TY - THES A1 - Ramirez Pineda, José Robinson T1 - Dendritic cells activated by CpG motifs are potent inducers of a Th1 immune response that protects mice against leishmaniasis T1 - CpG-aktivierte dendritische-Zellen induzieren eine Th1 immunantwort die Mäuse gegen Leishmaniose schütz N2 - The present investigation report a protocol to obtain dendritic cells (DC) that protects mice against fatal leishmaniasis. DC were generated from bone marrow precursors, pulsed with leishmanial antigen and activated with CpG oligodeoxinucleotides. Mice that were vaccinated with these cells were strongly protected against the clinical and parasitological manifestations of leishmaniasis and developed a Th1 immune response. protection was solid and long-lasting, and was also dependent of the via of administration. Whe the mechanism of protection was studied, it was observed that the availability of the cytokine interleukin-12 at the time of vaccination was a key requirement, but that the source of this cytokine is not the donor cells but unidentified cells from the recipients. N2 - En esta tesis se reporta un prtocolo para obtener celulas dendriticas (CD) que inducen una respuesta protectora contra la leishmaniasis en ratones susceptibles. Las CD se generaron de precursores de medula osea, se pulsaron con antigeno de Leishmania y se activaron con oligonucleotidos que contienen motivos CpG. Cuando los ratones se vacunan con estas celulas se observa una fuerte proteccion clinica y parasitologica contra la leishmaniasis. Los ratones se protegen debido a que desarrollan una respuesta inmune de tipo Th1, en contraste con la respuesta Th2 desarrollada por los ratones control. La proteccion fue solida y duradera y fue dependiente de la via de administracion de las CD. Cuando se estudio el mecanismo de proteccion, se encontro que se requiere la presencia de la citokina interleukina 12 en el momento de la vacunacion, y que la fuente de esta citokina no son las celulas donadoras, sino celulas de los ratones recipientes. KW - Leishmaniose KW - Dendritische Zelle KW - Immunreaktion KW - Dendrtitischer Zellen KW - Th1 immunantwort KW - leishmaniose KW - CpG KW - Dendritic cells KW - Th1 response KW - leishmaniasis KW - CpG Y1 - 2003 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-8410 ER - TY - JOUR A1 - Masic, Anita A1 - Valencia Hernandez, Ana Maria A1 - Hazra, Sudipta A1 - Glaser, Jan A1 - Holzgrabe, Ulrike A1 - Hazra, Banasri A1 - Schurigt, Uta T1 - Cinnamic Acid Bornyl Ester Derivatives from Valeriana wallichii Exhibit Antileishmanial In Vivo Activity in Leishmania major-Infected BALB/c Mice JF - PLoS One N2 - Human leishmaniasis covers a broad spectrum of clinical manifestations ranging from self-healing cutaneous leishmaniasis to severe and lethal visceral leishmaniasis caused among other species by Leishmania major or Leishmania donovani, respectively. Some drug candidates are in clinical trials to substitute current therapies, which are facing emerging drug-resistance accompanied with serious side effects. Here, two cinnamic acid bornyl ester derivatives (1 and 2) were assessed for their antileishmanial activity. Good selectivity and antileishmanial activity of bornyl 3-phenylpropanoate (2) in vitro prompted the antileishmanial assessment in vivo. For this purpose, BALB/c mice were infected with Leishmania major promastigotes and treated with three doses of 50 mg/kg/day of compound 2. The treatment prevented the characteristic swelling at the site of infection and correlated with reduced parasite burden. Transmitted light microscopy and transmission electron microscopy of Leishmania major promastigotes revealed that compounds 1 and 2 induce mitochondrial swelling. Subsequent studies on Leishmania major promastigotes showed the loss of mitochondrial transmembrane potential (ΔΨm) as a putative mode of action. As the cinnamic acid bornyl ester derivatives 1 and 2 had exhibited antileishmanial activity in vitro, and compound 2 in Leishmania major-infected BALB/c mice in