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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
11

Differential involvement of LUBAC-mediated linear ubiquitination in intestinal epithelial cells and macrophages during intestinal inflammation / LUBACが生成する直鎖状ユビキチン鎖の腸管上皮細胞およびマクロファージにおける細胞特異的な腸炎への寄与機構

Sakamoto, Yusuke 23 May 2023 (has links)
京都大学 / 新制・課程博士 / 博士(医学) / 甲第24796号 / 医博第4988号 / 新制||医||1066(附属図書館) / 京都大学大学院医学研究科医学専攻 / (主査)教授 竹内 理, 教授 上野 英樹, 教授 椛島 健治 / 学位規則第4条第1項該当 / Doctor of Medical Science / Kyoto University / DFAM
12

THE ROLE OF INTESTINAL EPITHELIAL CELLS AND THE REGULATION OF THE POLYMERIC IMMUNOGLOBULIN RECEPTOR IN HOMEOSTASIS AND INFLAMMATION

Frantz, Aubrey Leigh 01 January 2012 (has links)
The mammalian intestine harbors an estimated 100 trillion microorganisms, which normally maintain a mutually beneficial relationship with the host. The intestinal epithelium consists of a single layer of intestinal epithelial cells (IECs) that provides a physical barrier as well as innate immune defense, preventing this vast community of microbes from entering host tissues. Secretory immunoglobulin A (SIgA) acts as the first line of antigen-specific immunity at the interface between the gut microbiota and the intestinal epithelium. Polymeric IgA secreted by plasma cells in the intestinal lamina propria is transported across IECs by the polymeric immunoglobulin receptor (pIgR). Defects in epithelial barrier and immune functions can lead to infections with opportunistic and pathogenic microbes and contribute to the etiology of inflammatory bowel disease (IBD). Here we investigate the ability of IEC biomarkers to define the mechanism and severity of intestinal inflammation, as well as provide insight into the function of IEC in regulating intestinal homeostasis and inflammation. Importantly, down-regulation of pIgR expression was a common feature in human IBD and mouse models of experimental colitis. One molecule of pIgR is consumed for every molecule of SIgA transported, thus high expression of pIgR is required to maintain sufficient supply of SIgA. Accordingly, we investigate the mechanisms by which IECs regulate pIgR expression in response to colonic bacteria. Cross-talk between the microbiota and IECs is mediated by pattern recognition receptors, including Toll-like receptors (TLR), leading to expression of gene products that enhance epithelial barrier function and innate immunity. The cytoplasmic adaptor protein MyD88 transduces signals from TLRs that recognize bacterial products. We show that pIgR induction by colonic bacteria is dependent on TLR4-MyD88 activation of NF-κB signaling. We examined the role of epithelial-specific MyD88 signaling in antibacterial immunity and epithelial expression of key gene products that participate in innate immunity in the gut by generating mice with an IEC-targeted deletion of the Myd88 gene (MyD88ΔIEC). MyD88ΔIEC mice display immunological and antimicrobial defects resulting in increased susceptibility to experimental colitis. We conclude that cross-talk between bacteria and IECs via MyD88-dependent signaling is crucial for maintenance of gut homeostasis.
13

La cellule épithéliale intestinale dans l'induction des réponses immunitaires au cours de l'infection par cryptosporidium parvum : rôle des peptides antimicrobiens et des microARN / Intestinal epithelial cells in immune response inducting during cryptosporidium parvum infection : roles of antimicrobial peptides and miroRNAs

