Search PubMed⌕ Search

Biomedical subjects

A Hamann

Publications and source records attributed to A Hamann.

At least 55 records · Page 3Linked to original sources

Th1/Th2 subsets: distinct differences in homing and chemokine receptor expression?

The functional specialization of T effector cells according to cytokine secretion patterns has been recognized as an important parameter shaping local immune responses. Here we discuss evidence that T cell subsets might also develop distinctive properties related to homing and trafficking into inflamed sites. First, ligands for the inflammation-induced endothelial selectins were found to be induced by IL-12, and hence selectively expressed on Th1 cells generated in vitro. However, their expression on effector cells occurring in vivo is less well correlated with the Th subset. Second, a variety of receptors for and responses towards chemokines have been found to be differentially associated with Th subsets. Notably CCR5 and, to a lesser degree CXCR3 were preferentially found on Th1 cells, CCR4, CCR8 and, more controversial, CCR3 and CXCR4 on Th2 cells. Although many points, such as stability of the phenotype versus dependency on inducing cytokines and activation stages remain to be clarified, it appears that this field provides new insights into the regulation of locally balanced activities of Th subsets and might constitute a promising field for the development of new immunosuppressive drugs.

Animals↗

Modulation of gene expression by (CA)n microsatellites in the filamentous ascomycete Podospora anserina.

A microsatellite consisting of the alternating pyrimidine-purine sequence (CA)n. (TG)n is found to occur in very conserved form in the genome of various races of the filamentous ascomycete Podospora anserina. Screening of a cDNA library revealed that this sequence is frequently transcribed. In this study, we focused our attention on a short (CA)5 microsatellite located in the 5' untranslated sequence of the glyceraldehyde-3-phosphate dehydrogenase (gpd) gene of P. anserina. Specifically, we investigated whether or not the number of repeat units present in the microsatellite affects the expression of the beta-D-glucuronidase (gusA) reporter gene introduced on an autonomously replicating plasmid into fungal protoplasts. The results show that an increase in the number of microsatellite repeat units positively affects reporter gene expression.

DNA, Complementary↗

Leptin stimulates proliferation and TGF-beta expression in renal glomerular endothelial cells: potential role in glomerulosclerosis [seecomments].

BACKGROUND: Leptin inhibits food intake and increases energy expenditure. Although the kidney expresses abundant transcripts of the short form of the leptin receptor (Ob-Ra), a role for this hormone in renal function remains unclear. Because individuals with massive obesity who may exhibit increased leptin serum concentrations develop renal glomerulosclerosis, we studied whether leptin can influence renal growth and profibrogenic processes. METHODS: The effects of recombinant leptin on proliferation and synthesis of transforming growth factor-beta1 (TGF-beta1) was investigated in cultured glomerular endothelial cells of the rat (GERs) and syngeneic mesangial cells. Furthermore, leptin receptor expression and potential signal transduction pathways were evaluated in GERs. In addition, leptin was also infused for different time periods (72 hr and 3 weeks) into naive rats. RESULTS: Recombinant mouse leptin induced proliferation of GERs, but not of syngeneic mesangial cells. Coincubation with angiotensin II and leptin exerts additive proliferative effects in GERs. An antileptin-receptor antibody totally abolished this proliferation but did not influence serum-induced proliferation. GER expressed high affinity receptors of the Ob-Ra type (Kd, 4 nM; Bmax, 9700 receptors/cell). Leptin also stimulated phosphorylation of STAT1alpha, and kinase inhibitors attenuated proliferation, suggesting a pivotal role of phosphorylation in this process. Incubation of GERs with leptin also induced mRNA expression of TGF-beta1 and enhanced secretion of this profibrogenic cytokine. Short-term leptin infusion (72 hr) into naive rats induced a significant proliferation, mainly restricted to glomerular endothelial cells, and enhanced glomerular TGF-beta1 mRNA levels. In rats continuously infused for three weeks with leptin, glomerular TGF-beta1 expression was still enhanced, and an additional increase in glomerular collagen type IV mRNA and protein expression was detected. These animals revealed an increase in proteinuria compared with control-infused rats. CONCLUSION: Our findings are the first in vitro and in vivo demonstration that leptin is a renal growth and profibrogenic factor. These results may be an important contribution to our understanding of how leptin can contribute to renal damage, characterized by endocapillary proliferation and subsequent development of glomerulosclerosis, in pathophysiological situations with high circulating levels such as in diabetics or obese individuals. Although the effects of leptin itself are moderate, growth-promoting and profibrogenic effects may be enhanced in concert with other factors such as angiotensin II.

