-gamma production. In the 2 patients with stable disease two or more vaccinations were required to induce maximal MNC responses. In the patient with progressive disease MNC responses were hardly detectable. Anti-KLH antibodies appeared with different kinetics but could be detected in the serum of all patients. Isotype analysis revealed the presence of IgM, IgG(1), IgG(2) and IgG(3) as well as IgA and complete absence of IgE. The patient with progressive disease also developed IgG(4) antibodies indicative of a deviation towards Th2. Cultured blood DCs can be a potent vaccine for the antigen-specific immunization of patients with advanced kidney cancer. KLH serves as a tracer molecule which allows determination of the magnitude, kinetics and Th bias of the cellular and humoral immune response induced by DC-based immunization. The data also suggest that Th type-1-dominant immune responses involving DTH reaction are required for the induction of tumor regression.

Adjuvants, Immunologic↗

Cellular and humoral immune responses in patients with metastatic renal cell carcinoma after vaccination with antigen pulsed dendritic cells.

PURPOSE: Dendritic cells are the most potent stimulators of immune responses including antitumor responses. We performed a pilot study of cultured antigen loaded dendritic cells in patients with metastatic renal cell carcinoma. MATERIALS AND METHODS: Dendritic cells were obtained by culturing plastic adherent mononuclear cells from peripheral blood for 5 days in the presence of granulocyte-macrophage colony-stimulating factor and interleukin-4. Day 5 dendritic cells were loaded with cell lysate from cultured autologous tumor cells and with the immunogenic protein keyhole-limpet hemocyanin (KLH) which serves as a helper antigen and as a tracer molecule. During the antigen pulse dendritic cells were activated with a combination of tumor necrosis factor-alpha and prostaglandin E2. Dendritic cells were administered by 3 intravenous infusions at monthly intervals. Cellular and humoral immune responses to KLH and cell lysate were measured in vitro before and after the vaccinations. RESULTS: Preparation of 12 dendritic cell vaccines from patients with advanced renal cell carcinoma was successful. Treatment with fully activated CD83+ dendritic cells was well tolerated with moderate fever as the only side effect. Potent immunological responses to KLH and, most importantly, against cell lysate could be measured in vitro after the vaccinations. CONCLUSIONS: Our data demonstrate that a dendritic cell based vaccine can induce antigen specific immunity in patients with metastatic renal cell carcinoma. Dendritic cell based immunotherapy represents a feasible, well tolerated and promising new approach for the treatment of advanced renal cell carcinoma.

Aged↗

Videoimaging of prostatic stromal-cell contraction: an in vitro model for studying drug effects.

BACKGROUND: Stromal-cell contractility is known to play an important role in the development of bladder outlet obstruction secondary to benign prostatic hyperplasia (BPH). An in vitro model of single-cell contraction was developed to investigate the effect of alpha1-adrenoceptor agonists and antagonists. METHODS: Human prostatic stromal cells were isolated from prostatectomy and cystoprostatectomy specimens. The cells were cultured in a selective medium supplemented with growth factors and steroid hormones. The culture flasks were coated with a viscous agent to allow cell contraction. Contractions were visualized by means of a cell-culture microscope fitted with a time-lapse video system. For quantitative analysis, the percentage of contracting cells was evaluated. RESULTS: Nineteen percent of the cells were found to contract without stimulation. Following incubation with doxazosin (10 nM, 100 nM, and 1 mM), there was a slight dose-dependent decrease in the number of spontaneously contracting cells, whereas adrenergic stimulation using 10 microM of phenylephrine led to a significant increase in the percentage of contracting cells (55%). Following incubation with 100 nM of doxazosin, the phenylephrine-induced effect was significantly reduced. CONCLUSIONS: This simple in vitro model of cell contraction in the prostate provides a useful means of investigating drug effects on prostatic stromal cells.

Adrenergic alpha-Agonists↗

Cerebral CT findings in male opioid-dependent patients: stereological, planimetric and linear measurements.