Guesdon, William 15 December 2014 (has links)
Le projet de ma thèse a consisté à étudier chez les nouveau-nés la réponse des cellules épithéliales intestinales (IEC) en microARN (miR) et en peptides antimicrobiens (PAM) dans le contexte de l’infection par Cryptosporidium parvum. Ce protozoaire monoxène se développe uniquement dans les IEC et affecte plus particulièrement les nouveau-nés et les individus immunodéprimés. Nous avons étudié la réponse en miR dans les IEC après infection par C. parvum. La comparaison des réponses obtenues dans les IEC in vitro et in vivo nous a permis de montrer que l’expression du miR-181d-5p est diminuée durant l’infection et que cette diminution d’expression lèverait l’inhibition de l’expression des facteurs anti-apoptotiques OPG et BCL2, favorisant la survie du parasite dans les IEC. Nous avons également caractérisé l’impact de C. parvum sur l’expression des PAM chez le nouveau-né et leur rôle durant l’infection. Nous avons mis en évidence que l’infection entraine une forte modification de l’expression des PAM. Notre attention a été retenue par la diminution, surprenante, de l’expression de la chimiokine antimicrobienne CCL20 et de la cathélicidine CRAMP au cours de l’infection. Pour ces deux peptides, nous avons montré qu’une administration aux souriceaux réduisait significativement la charge parasitaire. Nous avons pu montrer que la protection induite par ces deux molécules antimicrobiennes résultait de leur activité parasiticide sur C. parvum. Ainsi, leur diminution d’expression semble être favorable au développement du parasite et nous avons suggéré qu’elle puisse être induite par le parasite pour échapper à cette activité parasiticide avec notamment la modulation de certains miR. / The aim of my thesis was to study in the mouse model, the intestinal epithelial cell (IEC) response during neonatal Cryptosporidium parvum infection with a focus on microRNAs (miR) and antimicrobial peptides (AMP) response. C. parvum is a protozoan parasite that affects preferentially newborn, young or immunocompromised adult and completes its life cycle only in IECs. In a first part, we studied the expression of miRs in IEC during C. parvum infection. We compared the responses between in vitro infected IEC and IECs purified from infected neonatal mice and observed a decrease of miR-181d-5p expression. This reduced expression of miR-181d-5p was associated with an upregulation of the mRNA coding for two putative targets OPG and BCL2 which are anti-apoptotic agents that may favor parasite survival in IEC. This functional relation between miR-181d-5p and OPG was next demonstrated by using reporter dual-luciferase assay. In a second part of my thesis, we characterized the AMP expression profile and studied their role during C. parvum infection in neonates. We showed that infection up-regulates a broad expression of AMP except for CCL20 and CRAMP cathelicidin for which mRNA expression was decreased. We next choose to focus our work on these two molecules and reported that administration of CCL20 and CRAMP to infected neonatal mice significantly reduced the number of parasites in the intestine through a direct killing activity on free stages of the parasite. As the decreased expression of these two AMPs during infection seems to favor the development of the parasite, this could be an escape mechanism developed by C. parvum that may occur through the modulation of miR.
14

Communication Between Immune and Non-Immune Cells in Intestinal Health and Disease

Cruz, Michelle 26 May 2023 (has links)
No description available.
15

A microfluidics-based in vitro model of the gastrointestinal human–microbe interface

Shah, Pranjul, Fritz, Joëlle V., Glaab, Enrico, Desai, Mahesh S., Greenhalgh, Kacy, Frachet, Audrey, Niegowska, Magdalena, Estes, Matthew, Jäger, Christian, Seguin-Devaux, Carole, Zenhausern, Frederic, Wilmes, Paul 11 May 2016 (has links)
Changes in the human gastrointestinal microbiome are associated with several diseases. To infer causality, experiments in representative models are essential, but widely used animal models exhibit limitations. Here we present a modular, microfluidics-based model (HuMiX, human-microbial crosstalk), which allows co-culture of human and microbial cells under conditions representative of the gastrointestinal human-microbe interface. We demonstrate the ability of HuMiX to recapitulate in vivo transcriptional, metabolic and immunological responses in human intestinal epithelial cells following their co-culture with the commensal Lactobacillus rhamnosus GG (LGG) grown under anaerobic conditions. In addition, we show that the co-culture of human epithelial cells with the obligate anaerobe Bacteroides caccae and LGG results in a transcriptional response, which is distinct from that of a co-culture solely comprising LGG. HuMiX facilitates investigations of host-microbe molecular interactions and provides insights into a range of fundamental research questions linking the gastrointestinal microbiome to human health and disease.
16

Caractérisation des propriétés anti-inflammatoires de souches commensales de Streptococcus salivarius / Characterization of the anti-inflammatory properties of commensal strains of Streptococcus