Animals↗

Insulin-mediated pseudoacromegaly in a patient with severe insulin resistance: association of defective insulin-stimulated glucose transport with impaired phosphatidylinositol 3-kinase activity in fibroblasts.

The purpose of this study was to clinically and biochemically describe an insulin resistant patient with insulin-mediated pseudoacromegaly and in addition, to examine the molecular cause responsible for the defective insulin-stimulated glucose transport in cultured fibroblasts derived from the patient. The patient was a 64 year old female with severe insulin resistant diabetes mellitus, requiring up to 200 U insulin per day, associated with typical acromegaloid characteristics including increased hand and foot size, macroglossia and development of coarse facial features. Pituitary magnetic resonance imaging as well as multiple GH and IGF-1 measurements were normal. In cultured fibroblasts derived from the patient, (i) insulin-stimulated glucose transport, (ii) the subcellular distribution of GLUT1 glucose transporters, (iii) insulin-stimulated IRS-1-immunoprecipitable phosphatidylinositol (PI) 3-kinase activity, as well as (iv) protein expression of the small GTP-binding protein Rab4 was determined. The results indicate, that insulin's ability to stimulate glucose transport is defective in the patients fibroblasts although the GLUT1 content in the plasma membrane was increased by 34% when compared to control cells. Furthermore, the IRS-1 dependent activation of PI 3-kinase was reduced by 39.6% after incubation with 10 nM insulin for 5 min. Interestingly, immunodetection of the small GTP-binding protein Rab4, which is believed to be involved in the regulation of glucose transporter vesicle targeting to the plasma membrane, revealed a marked reduction of the expression of Rab4 protein in a total membrane fraction by 57.4%. In conclusion, in fibroblasts of a patient with clinical and biochemical evidence of pseudoacromegaly, the defective insulin-stimulated glucose transport was associated with impaired insulin-stimulated PI 3-kinase activity, which may contribute to the severe insulin resistant state of this patient.

Acromegaly↗

Missense variants in the human peroxisome proliferator-activated receptor-gamma2 gene in lean and obese subjects.

The peroxisome proliferator-activated receptor-gamma2 (PPARgamma2) is almost uniquely expressed in adipose tissue and is of major importance for fat cell differentiation and lipid metabolism. This study was undertaken to assess whether two missense variants in the PPARgamma2 gene are associated with early-onset obesity. A previously described polymorphism encoding for an amino acid exchange in codon 12 (Pro12Ala) was detected with allele frequencies of 0.13 in 296 markedly obese children and adolescents and 0.14 in 130 lean individuals. A Pro115Gln variant, which had been linked to obesity in Germans in a previous association study, was not detected in any of our obese or lean subjects, who are also of German origin. We conclude from our data that these two variants in the PPARgamma2 gene are unlikely to contribute to the high prevalence of early-onset obesity.

Adolescent↗

Dissemination capacity of murine lymphoma cells is not dependent on efficient homing.

The extravasation of normal lymphocytes from blood into tissues is controlled by adhesion molecules ("homing receptors") that mediate their interaction with endothelial cells. It is an intriguing question whether malignant cells use the same pathways for hematogenous dissemination and whether these molecules are involved in the organ-specific formation of metastasis. To analyze the migration behavior of lymphoma cells in vivo, we here used several lines and sublines which exhibit differential expression of the lymph node homing receptor L-selectin and the mucosa-specific integrin alpha4beta7. We demonstrate that the ability of the various types of cells tested to accumulate in lymph nodes within the first 24 hr after intravenous (i.v.) injection is negligible, independent of their homing receptor expression profile. Our data indicate that lymphoma cells have, in comparison with naive lymphocytes, an impaired capacity to extravasate via high endothelial venules (HEV). Instead they predominantly accumulate in lung and liver, similar to activated lymphocyte populations. Nevertheless, most of the lymphoma lines tested readily form lymph node metastases in vivo. In addition, blockade of L-selectin by continual treatment with an anti-L-selectin antibody did not prevent metastatic growth of TK-1 cells in peripheral lymph nodes. We conclude that the expression of homing receptors and a high extravasation efficiency of neoplastic cells is not a prerequisite for their dissemination into lymphatic tissue.

Animals↗

CD4+ T cells migrate into inflamed skin only if they express ligands for E- and P-selectin.