Cerebrospinal fluid (CSF) space enlargement has been demonstrated in substance-related disorders like alcohol and cocaine dependence. Experimental animal studies showed a reduction in shape and size of mesolimbic dopaminergic neurons after chronic morphine administration. Other studies indicated a change of neurofilament and glial fibrillary acid proteins after chronic opiate administration. Furthermore, frequent overdosing and toxicological effects of 'street'-heroin may lead to CSF space enlargement in opioid dependence. In our study the pericortical and ventricular CSF space of 21 male opioid-dependent patients was compared with an age- and sex-matched normal control group. Considering serious problems with ratio and proportion measures, we used a battery of linear (cella media index, Huckman number, frontal horn index), planimetric (cortical atrophy score) and stereological volumetric measures in order to detect differences in cranial computerized tomography scans. We found a significant ventricular and cortical volume loss of the brain in opioid-dependent patients. A higher degree of frontal lobe volume loss seemed to be associated with a shorter period of abstinence before relapse. However, the etiology of volume loss of the brain in opioid-dependent patients is still unclear, but experimental animal studies provide some evidence that long-term, chronic opiate exposure is associated with visible changes of specific structures in the brain.

Adult↗

Differential deactivation of human dendritic cells by endotoxin desensitization: role of tumor necrosis factor-alpha and prostaglandin E2.

The endotoxin (lipopolysaccharide)-induced cytokine response is followed by a state of unresponsiveness to lipopolysaccharide (LPS) referred to as LPS tolerance or endotoxin desensitization. LPS tolerance, which can be experimentally induced in vitro and in vivo, is also known to occur in septic disease. Here, we evaluated whether dendritic cells (DC), the most potent antigen-presenting cells, are also subject to this phenomenon. Single doses of LPS added at the initiation of DC culture inhibited in a dose-dependent fashion the production of tumor necrosis factor-alpha (TNF-alpha), interleukin-10 (IL-10), and IL-12, but not the production of IL-8, in response to a second LPS challenge in day-5 DC. In addition, the LPS-induced expression of the CD83 maturation antigen was inhibited in these cells. Moreover, the endocytic activity of DC generated in the presence of LPS was dramatically reduced. DC desensitized with LPS were potent stimulators of T-cell proliferation but poor inducers of interferon-gamma (IFN-gamma) production in the allogeneic mixed leukocyte reaction. TNF-alpha and prostaglandin E2, two major products of LPS stimulation, could replace LPS for the induction of tolerance to LPS. Moreover, treatment of desensitized DC with TNF-alpha plus prostaglandin E2 fully restored CD83 expression and partially restored IL-12 production as well as the IFN-gamma-inducing activity of DC in the mixed leukocyte reaction. Our data show that human DC are highly susceptible to the induction of LPS tolerance, which seems to be a state of differential deactivation in which some functions are impaired whereas others are retained. Tolerization at the level of the professional antigen-presenting cell by inflammatory mediators may play an important role in septic disease and in the origin of cancers associated with chronic inflammation.

Antigens, CD↗

Human monocyte-derived dendritic cells produce macrophage colony-stimulating factor: enhancement of c-fms expression by interleukin-10.

Human monocyte-derived dendritic cells (DC) generated with granulocyte-macrophage colony-stimulating factor (GM-CSF) and IL-4 express c-fms (CD115), the receptor for macrophage-CSF (M-CSF). Expression of c-fms on monocyte-derived DC has been interpreted as the susceptibility of these cells to M-CSF-induced macrophage development. We show here that homogeneous cultures of CD14 DC constitutively produced large amounts of M-CSF. However, presence of M-CSF neither induced macrophage development nor did it prevent terminal maturation into CD83+ DC. M-CSF production by DC was driven by GM-CSF and inhibited by the specific phosphatidylinositol 3-kinase inhibitor wortmannin. M-CSF synthesis was rapidly induced during the first 24 h of DC culture and then declined during the 5-day culture period. Replating of the cells, which was associated by a transient adherence, always induced a strong up-regulation of M-CSF synthesis. Addition of recombinant IL-10 to DC cultures enhanced c-fms expression and induced macrophage development as measured by the strong up-regulation of CD14 expression as well as by enhanced expression of the Fcgamma receptors I, II, and III (CD64, CD32, CD16). Our data demonstrate that immature monocyte-derived DC produce M-CSF which does not induce macrophage development, despite the surface expression of c-fms on DC. IL-10 appears to induce macrophage development by up-regulating c-fms and, thereby, enhancing the sensitivity of the cells to endogenously produced M-CSF.

Androstadienes↗

Nordihydroguaiaretic acid blocks secretory and endocytic pathways in human dendritic cells.