Kaci, Ghalia 22 June 2012 (has links)
Les bactéries commensales digestives jouent un rôle primordial dans l’homéostasie épithéliale et la santé de l’hôte, avec notamment un rôle modulateur du système immunitaire. Des effets bénéfiques dans le traitement des pathologies inflammatoires intestinales ont été caractérisés chez certaines souches de bactéries commensales. La compréhension de ces effets dans le maintien de l’homéostasie intestinale repose sur la connaissance des interactions entre les bactéries, l’épithélium intestinal et le système immunitaire muqueux. Streptococcus salivarius est l’un des premiers colonisateurs de la cavité buccale et du tractus digestif de l’homme. Cette bactérie a été utilisée comme modèle pour rechercher des mécanismes impliquée dans l’homéostasie.La recherche d’interactions entre des souches de l’espèce S. salivarius et les cellules humaines a été réalisée pour caractériser leurs éventuelles propriétés immunomodulatrices. Nous avons montré que les bactéries vivantes et les surnageants de cultures des souches de cette espèce modulent la réponse inflammatoire in vitro via un effet inhibiteur sur l’activation de la voie NF-B dans les cellules épithéliales intestinales (HT-29 et Caco-2) et les monocytes (THP-1). Cette modulation de l’inflammation a été confirmée par la capacité des surnageants bactériens à inhiber la sécrétion d’IL-8 par les cellules épithéliales. Ces surnageants agissent via une étape impliquant IB-, un inhibiteur du facteur NF-B. Ils inhibent la dégradation de la protéine IB- phosphorylée et diminuent ainsi la translocation nucléaire des composants NF-B. Nous avons également identifié et caractérisé un métabolite bactérien présent dans ces surnageants exerçant cette activité anti-inflammatoire. L’utilisation de ce métabolite et son isomère miment in vitro l’effet inhibiteur des surnageants sur l’activation de la voie NF-B dans les cellules épithéliales et les monocytes. Nous avons ainsi caractérisé un métabolite secrété par la bactérie commensale S. salivarius qui est capable d’inhiber une des voies centrales de signalisation impliquée dans la réponse inflammatoire intestinale. Enfin, une capacité anti-inflammatoire de S. salivarius a également été montrée dans un modèle murin d’inflammation digestive dans lequel les bactéries métaboliquement actives ont protégé les animaux de colites induites avec du TNBS. Ces travaux ouvrent la voie pour le développement d’applications thérapeutiques dans le traitement de pathologies inflammatoires de l’intestin basées sur ce composé actif ou l’utilisation de S. salivarius comme probiotique. / Commensal bacteria play a vital role in epithelial homeostasis and host health, including a modulatory role of the immune system. Their beneficial effects in the treatment of inflammatory bowel disease have been characterized in some strains of commensal bacteria. Understanding these effects in maintaining intestinal homeostasis is based on the knowledge of interactions among bacteria, the intestinal epithelium and the mucosal immune system. Streptococcus salivarius is one of the first colonizers of human oral cavity and digestive tract. This bacterium was used as a template to investigate mechanisms involved in homeostasis.The research for interactions between strains of S. salivarius species and human cells was performed to characterize their possible immunomodulatory properties. We have shown that living bacteria and culture supernatants of strains of this species modulate the inflammatory response in vitro via an inhibitory effect on the activation of NF-B in intestinal epithelial cells (HT-29 and Caco-2) and monocytes (THP-1). This modulation of inflammation was confirmed by the ability of bacterial supernatants to suppress the secretion of IL-8 by epithelial cells. These supernatants act via a step involving IκB-α, an inhibitor of NF-B. They inhibit the degradation of IκB-α phosphorylated protein and thus decrease the nuclear translocation of NF-B components. We also identified and characterized a bacterial metabolite present in these supernatants exercising this anti-inflammatory activity. Use of this metabolite and its isomer in vitro mimic the repressive effect of supernatants on activation of NF-B in epithelial cells and monocytes. We have characterized a metabolite secreted by commensal bacterium S. salivarius that is capable of inhibiting one of the central signaling pathways involved in the intestinal inflammatory response. Finally, an anti-inflammatory capacity of S. salivarius was also shown in a mouse model of gastrointestinal inflammation in which the metabolically active bacteria protected the animals from colitis induced with TNBS.This work paves way for the development of therapeutic applications in the treatment of inflammatory bowel disease based on the active compound or the use of S. salivarius as a probiotic.
17

Régulation des réponses immunitaire allergiques par la kinase IKKb des cellules épitheliales intestinales : Effect sur les reactions allergique inflammatoires au niveau des muqueuses pulmonaires et de la peau / Regulation of allergic immune responses by IKKb in intestinal epithelial cells : Effect on allergic inflammation at distant mucosal sites