vivo, they can be regarded as possible lead structures for the development of new antileishmanial therapeutic approaches. KW - leishmania major KW - promastigotes KW - apoptosis KW - mitochondria KW - parasitic diseases KW - leishmania KW - leishmaniasis KW - mouse models Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-125354 VL - 10 IS - 11 ER - TY - JOUR A1 - Koch, Oliver A1 - Cappel, Daniel A1 - Nocker, Monika A1 - Jäger, Timo A1 - Flohé, Leopold A1 - Sotriffer, Christoph A. A1 - Selzer, Paul M. T1 - Molecular Dynamics Reveal Binding Mode of Glutathionylspermidine by Trypanothione Synthetase JF - PLoS ONE N2 - The trypanothione synthetase (TryS) catalyses the two-step biosynthesis of trypanothione from spermidine and glutathione and is an attractive new drug target for the development of trypanocidal and antileishmanial drugs, especially since the structural information of TryS from Leishmania major has become available. Unfortunately, the TryS structure was solved without any of the substrates and lacks loop regions that are mechanistically important. This contribution describes docking and molecular dynamics simulations that led to further insights into trypanothione biosynthesis and, in particular, explains the binding modes of substrates for the second catalytic step. The structural model essentially confirm previously proposed binding sites for glutathione, ATP and two \(Mg^{2+}\) ions, which appear identical for both catalytic steps. The analysis of an unsolved loop region near the proposed spermidine binding site revealed a new pocket that was demonstrated to bind glutathionylspermidine in an inverted orientation. For the second step of trypanothione synthesis glutathionylspermidine is bound in a way that preferentially allows \(N^1\)-glutathionylation of \(N^8\)-glutathionylspermidine, classifying \(N^8\)-glutathionylspermidine as the favoured substrate. By inhibitor docking, the binding site for \(N^8\)-glutathionylspermidine was characterised as druggable. KW - purification KW - crithidia fasciulata KW - trypanosoma cruzi KW - RESP model KW - biosynthesis KW - chemotherapy KW - metabolism KW - brucei KW - system KW - leishmaniasis Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-131070 VL - 8 IS - 2 ER - TY - THES A1 - Gonzalez-Leal, Iris Janet T1 - Roles of cathepsins B and L in the Th1/Th2 polarization by dendritic cells T1 - Die Rolle von Kathepsinen B und L während der Th1/Th2 Polarisierung durch Dendritische Zellen N2 - Leishmaniasis is a neglected tropical disease that can be manifested through different clinical forms, ranging from cutaneous to visceral. The host response against Leishmania spp. is greatly dependent on T cell-mediated immunity, in which T helper 1 responses are associated with macrophage activation and elimination of the parasite, while regulatory T cells and T helper 2 responses are correlated with parasite survival and persistence of infection. Leishmania uses different virulence factors as strategies for evading the immune response of the host. One of them are cathepsin-like cysteine proteases, which are currently under extensive investigation as targets for drug development. Previous studies with inhibitors of cathepsins B and L in vivo revealed an outstanding modulation of the host T helper cell response. However, the mechanisms behind these observations were not further investigated. Given the urgent need for better treatments against leishmaniasis, the aim of this study was to investigate the effects that the lack of cathepsin B and L activity have on the signals that dendritic cells use to instruct T helper cell polarization in response to infection with Leishmania major. The cathepsin inhibitors tested showed low or no cytotoxicity in bone marrow-derived dendritic cells, and dendritic cells and macrophages could be generated from cathepsin B and cathepsin L-deficient mice without apparent alterations in their phenotype in comparison to wild-type controls. Furthermore, lack of cathepsin B and L