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J M Weiss

Publications and source records attributed to J M Weiss.

At least 55 records · Page 3Linked to original sources

Analysis of mouse dendritic cell migration in vivo upon subcutaneous and intravenous injection.

Dendritic cells (DC) have an increasingly important role in vaccination therapy; therefore, this study sought to determine the migratory capacity and immunogenic function of murine bone-marrow (BM)-derived DC following subcutaneous (s.c.) and intravenous (i.v.) injection in vivo. DC were enriched from BM cultures using metrizamide. Following centrifugation, the low-buoyant density cells, referred to throughout as DC, were CD11c(high), Iab(high), B7-1(high) and B7-2(high) and potently activated alloreactive T cells in mixed lymphocyte reactions (MLR). In contrast, the high-density cells expressed low levels of the above markers, comprised mostly of granulocytes based on GR1 expression, and were poor stimulators in MLR. Following s.c. injection of fluorescently labelled cells into syngeneic recipient mice, DC but not granulocytes migrated to the T-dependent areas of draining lymph nodes (LN). DC numbers in LN were quantified by flow-cytometric analysis, on 1, 2, 3, 5 and 7 days following DC transfer. Peak numbers of around 90 DC per draining LN were found at 2 days. There was very little migration of DC to non-draining LN, thymus or spleen at any of the time-points studied. In contrast, following i.v. injection, DC accumulated mainly in the spleen, liver and lungs of recipient mice but were largely absent from peripheral LN and thymus. The ability of DC to induce T-cell-mediated immune responses was examined using trinitrobenzenesulphate (TNBS)-derivatized DC (TNBS-DC) to sensitize for contact hypersensitivity responses (CHS) in naive syngeneic recipients. Following s.c. injection, as few as 105 TNBS-DC, but not TNBS-granulocytes, sensitized for CHS responses. However, the same number of TNBS-DC failed to induce CHS following i.v. injection. In summary, this study provides new and quantitative data on the organ specific migration of murine BM-derived DC following s.c. and i.v. injection. The demonstration that the route of DC administration determines the potency of CHS induction, strongly suggests that the route of immunization should be considered in the design of vaccine protocols using DC.

Adoptive Transfer↗

In vivo UVA-1 and UVB irradiation differentially perturbs the antigen-presenting function of human epidermal Langerhans cells.

Ultraviolet B (UVB, 290-320 nm) radiation is known to suppress the immune function of epidermal Langerhans cells. We have recently described that in vitro UVB irradiation perturbs the antigen-presenting cell function of Langerhans cells by inhibiting their expression of functional B7 costimulatory molecules (B7-1, B7-2). The aim of this study was to determine wavelength-specific UV effects on Langerhans cells function in vivo, specifically UVB and UVA-1. To address this issue, volunteers were irradiated on the sun protected volar aspects of their forearms with 3 x minimal erythema dose of UVB (Philips TL-12) and UVA-1 (UVASUN 5000 Mutzhaas). Langerhans cells were isolated from suction blister roofs immediately following irradiation. Langerhans cells isolated from UVB- but not from UVA-1-irradiated skin failed to activate naïve resting allogeneic T cells (mixed epidermal cell leukocyte reaction) or primed tetanus toxoid reactive autologous T cells. Langerhans cells isolated from sham-irradiated or UVA-1-irradiated skin strongly upregulated B7-2 molecules during short-term tissue culture. By contrast, Langerhans cells from UVB-irradiated skin did not upregulate B7-2 molecules. Furthermore, exogenous stimulation of the B7 pathway by anti-CD28 stimulatory monoclonal antibodies restored the capacity of UVB-irradiated Langerhans cells to activate both alloreactive and tetanus toxoid-reactive T cells, implying suppressed antigen-presenting cell activities and perturbed B7 expression of Langerhans cells isolated from UVB-irradiated skin are related. Those studies demonstrate that in vivo UVB, but not UVA-1, interferes with the activation-dependent upregulation of B7 molecules on Langerhans cells, which in turn is of functional relevance for the perturbed antigen-presenting cell function of Langerhans cells within UVB- but not UVA-1-irradiated skin.