Previous data suggested a role of endothelial selectins in skin homing of lymphocytes. In the current study, we have analyzed the expression and functional role of E-and P-selectin ligands on CD4+ T cells induced in vivo upon skin sensitization, using soluble selectin-Ig chimera and blocking Abs. Only low numbers of CD4+ cells expressing significant levels of E- or P-selectin ligands were present in s.c. lymph nodes of untreated mice (0.5-1.5% and 2-4%, respectively). Induction of a delayed-type hypersensitivity reaction increased the percentage of E-selectin-binding CD4+ cells in the draining lymph nodes up to 6 to 9% and that of P-selectin-binding cells up to 14%. The majority of E- and P-selectin-binding cells displayed an activated phenotype as judged by the increase in IL-2R, CD71, or cell size. The populations of E- and P-selectin-binding cells were largely overlapping; all E-selectin-binding cells also bound to P-selectin, whereas only a subfraction of P-selectin-binding cells reacted with E-selectin. Both E- and P-selectin-binding CD4+ cells, isolated by FACS, efficiently migrated into inflamed, but not normal skin, whereas P- or E-selectin ligand-negative CD4+ T cells did not. Abs against one of the two endothelial selectins partially inhibited the entry of isolated, ligand-positive cells, whereas a combination of Abs against both selectins almost completely abrogated skin homing. These data indicate that the expression of functional ligands for E- and for P-selectin is essential for homing of CD4+ T cells into the inflamed skin.

Animals↗

T helper 1 and T helper 2 cells respond differentially to chemokines.

T effector subsets, such as Th1 or Th2 cells, are key players in inflammatory reactions. It is not known whether chemokines are able to recruit these subsets differentially, as has been shown for memory vs naive T cells. Here we demonstrate that Th1 and Th2 cells differ in their intrinsic migratory properties and their chemotactic responsiveness toward distinct chemokines. While the CC-chemokines macrophage inflammatory protein (MIP)-1alpha, MIP-1beta, and RANTES were efficient chemoattractants for Th1 cells, inducing a dose-dependent transmigration, Th2 cells were not attracted by these chemokines. Another CC-chemokine, JE/monocyte chemoattractant protein (MCP)-1, and a CXC-chemokine, stromal cell-derived factor (SDF)-1alpha, exerted chemotactic effects on both Th1 and Th2 cells, but differences in sensitivity and the percentage of responding cells were recorded between both subsets. These results indicate that chemokines play a distinct role in the regulation of local immune reactions by influencing the local balance between proinflammatory and antiinflammatory T cell subsets.

Animals↗

Expression of selectin-binding epitopes and cytokines by CD4+ T cells repopulating scid mice with colitis.

Recruitment into the gut of CD4+ T cells and their activation in the colonic lamina propria (LP) are key events in the development of colitis in scid mice reconstituted with CD4+ T cells from immunocompetent, congenic donor mice. This study investigated the expression of cytokines and selectin-binding epitopes by CD4+ T cells repopulating different tissues of the adoptive scid host. Cells from the inflamed colonic LP of transplanted scid mice produced high amounts of IL-12, IFN-gamma and TNF-alpha but only low amounts IL-4 and IL-10. Intracellular cytokine staining confirmed the presence of large numbers of IFN-gamma- and TNF-alpha-producing effector CD4+ T cells in the colonic LP of scid mice with colitis but also in non-inflamed tissues [spleen (S), peritoneal cavity (PC) and mesenteric lymph nodes (mLN)] of the adoptive host. Cells from these tissues furthermore produced large amounts of IL-12. Ligands for endothelial selectins are involved in recruiting T cells into inflamed tissues. We have analyzed the expression of selectin-binding epitopes on CD4+ T cells repopulating different tissues of the adoptive scid host. We found that a large fraction of CD4+ T cells from inflamed colonic LP and from non-inflamed PC, mLN and S expressed high levels of P- and E-selectin-binding epitopes (P-Lhi) in transplanted scid mice, but not in congenic, immunocompetent control mice. Although P-Lhi CD4+ T cells were enriched in IFN-gamma-producing subsets from most (but not all) tissues, we also found large numbers of in vivo generated P-Llo CD4+ T cells producing pro-inflammatory cytokines. This was in contrast to in vitro generated Th1 CD4+ T blasts that were almost exclusively P-Lhi. In this mouse model, production of Th1-type pro-inflammatory cytokines and expression of surface epitopes binding endothelial selectins are hence strikingly up-regulated in CD4+ T cells residing in inflamed and non-inflamed tissues during the development of colitis.

Animals↗

Genome analysis of filamentous fungi: identification and characterization of an unusual GT-rich minisatellite in the ascomycete Podospora anserina.