activity showed no impact in the rate of promastigote processing by dendritic cells. Cathepsin B and cathepsin L-deficient macrophages showed no differences in parasite proliferation and capacity to produce nitric oxide in comparison to wild-type macrophages. In response to the parasite, dendritic cells treated with a cathepsin B inhibitor and dendritic cells from cathepsin B-deficient mice showed higher levels of expression of major histocompatibility complex (MHC) class II molecules than dimethyl sulfoxide (DMSO) or wild-type controls, but it was not accompanied by changes in the expression of costimulatory molecules. Wild-type dendritic cells and macrophages are not able to express the pro-inflammatory cytokine interleukin (IL)-12 in response to promastigotes. However, cells treated with a cathepsin B inhibitor or cells deficient for cathepsin B were able to express IL-12, whilethe expression of other cytokines -including IL-6 and tumor necrosis factor (TNF)-alpha-remained unchanged. These characteristics point towards a more “pro-Th1” profile of dendritic cells in the absence of cathepsin B. This data is the first report on IL-12 regulation depending on cathepsin B. The IL-12 up-regulation observed was already present at the transcriptional level. Furthermore, it was also present in macrophages and dendritic cells in response to LPS, and the latter had a higher capacity to induce T cell helper 1 polarization in vitro than wild-type dendritic cells. The activation of different signaling pathways was analyzed, but the up-regulation of IL-12 could not be attributed to modulation of nuclear factor-kappaB (NFkappaB), p38 mitogen activated protein kinase (MAPK) and extra-cellular signal-regulated kinase (ERK)1/2 pathways. Thus, the mechanism behind IL-12 regulation by cathepsin B remains to be elucidated, and the impact of these effects is yet to be confirmed in vivo. Altogether it is tempting to speculate that cathepsin B, in addition to its role in processing endocytosed material, is involved in the modulation of the pro-inflammatory cytokine IL-12. N2 - Leishmaniose ist eine hauptsächlich in den Tropen vorkommende Infektionskrankheit, die sich in verschiedenen klinischen Formen, von kutan bis viszeral, manifestieren kann. Die Reaktion des Wirtes gegen Leishmania spp. hängt stark von der T-Zell-vermittelten Immunantwort ab, wobei die Antwort der T1-Helferzellen assoziiert ist mit der Aktivierung von Makrophagen und der Beseitigung des Parasiten, während die regulatorischen T-Zellen und T2-Helferzellen mit dem Überleben der Parasiten und der Fortdauer der Infektion in Verbindung stehen. Leishmania verwendet verschiedene Virulenzfaktoren als Strategie zur Umgehung der Immunantwort des Wirtes. Darunter zählen Cathepsin-ähnliche Cysteinproteasen, die derzeit Gegenstand umfangreicher Untersuchungen sind mit dem Ziel, für die Arzneimittelentwicklung eingesetzt werden zu können. Frühere Studien mit Inhibitoren von Cathepsin B und L in vivo zeigten eine hervorragende Modulation der Wirt-T-Helferzellantwort. Jedoch wurden die Mechanismen, die diesen Beobachtungen zu Grunde liegen, nicht weiter untersucht. Angesichts der dringenden Notwendigkeit einer besseren Behandlung gegen Leishmaniose war das Ziel dieser Studie die Auswirkungen zu untersuchen, die das Fehlen von Cathepsin B und L-Aktivität auf die Signale hat, welche die dendritischen Zellen verwenden, um die Reaktion der T-Helferzellen auf eine Infektion mit Leishmania major zu beeinflussen. Die getesteten Cathepsin-Inhibitoren zeigten geringe oder keine Cytotoxizität in den aus dem Knochenmark präparierten dendritischen Zellen. Dendritische Zellen und Makrophagen von Cathepsin B- und Cathepsin L-defizienten Mäusen zeigten keine offensichtlichen Veränderungen ihres Phänotyps im Vergleich zu Wildtypkontrollen. Weiterhin zeigte das Fehlen von Cathepsin B- und L-Aktivität keine Auswirkung auf die Prozessierung der Promastigoten durch dendritische Zellen. Auch zeigten Cathepsin Bund Cathepsin L-defiziente