Antigen Presentation↗

TGF-beta downmodulates cytokine-induced monocyte chemoattractant protein (MCP)-1 expression in human endothelial cells. A putative role for TGF-beta in the modulation of TNF receptor expression.

The expression of chemokines, including monocyte chemoattractant protein (MCP)-1, by many cell types contributes to the pathogenesis of inflammatory diseases. We examined MCP-1 expression in human umbilical vein endothelial cells (EC) following cytokine treatment. We specifically compared the effect of TGF-beta 1 on this cytokine-induced expression, as TGF-beta has been shown to have immunosuppressive effects on EC. EC expressed MCP-1 mRNA and protein in response to TNF alpha, IFN gamma or IL-1beta, but not TGF-beta1. TGF-beta1 in cotreatment with either TNF alpha or IL-1beta, but not IFN gamma, significantly decreased MCP-1 mRNA and protein expression, as compared to TNF alpha or IL-1beta treatment alone. Pretreatment with TGF-beta had no effect on any cytokine-induced MCP-1 expression. TGF-beta had no effect on MCP-mRNA stability. Examination of TNF receptor expression by flow cytometry revealed that TNF alpha treatment caused a decrease of p75 expression on the cell surface. The p55 receptor was not detected at the cell surface, but was localized intracellularly by confocal microscopy. Treatment of EC with TGF-beta alone decreased p75 surface expression and in cotreatment with TNF alpha, caused an additive decrease in p75 surface expression, as compared to TNF alpha treatment alone. Whereas mRNA expression for both receptors was increased with TNF alpha treatment, this was decreased with TGF-beta/TNF alpha cotreatment, as compared to TNF alpha treatment alone. Thus, the expression of TNF receptors was also down-modulated by TGF-beta. These findings indicate additional mechanisms by which TGF-beta exerts immunosuppressive properties on EC.

Adult↗

Galanin: a significant role in depression?

This paper describes a hypothesis that attempts to account for how changes in noradrenergic systems in the brain can affect depression-related behaviors and symptoms. It is hypothesized that increased activity of the locus coeruleus (LC) neurons, the principal norepinephrine (NE)-containing cells in the brain, causes release of galanin (GAL) in the ventral tegmentum (VTA) from LC axon terminals in which GAL is colocalized with NE. It is proposed that GAL release in VTA inhibits the activity of dopaminergic cell bodies in this region whose axons project to forebrain, thereby resulting in two of the principal symptoms seen in depression, decreased motor activation and decreased appreciation of pleasurable stimuli (anhedonia). The genesis of this hypothesis, which derives from studies using an animal model of depression, is described as well as recent data consistent with the hypothesis. The formulation proposed suggests that GAL antagonists may be of therapeutic benefit in the treatment of depression.

Animals↗

Astrocyte-derived monocyte-chemoattractant protein-1 directs the transmigration of leukocytes across a model of the human blood-brain barrier.

The migration of leukocytes across the blood-brain barrier (BBB) into the central nervous system is critical in the pathogenesis of central nervous system inflammatory diseases. The production of chemokines, such as monocyte-chemoattractant protein-1 (MCP-1), by endothelial cells (EC) and astrocytes may initiate and amplify this process. Using a coculture of human EC and astrocytes to model the BBB, we demonstrated that exogenous MCP-1 induces the transmigration of monocytes in a dose-dependent manner. TNF-alpha, IFN-gamma, or IL-1beta treatment of cocultures also induced significant migration of monocytes that correlates with the induction of MCP-1 protein. TGF-beta, previously shown to induce MCP-1 expression in astrocytes, but not in EC, caused migration of monocytes across cocultures, but not across EC grown alone. Monocytes and lymphocytes transmigrated across cytokine-treated cocultures in greater numbers than across EC alone. Astrocytes were the main source of cytokine-induced MCP-1, supporting a role for astrocytes in facilitating leukocyte transmigration. A blocking Ab to MCP-1 inhibited MCP-1- and cytokine-induced transmigration of monocytes by 85-90%. Cytokine treatment of cocultures also resulted in the transmigration of activated, CD69-positive lymphocytes. The MCP-1-mediated transmigration of monocytes across cocultures was blocked using an Ab to ICAM-1 and inhibited by 55% using an Ab to E-selectin. These data suggest a central role for astrocyte-derived MCP-1 in directing the migration of monocytes and lymphocytes across the BBB.