Bonnegarde-Bernard, Astrid 05 December 2013 (has links)
La régulation de l'homéostasie intestinale est de la plus haute importance en raison de la constante exposition de l'intestin aux antigènes alimentaires et à la flore commensale. La perturbation de la flore intestinale est souvent associée à diverses maladies telles que l'allergie, l'obésité et certaines maladies inflammatoires. La plupart des individus sont tolérant aux antigènes alimentaires et ne développe pas de réponse immunitaire sauf en cas de prédisposition génétique ou d'exposition à un environnement défavorable. La réponse allergique se caractérise par la production d'IgE stimulé par les lymphocytes Th2. Les symptômes allergiques sont très variés et affectent plusieurs parties de l'organisme. La plupart des travaux de recherche se sont focalisé jusqu'à présent sur le rôle des cellules de l'immunité adaptative dans le développement de l'allergie en sous-estimant le rôle majeur des cellules épithéliales et des cellules de l'immunité innée. L'objectif de ce projet est de comprendre comment les cellules épithéliales intestinales modulent la réponse immunitaire à distance vers la muqueuse pulmonaire ou la peau après stimulation allergique. L'ingestion de l'antigène associé à l'adjuvant de la toxine cholérique permet d'étudier la réponse allergique chez l'animal. Nous avons démontré sur ce modèle animal que l'absence de la kinase inhibitrice IKKb dans la voie de signalisation du facteur de transcription NF-kB altère la composition de la flore intestinal d'une part et transforme la réponse immunitaire inflammatoire au niveau pulmonaire et de la peau grâce à la présence d'IgA et de lymphocyte Th17 d'autre part. En adéquation avec les observations cliniques rapportées chez les patients allergiques (allergies alimentaires, asthme, dermatite atopique), nos résultats identifient IKKb dans la cellule épithéliale intestinale comme cible potentielle pour traiter les allergies alimentaires. De futurs efforts devront être faits pour développer de nouvelles stratégies thérapeutiques qui considèrent la muqueuse intestinale, la production d'IgA et l'importance des bactéries commensales dans le traitement des allergies. / Immune homeostasis is of paramount importance in the gastrointestinal tract, which is constantly exposed to ingested antigens and commensal microbiota. The gut microbiota can be perturbed by endogenous or exogenous factors and it is now established that microbial dysbiosis is associated with allergy, obesity, and inflammatory diseases. Ingestion of food antigens generally fails to promote brisk immune responses but rather results in a state of immune tolerance. However, aberrant immune responses can develop in individuals with a genetic predisposition. Food allergies are generally regarded as pathologic responses to food antigens mediated by excessive Th2 responses and antigen-specific IgE antibody responses. Clinical manifestations of food allergies are very broad and symptoms can affect different organs. While past research on allergy focused on the role of cells and molecules involved in adaptive immunity, epithelial cells lining the sites of antigen entry and innate immune responses have recently emerged as important players in allergy. This project was undertaken to understand the mechanisms employed by intestinal epithelial cells (IECs) to shape immune responses to allergens and influence allergic manifestations in distant mucosal sites such as the airways or the skin. Oral administration of food antigen with cholera toxin as adjuvant in experimental animals is a well-accepted model to study allergic sensitization to food antigens. Using this model, we show that a localized impairment of the canonical NF-κB pathway through deletion of IkB kinase (IKKβ) in IECs alters the gut microbiota during oral allergic sensitization and regulates the magnitude of allergic inflammatory responses at distant sites of the airway and the skin through enhancement of IgA Abs and Th17 responses. Consistent with the clinical observations linking atopic diseases (food allergy, allergic asthma, atopic dermatitis), our results identify IKKβ in IECs as a potential therapeutic target for treatment of food allergies and subsequent disease. They also suggest that future efforts for controlling allergic responses in the airways and the skin could include strategies that use the gut microbiota and promote IgA Ab responses and prevent IL-17 responses.
18

Caracterização molecular dos genes ospC1, ospG e ospF em diferentes sorotipos de Escherichia coli enteroinvasora / Molecular characterization of the ospC1, ospG and ospF genes in serotypes different of the enteroinvasive Escherichia coli

