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Dive into the research topics where Gerhard Giegerich is active.

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Featured researches published by Gerhard Giegerich.


Journal of Leukocyte Biology | 2002

CD137 is expressed by follicular dendritic cells and costimulates B lymphocyte activation in germinal centers

Susanne Pauly; Karin Broll; Margarethe Wittmann; Gerhard Giegerich; Herbert Schwarz

CD137, a member of the TNF receptor family, and its ligand are expressed on T lymphocytes and antigen‐presenting cells (APC), respectively. During interaction with APC, T lymphocytes receive a potent, costimulatory signal through CD137. Reverse signaling has been demonstrated for the CD137 ligand, which causes activation in monocytes. Here we show that B lymphocytes also receive costimulatory signals through the CD137 ligand. Immobilized CD137 augmented proliferation of preactivated B lymphocytes up to fivefold and immunoglobulin synthesis, up to threefold. CD137 had no effect on resting cells. Further, we show that CD137 is expressed in vivo by follicular dendritic cells (FDC) in germinal centers. Germinal centers form during humoral immune responses and are essential for B lymphocyte affinity maturation. These data imply that, similar to the CD40 receptor/ligand system, which mediates T lymphocyte help to B lymphocytes after the first antigen encounter, the CD137 receptor/ligand system may mediate costimulation of B lymphocytes by FDC during affinity maturation.


Journal of Neuroimmunology | 2005

Targeting fibroblast growth factor-inducible-14 signaling protects from chronic relapsing experimental autoimmune encephalomyelitis

André M. Mueller; Xiomara Pedré; Ingo Kleiter; M. Hornberg; Andreas Steinbrecher; Gerhard Giegerich

The TNF-related weak inducer of apoptosis (TWEAK) is a TNF family member mediating proinflammatory effects by its receptor fibroblast growth factor-inducible-14 (Fn14). We studied the role of TWEAK/Fn14 in experimental autoimmune encephalomyelitis (EAE) by protein vaccination with TWEAK and Fn14 and recombinant TWEAK-DNA, respectively. TWEAK-DNA vaccination worsened the clinical course of EAE and increased central nervous system (CNS) inflammation. TWEAK increased the secretion of CCL2 [monocyte chemotactic protein-1 (MCP-1)] by CNS endothelial cells and astrocytes in vitro, suggesting CCL2 as a critical mediator of TWEAKs proinflammatory effects. Vaccination with the extracellular domain of TWEAK or with Fn14 resulted in the induction of specific inhibitory antibodies and an amelioration of EAE signs in two different models in rats and mice. Spinal cord inflammatory infiltrates were significantly diminished. Purified IgG from TWEAK- or Fn14-vaccinated rats prevented TWEAK-induced production of CCL2 by endothelial cells. Blocking Fn14 signaling represents a novel approach with potential for the treatment of CNS autoimmunity.


Journal of Neuroinflammation | 2008

Novel role for SLPI in MOG-induced EAE revealed by spinal cord expression analysis

André M. Mueller; Xiomara Pedré; Thomas Stempfl; Ingo Kleiter; Sebastien Couillard-Despres; Ludwig Aigner; Gerhard Giegerich; Andreas Steinbrecher