Antibodies, Monoclonal↗

Astrocyte expression of monocyte chemoattractant protein-1 is differentially regulated by transforming growth factor beta.

The pathophysiology of central nervous system (CNS) inflammatory disease is dependent, in part, on leukocyte recruitment across the blood-brain barrier. The expression of cytokines and chemokines by astrocytes may contribute to this process. Astrocytes express monocyte chemoattractant protein-1 (MCP-1), an activator of monocytes and a chemoattractant for monocytes and activated T cells. We examined the regulation of MCP-1 expression in human fetal astrocytes following cytokine treatment in the presence and absence of transforming growth factor beta (TGF-beta). TGF-beta, TNFalpha and IL-1beta, but not IFNgamma, induced MCP-1 mRNA and protein. TGF-beta, in cotreatment with TNFalpha caused an additive increase in MCP-1 mRNA, but not protein. In combination with IFNgamma, TGF-beta significantly increased MCP-1 mRNA and protein, as compared to either untreated, TGF-beta- or IFNgamma-treated astrocytes. However, TGF-gamma in cotreatment with IL-1beta decreased MCP-1 mRNA and protein, as compared to IL-1beta alone. Treatment of astrocytes with TGF-beta prior to TNFalpha, IFNgamma or IL-1beta treatment significantly increased MCP-1 expression. The kinetics of cytokine expression in the CNS may differentially regulate astrocyte-derived MCP-1 expression and subsequent recruitment and activation of leukocytes.

Astrocytes↗

Genetic analysis of 53 lymph node-negative breast carcinomas by CGH and relation to clinical, pathological, morphometric, and DNA cytometric prognostic factors.

Within the subgroup of lymph node-negative breast cancers, there is a need for accurate prognostic indicators to select high-risk patients. Comparative genomic hybridization (CGH) provides an opportunity to screen the whole genome for chromosomal aberrations which may be associated with poor clinical outcome. The results of CGH analysis of 53 lymph node-negative breast carcinomas are presented and correlated with a set of clinico-pathological and cytometric features with strong prognostic value. The most frequent chromosomal gains were, in descending order of frequency, 8q, 1q, Xq, 5q, 4q, and 3q. Recurring losses were observed at chromosomal arms 19p, 1p, 17p, 22q, 4q, and 8p. There was not a single, unique combination of chromosomal aberrations, but gains of 1q and 8q were frequently observed simultaneously (15/53 cases). DNA aneuploid tumours harboured more gains than DNA diploid tumours, but there was no correlation between the total number of events per tumour detected by CGH and any of the prognostic features. Of the many chromosomal aberrations found, only gains of chromosome 8q were strongly correlated with high values of mean nuclear area. A clearer picture was obtained when comparing only those cases which, according to their cytometric and morphometric features, had either the worst or the best prognosis. Gains occurred mainly in the 'poor prognostic features' group, in particular at 8q, 11q13, 17q, and 20q. It is hypothesized that these gains could be late, progression-related events and may be associated with aggressive clinical behaviour. These four chromosomal regions may therefore be of potential prognostic value. Correlation with real follow-up data will enable us better to identify those patients who have a high risk of recurrence within the subgroup of lymph node-negative breast cancer patients.

Adult↗

Selective breeding of rats for high and low motor activity in a swim test: toward a new animal model of depression.