Silva, Renée de Nazaré Oliveira da 29 November 2012 (has links)
Escherichia coli enteroinvasora (EIEC) é um dos agentes etiológicos da disenteria bacilar, caracteriza-se pela destruição do epitélio do cólon provocado pela resposta inflamatória induzida após invasão da mucosa por bactérias. Cepas de EIEC são bioquímica, genética e patogênica semelhante a Shigella spp. A patogenicidade de EIEC e Shigella dependem da presença da pInv plasmídeo, que contém os genes necessários para a colonização bacteriana na mucosa intestinal. Recentemente, demonstrou-se que genes plasmidias ospC1, ospG e ospF de S. flexneri estão envolvidos na inibição da resposta inflamatória em células epiteliais intestinais, um fator importante na iniciação da colonização bacteriana e produção de doença. Como a EIEC mostrou doença menos grave, foi analisada as sequências de aminoácido, avaliada a transcrição destes genes plasmídiais e resposta inflamatória modulada por este micro-organismo na célula epitelial intestinal Caco-2. As células Caco-2 foram infectadas em momentos diferentes com 11 sorotipos de EIEC e S. flexneri (M90T). Os dados sobre a capacidade de invasão e sobrevivência de bactérias, expressão de genes de bactérias e da quimiocina IL-8 foram obtidos por CFU, RT-PCR, e ELISA, respectivamente. A significância estatística foi avaliada por ANOVA de dois fatores. Os 11 sorotipos de EIEC estudados apresentaram similaridade de 100% com S.flexneri para OspC1 e OspF,contudo, foram diferentes na homologia do OspG. Quando comparamos as sequências de aminoácido dos 11 sorotipos observamos 100% de similaridade entre eles para OspG, sugerindo o envolvimento destas proteínas na modulação da resposta imune induzida por estes micro-organismos. Os sorotipos de EIEC apresentam diferenças na capacidade de invasão dos enterócitos. Algumas diferenças significativas foram observadas na transcrição dos genes e na produção de IL-8. Os sorotipos de EIEC O29: H-e O167: H-apresentou um baixo transcrição de genes ospC1 e ospF, e um aumento significativo na produção de IL-8 quando comparado com outros sorotipos. Além disso, demonstrou que a maior transcrição destes genes por alguns sorotipos de EIEC parecem estar relacionados com a menor indução de IL-8. Estes dados sugerem que as proteínas OspC1 e OspF desempenham um papel na resposta inflamatória. No entanto, não se observou relação na transcrição ospG para a produção de IL-8. Estes resultados sugerem que as proteinas efetoras OspC1 e OspF estão envolvidas na inibição da resposta inflamatória em células epiteliais do intestino favorecendo a invasão da EIEC. / Enteroinvasive E. coli (EIEC) is one of the etiological agents of bacillary dysentery, it is characterized by the destruction of the colonic epithelium caused by the inflammatory response induced upon invasion of the mucosa by bacteria. Strains of EIEC are biochemical, genetic and pathogenic similar to Shigella spp. The pathogenecity of EIEC and Shigella depend on the presence of the plasmid pInv, which contains the genes necessary for bacterial colonization in the intestinal mucosa. Recently, it was demonstrated that the plasmid genes ospC1, ospG and ospF of S. flexneri are involved in inhibition of the inflammatory response in intestinal epithelial cells, an important factor in the initiation of bacterial colonization and production of disease. As EIEC has showed less severe disease, we evaluated the transcription of these plasmid genes and inflammatory response modulated by this microorganism in the intestinal epithelial cell Caco-2. The Caco-2 cells were infected in different times with 11 serotypes of EIEC and S. flexneri M90T strain. The data about sequences of amino acids, invasiveness and survival of bacteria, bacterial genes expression, and chemokine IL-8 were obtained by CFU, RT-PCR, and ELISA, respectively. The statistical significance was evaluated by two-way ANOVA. All EIEC serotypes studied showed 100% similarity with S.flexneri to OspC1 and OSPF, however, were different in the homology of OspG. Compared the amino acid sequences of the 11 serotypes observed 100% similarity between them to OspG, suggesting the involvement of them in modulating of the immune response induced by these microorganisms. There were no differences in the invasion the enterocytes among EIEC serotypes. However, some significant differences were observed in the transcription of those genes and production of IL-8. The EIEC serotypes O29:H- and O167:H- showed a low transcription of genes ospC1 and ospF, and a significant increase in production of IL-8 when compared with other serotypes. Furthermore, it was shown that the high transcription of ospF and ospC1 by some EIEC serotypes are related to low induction of IL-8. These data suggested that the proteins OspC1 and OspF play a role in the inflammatory response. However, we did not observed association between ospG transcription to the production of IL-8. These results lead us to believe that the effector proteins OspF and OspC1 are involved in inhibition of the inflammatory response in intestinal epithelial cells favoring the EIEC invasion.
19