A genomic DNA fragment, PaGT7-5, of Podospora anserina was cloned that contains three different repetitive sequence motifs including a minisatellite with an unusual structure. This element, PaMin1, consists of ten copies of a 16 bp repeat unit with five GT dinucleotide repeats. Adjacent to PaMin1, a short poly(GT) stretch and four repeats of a 12 bp sequence were identified. Six alleles which differ in the number of the minisatellite unit were demonstrated in 18 different P. anserina strains. The flanking sequences of PaMin1 did not display any sequence alterations. A PCR analysis of total DNA from cultures of different age revealed no sequence changes, indicating that this repetitive DNA remains stable during aging. Southern-blot hybridization experiments of DNA from different strains detected only minor fragment length polymorphisms in the immediate vicinity of PaMin1. In contrast, major polymorphisms were observed at a greater distance from the locus indicating that this locus can be used as an informative probe to discriminate between different P. anserina strains.

Alleles↗

Analysis of the uncoupling protein-1 (UCP1) gene in obese and lean subjects: identification of four amino acid variants.

Uncoupling protein-1 (UCP1) is uniquely expressed in brown adipose tissue (BAT) and of major importance for the tissues thermogenic capacity. This study was undertaken to detect variants in the UCP1 gene by single strand conformational polymorphism (SSCP) analysis and subsequent sequencing, and determine their potential association with obesity. Four variants predicting for amino acid substitutions were detected, of which Arg40Trp (exon 1) and Lys257Arg (exon 5) were rare mutations. In contrast, the allele frequency of a polymorphism in exon 2 predicting for an Ala64Thr substitution was 8.2% in a cohort of 293 obese children and adolescents compared to 4.1% in 134 lean individuals, while the allele frequency of a Met229Leu variant (exon 5) was not markedly different between the obese (10.4%) and lean (12.0%) study groups. Although one of the identified polymorphisms tends to have a higher frequency in obese than in lean subjects, variants of the UCP1 gene do not seem to contribute significantly to the development of early-onset obesity in the German population.

Adolescent↗

No evidence for involvement of the leptin gene in anorexia nervosa, bulimia nervosa, underweight or early onset extreme obesity: identification of two novel mutations in the coding sequence and a novel polymorphism in the leptin gene linked upstream region.

Mutations in the leptin gene can result in profound obesity in both rodents and humans. In humans, serum leptin levels correlate with body mass index (BMI: kg m(-2)). However, in patients with anorexia nervosa (AN) leptin levels are lower than in BMI-matched healthy controls. We had previously argued that genes involved in weight regulation should be considered as candidate genes for AN. To investigate this hypothesis we screened the coding region of the leptin gene and part of the leptin gene linked upstream region (LEGLUR) in 49 patients with AN and 315 children and adolescents with extreme obesity. Two novel mutations in the coding region (Ser-91-Ser; Glu-126-Gln), each found in a single proband, and a novel polymorphism in the LEGLUR (position -1387 G/A; frequency of both alleles approximately 0.50) were identified. Tests for association of LEGLUR polymorphism alleles were negative by comparing allele frequencies between 115 AN patients, 71 bulimia nervosa patients, 315 extremely obese children and adolescents, 141 healthy underweights and 50 controls that were not selected for body weight. Tests for transmission disequilibrium were also negative. Hence, an influence of variations in the leptin gene on eating disorders or extreme early onset obesity could not be detected.

Adolescent↗

Screening for variability in the ciliary neurotrophic factor (CNTF) gene: no evidence for association with human obesity.

Systemic administration of the neurocytokine ciliary neurotrophic factor (CNTF) normalizes the obese phenotype of ob/ob and db/db mice. CNTF exerts its multiple effects through a receptor complex whose sequence, localization in hypothalamic nuclei and mode of signal transduction share remarkable similarities with the leptin receptor. In the human CNTF gene, a mutation in the first intron creates a new splice acceptor site, with the resulting mRNA coding for an aberrant protein (Takahashi et al., 1994). Given the potential of CNTF to influence energy homeostasis, this study was undertaken to determine whether variability in the CNTF gene is associated with human obesity. The previously described mutation was found in 30.3% of obese children and adolescents, 7 of which were homozygous (allele frequency 0.163). 29.5% of lean subjects carried the mutation, none of which were homozygous (allele frequency 0.148; corrected p = 1 compared to obese). No further mutations were detected by single strand conformational polymorphism (SSCP) analysis. In conclusion, variants in the CNTF gene are unlikely to be associated with the development of early-onset obesity.

Adolescent↗

Obesity after genetic ablation of brown adipose tissue.