Makrophagen keine Unterschiede in der Parasitenproliferation und der Fähigkeit Stickoxid zu produzieren im Vergleich zu Wildtyp-Makrophagen. In Reaktion auf den Parasiten war bei mit einem Cathepsin-B-Inhibitor behandelten dendritischen Zellen und dendritischen Zellen von Cathepsin-B-defizienten Mäusen eine höhere Expression von MHC-Klasse-II-Molekülen ersichtlich im Vergleich zu DMSO oder Wildtyp-Kontrollen, aber es wurden keine Veränderungen in der Expression von costimulatorischen Molekülen festgestellt. Dendritische Zellen und Makrophagen von Wildtyp-Mäusen sind nicht in der Lage das pro-inflammatorische Zytokin IL-12 als Reaktion auf die Promastigoten zu exprimieren. Jedoch konnten dendritische Zellen, die mit einem Cathepsin-B-Inhibitor behandelt waren oder Cathepsin-B-defiziente Zellen, IL-12 exprimieren, während die Expression von anderen Zytokinen - einschließlich IL-6 und TNF-alpha- unverändert blieb. Diese Eigenschaften weisen in die Richtung einer "pro-Th1"-Antwort der dendritischen Zellen in Abwesenheit von Cathepsin B. Diese Daten sind der erste Bericht über die IL-12-Regulierung in Abhängigkeit von Cathepsin B. Die Hochregulation von IL-12 war bereits auf der Transkriptionsebene zu beobachten. Weiterhin war sie in Makrophagen und dendritischen Zellen auch als Reaktion auf LPS vorhanden. Dendritische Zellen von Cathepsin B-defizienten Mäusen hatten eine höhere Kapazität zur Induktion einer eine T1-Helferzell-Polarisierung in vitro als dendritische Zellen von Wildtyp-Mäusen. Die Aktivierung von verschiedenen Signalwegen wurde untersucht, jedoch konnte die Hochregulierung von IL-12 nicht auf die Modulation von NF_B, p38 MAPK und ERK1/2-Signalwege zurückgeführt werden. Damit ist der für die IL-12-Regulierung durch Cathepsin B verantwortliche Mechanismus noch nicht geklärt; auch die Auswirkungen dieser Effekte in vivo müssen noch bestätigt werden. Insgesamt lässt die vorliegende Studie vermuten, dass Cathepsin B nicht nur an der Prozessierung von endozytiertem Material sondern auch an der Regulierung des pro-inflammatorischen Zytokins IL-12 beteiligt ist. KW - Leishmaniose KW - Dendritische Zelle KW - leishmaniasis KW - dendritic cells KW - th1/th2 polarization KW - T-Lymphozyt KW - Helferzelle KW - Immunologie KW - Infektionsbiologie Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-114397 ER - TY - JOUR A1 - Glaser, Jan A1 - Schultheis, Martina A1 - Hazra, Sudipta A1 - Hazra, Banazri A1 - Moll, Heidrun A1 - Schurigt, Uta A1 - Holzgrabe, Ulrike T1 - Antileishmanial Lead Structures from Nature: Analysis of Structure-Activity Relationships of a Compound Library Derived from Caffeic Acid Bornyl Ester N2 - Bioassay-guided fractionation of a chloroform extract of Valeriana wallichii (V. wallichii) rhizomes lead to the isolation and identification of caffeic acid bornyl ester (1) as the active component against Leishmania major (L. major) promastigotes (IC50 = 48.8 µM). To investigate the structure-activity relationship (SAR), a library of compounds based on 1 was synthesized and tested in vitro against L. major and L. donovani promastigotes, and L. major amastigotes. Cytotoxicity was determined using a murine J774.1 cell line and bone marrow derived macrophages (BMDM). Some compounds showed antileishmanial activity in the concentration range of pentamidine and miltefosine which are the standard drugs in use. In the L. major amastigote assay compounds 15, 19 and 20 showed good activity with relatively low cytotoxicity against BMDM, resulting in acceptable selectivity indices. Molecules with adjacent phenolic hydroxyl groups exhibited elevated cytotoxicity against murine cell lines J774.1 and BMDM. The Michael system seems not to be essential for antileishmanial activity. Based on the results compound 27 can be regarded as new lead structure for further structure optimization KW - Valeriana wallichii KW - leishmaniasis KW - caffeic acid bornyl ester KW - structure-activity relationship Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-112835 ER -