BackgroundExperimental autoimmune encephalomyelitis (EAE) induced by myelin oligodendrocyte protein (MOG) in female Dark Agouti (DA) rats is a chronic demyelinating animal model of multiple sclerosis (MS). To identify new candidate molecules involved in the evolution or repair of EAE-lesions we used Affymetrix oligonucleotide microarrays to compare the spinal cord transcriptome at the peak of EAE, during remission and at the first relapse with healthy DA rats.MethodsUntreated DA rats and DA rats immunised with MOG protein were sacrificed at defined time points. Total RNA was isolated from spinal cord tissue and used for hybridization of Affymetrix rat genome arrays RG U34 A-C. Selected expression values were confirmed by RealTime PCR.Adult neural stem cells were incubated with recombinant secretory leukocyte protease inhibitor (SLPI). Proliferation was assessed by BrdU incorporation, cyclin D1 and HES1 expression by RealTime PCR, cell differentiation by immunofluorescence analysis and IkappaBalpha degradation by Western blot.ResultsAmong approximately 26,000 transcripts studied more than 1,100 were differentially regulated. Focussing on functional themes, we noticed a sustained downregulation of most of the transcripts of the cholesterol biosynthesis pathway. Furthermore, we found new candidate genes possibly contributing to regenerative processes in the spinal cord. Twelve transcripts were solely upregulated in the recovery phase, including genes not previously associated with repair processes. Expression of SLPI was upregulated more than hundredfold during EAE attack. Using immunohistochemistry, SLPI was identified in macrophages, activated microglia, neuronal cells and astrocytes. Incubation of adult neural stem cells (NSC) with recombinant SLPI resulted in an increase of cell proliferation and of differentiation towards oligodendrocytes. These processes were paralleled by an upregulation of the cell-cycle promotor cyclin D1 and a suppression of the cell differentiation regulator HES1. Finally, SLPI prevented the degradation of IkappaBalpha, which may explain the suppression of the cell differentiation inhibitor HES1 suggesting a possible mechanism of oligodendroglial differentiation.ConclusionWe identified novel features of gene expression in the CNS during EAE, in particular the suppression of genes of cholesterol biosynthesis and a strong upregulation of SLPI, a gene which is for the first time associated with autoimmune inflammation. The capacity of SLPI to increase proliferation of adult NSC and of oligodendroglial differentiation suggests a novel role for SLPI in the promotion of tissue repair, beyond its known functions in the prevention of tissue damages by protease inhibition damage and modulation of inflammatory reactions.


Journal of Neuroimmunology | 2007

Inhibition of Smad7, a negative regulator of TGF-beta signaling, suppresses autoimmune encephalomyelitis

Ingo Kleiter; Xiomara Pedré; André M. Mueller; Peter Poeschl; Sebastien Couillard-Despres; Thilo Spruss; Ulrich Bogdahn; Gerhard Giegerich; Andreas Steinbrecher


Archive | 2002

Smad7 inhibitors for the treatment of cns diseases

Andreas Steinbrecher; Gerhard Giegerich; Ingo Kleiter; Markus Horn; Rainer Appel; Roland Kreutzer; Stefan Limmer; Hans-Peter Vornlocher


American Journal of Neuroradiology | 2005

Experimental Autoimmune Encephalomyelitis in the Rat Spinal Cord: Lesion Detection with High-Resolution MR Microscopy at 17.6 T

Andreas Steinbrecher; Thomas Weber; Thomas Neuberger; André M. Mueller; Xiomara Pedré; Gerhard Giegerich; Ulrich Bogdahn; Peter M. Jakob; Axel Haase; Cornelius Faber


Archive | 2009

SMAD7 INHIBITOR COMPOSITIONS AND USES THEREOF

Andreas Steinbrecher; Gerhard Giegerich; Ingo Kleiter; Markus Horn; Rainer Apfel; Roland Kreutzer; Stefan Limmer; Hans-Peter Vornlocher


Archive | 2002

Inhibidores de Smad7 para el tratamiento de enfermedades del SNC

Rainer Apfel; Gerhard Giegerich; Markus Horn; Ingo Kleiter; Roland Kreutzer; Stefan Limmer; Andreas Steinbrecher; Hans-Peter Vornlocher


Archive | 2002

Smad7-inhibitoren zur behandlung von krankheiten des zns

Andreas Steinbrecher; Gerhard Giegerich; Ingo Kleiter; Markus Horn; Rainer Apfel; Roland Kreutzer; Stefan Limmer; Hans-Peter Vornlocher


Archive | 2002

Inhibiteurs smad7 utilises dans le traitement de maladies cns

Andreas Steinbrecher; Gerhard Giegerich; Ingo Kleiter; Markus Horn; Rainer Apfel; Roland Kreutzer; Stefan Limmer; Hans-Peter Vornlocher

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Markus Horn

University of Regensburg

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Rainer Apfel

University of Regensburg

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Xiomara Pedré

University of Regensburg

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