Brown adipose tissue (BAT) has been proposed to play an important role in the regulation of energy balance. The unique presence of uncoupling protein (UCP) permits BAT to expend calories unrelated to the performance of work with the net result being the generation of heat. The role of BAT in mediating diet-induced thermogenesis had led to the suggestion that BAT activity contributes to metabolic inefficiency and, as such, might provide a cellular and molecular explanation for protection from obesity. In order to directly test this hypothesis, we recently created mice with isolated BAT deficiency by using a suicide DNA transgenic vector in which regulatory elements of the UCP gene were used to drive brown fat specific expression of diptheria toxin A-chain (DTA). Transgenic mice are characterized by reduced energy expenditure and marked obesity, associated with insulin resistance and NIDDM with both receptor and post-receptor components. Feeding of a "Western diet" which derives 41% of its calories from fat leads to a synergistic effect on the development of obesity and its accompanying disorders in transgenics. The results of our studies support a critical role for BAT in the nutritional homeostasis of mice and suggest that the intact thermogenic function of BAT is required for protection from diet induced obesity. Obese UCP-DTA mice have many features in common with obesity as it appears in most humans, and should therefore be a useful model that may aid studies of the pathogenesis and treatment of human obesity, NIDDM and their complications.

Adipose Tissue, Brown↗

Analysis and sorting of T cells according to cytokine expression.

Functional distinct populations of T helper cells can be defined according to the expression of cytokines. A remarkable diversity of cytokine expression has been demonstrated in single T cells even from clonal populations and up to now no stable surface markers have been described which on the single-cell level directly correlate with the secretion of a certain cytokine. Since cytokines are the major parameters of T cell effector function we have developed strategies which now allow to separate cells according to the specific cytokines they secrete. The "affinity matrix technology"--secreted molecules are relocated to the cell surface by an artificially created antibody matrix--allows to isolate cells according to a distinct secreted product. In addition to this universal, but laborious technology, we could demonstrate by high-sensitivity immunofluorescence that IFN-gamma and IL-10 but not IL-2 and IL-4 are specifically expressed in low copy number on the surface of cells secreting these cytokines. Surface IFN-gamma and IL-10 are the first unambiguous surface markers for pro-inflammatory IFN-gamma-secreting Th 0/1 cells and IL-10-producing anti-inflammatory Th2/3 cells. We have used purified cytokine-secreting T cells to study in individual T cells the sequential production of IL-2, IFN-gamma, and IL-10, the stability of IFN-gamma expression and the selective homing of IFN-gamma-producing cells into inflamed tissues.

Animals↗

[Current insulin therapy. Treatment with new short-acting and retard insulin analogs].

Intensified insulin therapy of type I diabetics can now be rendered more patient-friendly through the use of rapid-action insulin. Thus, for example, the rapid absorption of the monomeric lispro insulin (Humalog) out of the subcutaneous fatty tissue obviates the need to observe a delay between injection and meal, and the changed kinetics of action reduce the danger of postprandial episodes of hypoglycemia. In addition to practice-relevant hints on the use of these new short-acting insulins in intensified insulin therapy, this short article reviews the current state of the development of a new long-acting insulin that is shortly to be tested in an international multi-center phase III study.

Blood Glucose↗

P-selectin glycoprotein ligand-1 (PSGL-1) on T helper 1 but not on T helper 2 cells binds to P-selectin and supports migration into inflamed skin.

We have shown recently that mouse Th1 cells but not Th2 cells are selectively recruited into inflamed sites of a delayed-type hypersensitivity (DTH) reaction of the skin. This migration was blocked by monoclonal antibodies (mAb) against P- and E-selectin. Here we show that Th1 cells bind to P-selectin via the P-selectin glycoprotein ligand-1 (PSGL-1). This is the only glycoprotein ligand that was detectable by affinity isolation with a P-selectin-Ig fusion protein. Binding of Th1 cells to P-selectin, as analyzed by flow cytometry and in cell adhesion assays, was completely blocked by antibodies against PSGL-1. The same antibodies blocked partially the migration of Th1 cells into cutaneous DTH reactions. This blocking activity, in combination with that of a mAb against E-selectin, was additive. PSGL-1 on Th2 cells, although expressed at similar levels as on Th1 cells, did not support binding to P-selectin. Thus, the P-selectin-binding form of PSGL-1 distinguishes Th1 cells from Th2 cells. Furthermore, PSGL-1 is relevant for the entry of Th1 cells into inflamed areas of the skin. This is the first demonstration for the importance of PSGL-1 for mouse leukocyte recruitment in vivo.

Animals↗