Because low motor activity ina swim test has been found to represent "depression-like" behavior in the rat, Sprague-Dawley (SD) albino rats were selectively bred for low motor activity (low struggling time/high floating time) in a swim test, while others were bred for high motor activity (high struggling time/low floating time). Eighty-four male and 42 female SD rats were initially purchased from Charles-River Breeding Laboratories in 1987, their behavior assessed in a 15-min swim test, and selective breeding carried out by mating those male and female rats that showed either low or high levels of motor activity in the test; results from behavioral testing of the first 18 generations produced by this selective breeding process are reported here. Two rat lines have been obtained, Swim Low-Active (SwLo) and Swim High-Active (SwHi) rats, which differ dramatically in swim-test behavior--SwLo rats show little struggling and much floating, while SwHi rats show the reverse. Activity scores of individual SwLo and SwHi rats now show no overlap. Selective breeding has produced bidirectional changes; that is, SwLo rats are considerably less active than randomly bred Sprague-Dawley albino rats, while SwHi rats are considerably more active than randomly bred rats. Measuring activity of SwLo and SwHi rats in other situations--ambulation in the home cage, open-field activity, exploratory activity in a novel, home cage-like situation, and immobility in the Porsolt swim test--revealed that differences are most pronounced when animals respond to acute challenges; under these conditions, SwHi rats show active, assertive behavior, whereas SwLo rats show a distinct absence of this type of response. When SwLo rats from the 8th to the 11th generations were given antidepressant medication [desipramine, (DMI), a tricyclic, or phenelzine, an MAO inhibitor], chronic but not acute administration of both drugs increased swim-test activity of SwLo rats. Buspirone, an anxiolytic, did not increase activity of SwLo rats. Use of animals selectively bred for high and low activity in the swim test may represent a new tool for studying physiological processes relevant to affective disorders and for testing antidepressant drugs/treatments.

Animals↗

Effects of antidepressant drugs on rats bred for low activity in the swim test.

To determine responsivity to antidepressant medication of Sprague-Dawley rats bred for low activity in the swim test [Swim Low-Active (SwLo) rats], these animals were given different antidepressant drugs via subcutaneously implanted minipumps for 1, 12, or 26 days, and then were tested for activity in the swim test and 2 days later in the open field. Antidepressant drugs given were amitriptyline, imipramine, desipramine (tricyclics), phenelzine (monoamine oxidase inhibitor (MAOI)], fluoxetine [selective serotonin reuptake inhibitor (SSRI)], venlafaxine, and bupropion (atypical). To assess specificity of response, the nonantidepressant drugs amphetamine, caffeine, and haloperidol were also tested. For comparison, several drugs were also tested in rats bred for high activity in the swim test [Swim High-Active (SwHi) rats]. When administered for 14 and/or 28 days (but not for 1 day), imipramine, desipramine, venlafaxine, phenelzine, and bupropion significantly increased struggling behavior of SwLo rats in swim test. No nonantidepressant drug significantly elevated struggling activity. Long-term administration of phenelzine and bupropion also significantly decreased floating behavior in the swim test, although amphetamine also had this effect at all times of administration. No significant effects of antidepressants were seen in SwHi rats. Amitriptyline and fluoxetine were ineffective in altering either struggling or floating in SwLo rats; however, a high dose of an SSRI (sertraline) did reduce floating, but this type of effect is probably not indicative of antidepressant action. Behavior in the open field was not consistently affected by any drug type. It is concluded that, based on pharmacological response profile in the swim test, SwLo rats represent depression that is responsive to potent norepinephrine reuptake-blocking antidepressants and also MAOIs; atypical depression may fit this profile.

Animals↗

Dual action of androgen on calcium signaling and luteinizing hormone secretion in pituitary gonadotrophs.

An increase in serum androgen levels associated with a suppression of cyclic gonadotropin secretion is frequently observed in females with impaired ovarian function. Here, we addressed the hypotheses that androgens (testosterone and dihydrotestosterone) alter gonadotropin secretion by modulating agonist-induced Ca2+ signaling and/or Ca(2+)-controlled exocytosis. In mixed populations of pituitary cells from female rats, addition of testosterone reduced basal and agonist (GnRH)-induced gonadotropin secretion in a concentration- and time-dependent manner. The suppressive actions of this androgen on gonadotropin secretion were observed over the full GnRH concentration range. Reduction in agonist-induced gonadotropin secretion was also observed after addition of dihydrotestosterone, indicating that the inhibitory action of testosterone is not mediated by its conversion to estradiol. Both the extracellular Ca(2+)-independent spike phase and extracellular Ca(2+)-dependent sustained phase of GnRH-induced gonadotropin secretions were affected by testosterone. In part, the inhibitory action of testosterone was mediated by attenuation of GnRH-induced InsP3 production and InsP3-dependent Ca2+ mobilization. In addition, testosterone exhibited a Ca(2+)-independent action on gonadotropin secretion, as documented by attenuation of high potassium-induced secretion without an affect on depolarization-induced Ca2+ signals. These results suggest that androgen inhibition of gonadotropin secretion occurs at two distinct steps in the secretory pathway, one prior to and one after elevation in cytosolic Ca2+ concentration.