Nordihydroguaiaretic acid (NDGA), an antioxidant and inhibitor of the lipoxygenase arm of the arachidonic acid metabolism, was recently demonstrated to inhibit transport of secretory proteins to the Golgi complex. We have investigated the effects of NDGA on the secretory and endocytic activity of cultured human blood dendritic cells (DC). Treatment with NDGA strongly diminished cytokine secretion by DC. Moreover, NDGA reduced in a dose- and time-dependent fashion fluid phase as well as receptor-mediated endocytosis in DC. Zileuton and MK-886, specific inhibitors of 5-lipoxygenase and 5-lipoxygenase-activating protein, respectively, had no effect. Likewise, N-acetyl-L-cysteine, a thiol antioxidant precursor of glutathione, did not affect DC function. Finally, serum remarkably protected the cells from the inhibitory effects of NDGA. Our data demonstrate that NDGA not only disrupts vesicular transport along the secretory route but is also a potent inhibitor of the endocytic pathways in human DC and that NDGA has inhibitory properties different from those described.

Cells, Cultured↗

Interleukin 1beta mediates the modulatory effects of monocytes on LNCaP human prostate cancer cells.

Proliferative and secretory responses in androgen-sensitive prostate cancer LNCaP cells are regulated by steroid and peptide hormones and by differentiation-promoting substances. In the present study, we evaluated whether peripheral blood monocytes that exhibit anti-tumour activity in haematopoietic and solid tumours influence growth and secretion in the LNCaP cell line. For this purpose, LNCaP cells were incubated with monocyte-conditioned medium (MCM), and proliferation as well as expression of androgen receptor (AR) and secretion of prostate-specific antigen (PSA) were assessed. Conditioned medium from monocytes reduced proliferation in a dose-dependent manner. Incubation with 40% MCM caused a 50% reduction in cell proliferation. AR protein decreased by 70% and PSA levels in supernatants from LNCaP cells were reduced by approximately 80% following treatment with MCM. We focused on the contribution of two major products of activated monocytes, prostaglandin E2 and interleukin 1beta (IL-1beta), to the MCM modulatory action. LNCaP cells treated with prostaglandin E2 showed neither a reduction in proliferation nor a down-regulation of AR and PSA levels. The effects of MCM on cellular proliferation, AR protein and PSA secretion were abolished by pretreatment of MCM with a neutralizing anti-IL-1beta antibody. In addition, recombinant IL-1beta was able to replace MCM for the inhibition of proliferation and down-regulation of AR and PSA proteins. LNCaP cells were shown to express the IL-1beta receptor type 1, which transduces IL-1beta signal. Our findings reveal that monocyte-derived IL-1beta inhibits the proliferation of androgen-responsive prostate tumour cells and reduces AR and PSA levels.

Cell Division↗

Activation of human dendritic cells by bacillus Calmette-Guerin.

PURPOSE: Dendritic cells are the most potent antigen presenting cells capable of initiating antitumor immune responses. We previously showed that bacillus Calmette-Guerin (BCG) stimulates cultured human dendritic cells. We extended these studies and tested the ability of cultured human dendritic cells to express interleukin IL-8 in response to BCG. We also investigated the T cell stimulatory potential of BCG treated dendritic cells in mixed leukocyte reactions. MATERIALS AND METHODS: Dendritic cells were obtained by culturing plastic adherent mononuclear cells from peripheral blood for 6 days in the presence of granulocyte-macrophage colony-stimulating factor and IL-4. Spontaneous and BCG stimulated IL-8 protein release into culture supernatants was measured by a quantitative immunoassay. IL-8 gene transcription was assessed by reverse transcription-polymerase chain reaction. Untreated and BCG exposed dendritic cells were compared as stimulators of allogeneic T cell proliferation, measured as [3H]thymidine incorporation. RESULTS: BCG stimulated IL-8 messenger ribonucleic acid expression and IL-8 protein release. IL-8 secretion occurred in a dose and time dependent fashion. BCG induced IL-8 release was further enhanced in the presence of indomethacin. BCG treated dendritic cells were much more potent T cell stimulators than untreated dendritic cells. CONCLUSIONS: These data demonstrate that BCG enhances the production of IL-8, a potent chemokine of T cells and granulocytes, as well as the T cell stimulatory potential of human dendritic cells.

Antibodies, Monoclonal↗