Androgens↗

Effect of modular head seating on the cement-stem interface strength of femoral prostheses.

This study tested the hypothesis that modular head seating in situ reduces the cement-stem interfacial strength. Femoral prostheses were implanted in eight pairs of cadaveric femurs; one femur of each pair received a stem for which the modular head was seated by dropping a weight from a given height (treated); the contralateral femur received a nonseated stem (control). Transverse sections were cut from four standardized locations on each implanted femur, and the yield shear stress and ultimate shear stress of the interface were determined from push-out tests. There was no significant difference in cement-stem interfacial strength between seated and nonseated prostheses. These results suggest that seating modular heads in situ has no deleterious effect on the acute interfacial strength of cemented femoral implants.

Bone Cements↗

Determination of T-lymphocyte adhesion to endothelial cells using a novel luminescence marker.

Here we report the quantification of T cell adhesion to endothelial cells using the luminescence marker BioLite. A new application for this substance was established using a microassay for the detection of TK-1 mouse T-lymphoma cell adhesion to unstimulated or TNF alpha-stimulated eEnd.2 mouse vascular endothelioma cells. Prelabelling of TK-1 with the marker resulted in luminescence values linearly related to the number of adherent T cells. The marker was not toxic for T cells or endothelial cells nor did it interfere with the expression or function of adhesion molecules on T cells (LFA-1, VLA-4) or endothelial cells (ICAM-1, VCAM-1). When compared with established techniques to quantify T cell/endothelial cell adhesion, i.e. microscopical evaluation or isotope prelabelling of T cells, this method was found to be just as reliable and sensitive.

Animals↗

The low molecular weight Dextran 40 inhibits the adhesion of T lymphocytes to endothelial cells.

Dextrans are complex colloidal macromolecules widely used as haemorrheologic substances and anti-thrombotic agents. Here we describe a novel function of Dextran 40 by demonstrating an inhibition of T lymphocyte adhesion to endothelial cells (EC). We applied an established microassay in which constitutive and tumour necrosis factor-alpha (TNF-alpha)-induced binding of mouse T lymphoma cells (TK-1) to mouse endothelioma (eEND.2) cells is mediated by the interaction of intercellular adhesion molecule-1 (ICAM-1) and vascular cell adhesion molecule-1 (VCAM-1) on EC with their counter-receptors the LFA-1 heterodimer (CD11a/CD18) and VLA-4 on T cells. Dextran 40 in therapeutically achievable levels (2-32 mg/ml) reduced both constitutive and TNF-alpha-stimulated TK-1 adhesion to eEND.2. Selective preincubation of eEND.2 or TK-1 revealed that Dextran 40 acted exclusively on the T cells. To explore further the mechanisms by which Dextran 40 interfered with TK-1 adhesion, their LFA-1 and VLA-4 expression was analysed by FACS. The surface expression levels of neither receptor were affected by Dextran 40. However, confocal microscopy revealed that Dextran 40 interfered with the activation-dependent capping and clustering of LFA-1 and VLA-4 on the surface of TK-1. We conclude that Dextran 40 inhibits the capacity of TK-1 T cells to adhere to eEND.2 endothelial cells and thus may be useful for therapeutic intervention in diseases associated with enhanced T lymphocyte binding to microvascular endothelium.

Animals↗

Activation-dependent modulation of hyaluronate-receptor expression and of hyaluronate-avidity by human monocytes.

During inflammation, activated monocytes (Mo) migrate into tissues where they interact with extracellular matrix components such as hyaluronate (HA), produced in high amounts at inflammatory sites. We determined whether Mo that had invaded sites of cutaneous inflammation bind HA and express the putative HA receptors CD44 isoforms, ICAM-1, or receptor for hyaluronate-mediated motility (RHAMM). In cutaneous inflammation, activated infiltrating Mo displayed high HA avidity and expressed epitopes encoded by CD44s, CD44 variant exons v3, v4, v5, v6, v7, and v9, and ICAM-1, but not RHAMM. We further investigated how activation affects the avidity of Mo for HA and which receptors were responsible for such binding. Mo freshly purified from human peripheral blood bound little HA and expressed CD44s but no epitopes encoded by CD44v exons, ICAM-1, or RHAMM. During short-term tissue culture, Mo upregulated their HA avidity and expression of ICAM-1, CD44s, and epitopes encoded by CD44v, all of which were further augmented by IFN-gamma or lipopolysaccharide, whereas RHAMM was not detectable. Thus in vitro activated Mo resembled Mo that had migrated to inflammatory sites in vivo. Lipolysaccharide or IFN-gamma-induced HA binding was inhibited by more than 90% with monoclonal antibodies directed against N-terminal HA binding domains of CD44s, but not by monoclonal antibodies against CD44v epitopes or ICAM-1. In conclusion, we show that upon in vitro or in vivo activation, Mo enhance their capacity to bind HA. This is critically dependent upon the expression ofCD44s epitopes. Regulated CD44-HA interactions may be important for the ability of Mo to migrate into and within sites of inflammation and for Mo effector functions.

Humans↗

Some reflections of countertransference in the treatment of criminals.

Most of the literature on countertransference reactions with criminals has emphasized negative emotions such as hatred, rage, and fear. This article discusses reactions that have been relatively neglected, such as fascination and envy. Fantasies of leading a life of excitement are frequently evoked. Recognizing these fantasies and emotions and accepting them as attractive can increase our understanding of the offender and his life. The lure of criminality, despite its severe consequences, become more understandable. Accepting these emotions can bring a challenge to life, and a reevaluation of one's morals and values. A balance between the reality of "normal" life and fantasy is ultimately accepted.

Antisocial Personality Disorder↗

Treatment of leg edema and wounds in a patient with severe musculoskeletal injuries.

This case report describes the application of a technique for the treatment of leg edema and wounds resulting from a severe distal tibiofibular fracture. Following injury and numerous fracture- and wound-related surgeries in the first year postinjury, this patient developed leg edema, required daily treatment of 2 leg wounds, and was unable to wear a shoe due to foot swelling. He was referred to the physical therapy clinic 1 year postinjury for ankle rehabilitation and to diminish the leg edema. Therapy consisting of manual lymph drainage, compressive bandaging, exercise, and skin care was provided for 7 weeks. A compression stocking was issued near the end of treatment, which the patient continued to wear daily thereafter. At the time of discharge from therapy, the leg edema had decreased 74% and the wound area of both wounds had decreased 89%. Improvements continued following discharge. By 10 weeks after the start of treatment, edema had decreased 80.9%, one wound had healed, and the second wound was 93% improved. The patient was able to wear a shoe and resume recreational activities. This case report provides insight into a treatment that may shorten rehabilitation and control the cost of caring for injuries complicated by prolonged edema.

Bandages↗

CD44 variant isoforms are essential for the function of epidermal Langerhans cells and dendritic cells.

Upon antigen encounter epidermal Langerhans cells (LC) and dendritic cells (DC) emigrate from peripheral organs and invade lymph nodes through the afferent lymphatic vessels and then assemble in the paracortical T cell zone and present antigen to T lymphocytes. Part of this process is mimicked by metastasizing tumor cells. Since splice variants of CD44 promote metastasis to lymph nodes we explored the expression of CD44 proteins on migrating LC and DC. We show that following antigen contact, LC and DC upregulate pan CD44 epitopes and epitopes encoded by variant exons v4, v5, v6 and v9. Antibodies against CD44 epitopes arrest LC in the epidermis, prevent the binding of activated LC and DC to the T cell zones of lymph nodes, and severely inhibit their capacity to induce a delayed type hypersensitivity reaction to a skin hapten in vivo. Our results demonstrate that CD44 splice variant expression is obligatory for the migration and function of LC and DC.

Cell Movement↗