Untersuchungen zur chemischen Transformation von intestinalen Epithelzellen der Ratte und des Menschen durch 2-Hydroxyamino-1-methyl-6-phenylimidazo(4,5-b)pyridin / Investigations to chemical transformation of rat and human intestinal epithelial cells by 2-hydroxyamino-1-methyl-6-phenylimidazo(4,5-b)pyridine

Fuchs, Iris Judith January 2006 (has links)
Die Zahl der Kolonkarzinome in den westlichen Industrieländern steigt in den letzten Jahren stetig an. Zu den Verbindungen, die mit der Zubereitung der Nahrung entstehen, mit ihr aufgenommen werden und die Kolonkanzerogenese möglicherweise begünstigen, gehört das heterozyklische aromatische PhIP, das bei der Erhitzung proteinreicher Nahrungsmittel entsteht. Neben zahlreichen Fütterungsversuchen an Nagern existieren auch Zellkulturmodelle zur Untersuchung der molekularen Mechanismen der PhIP-induzierten Kolonkanzerogenese. Die chemische Transformation von Zellen sollte durch wiederholte Exposition gegenüber dem hydroxylierten Metaboliten des Kanzerogens (N2-OH-PhIP) erzielt werden. Es wurden IEC-18-Zellen der Ratte und HCEC-Zellen des Menschen zur Untersuchung verwendet. Die Behandlung der IEC-18-Zellen führt nach 25 Behandlungszyklen mit Konzentrationen von 5 bis 20 µM nicht zur Transformation der Zellen. Die Anwesenheit von N2-OH-PhIP führt zu einer zehnfach erhöhten Induktion der GST-Aktivität, insbesondere der Untereinheiten GST-A1, -A3, -Pi und -T2, die für die effiziente Detoxifizierung des N-Acetoxy-Metaboliten vom N2-OH-PhIP verantwortlich sind. Bereits nach drei Behandlungen mit 1,5 µM N2-OH-PhIP konnte eine maligne Transformation der HCEC-Zellen erzielt werden. Die Zellen zeigten die charakteristischen Zeichen der Transformation: veränderte Wachstumseigenschaften wie klonales dreidimensionales Zellwachstum („pilling up“), Hemmung der Zell-Zell-Kontaktinhibierung, verkürzte Populationsverdopplungszeiten und tumorigene und metastasierende Eigenschaften. Außerdem exprimierten die N2-OH-PhIP-exponierten humanen Kolonzellen mit steigender Anzahl der Behandlungen größere Mengen des trunkierten APC-Proteins. Die bekannten PhIP-spezifischen Mutationen im APC-Gen resultieren in der Expression eines trunkierten Proteinproduktes und werden als frühe Ereignisse in der Kolonkanzerogenese betrachtet. Die zusammenfassende Betrachtung aller Ergebnisse zeigt, dass die IEC-18-Zelllinie zur chemischen Transformation durch N2-OH-PhIP ungeeignet ist. Dagegen wurde erstmalig eine vollständige chemische Transformation von Humandickdarmepithelzellen in vitro durch Exposition der humanen Kolonepithelzelllinie HCEC gegenüber dem Kolonkarzinogen N2-OH-PhIP erzielt. / In the last few years a strong increase in the incidence of colorectal cancer has been observed. As to the specific components in processed food responsible for the induction of colon cancerogenesis / it has been suggested that heterocyclic aromatic amines (HAA), e.g. the most abundant HAA 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP), which is formed in protein rich food, when it is cooked at high temperatures or over an open flame, might be involved in this process. Whereas a number of in vivo-models to study PhIP-mediated colon carcinogenesis are known, only a limited number of cell culture systems to study the HAA-mediated transformation of intestinal epithelial cells do in fact exist. In the present study IEC-18 cells (rat intestinal epithelial cells) and HCEC cells (human colon epithelial cells) were incubated with N2-OH-PhIP, the N-hydroxylated metabolite of PhIP. The IEC-18 cells could not be transformed despite 25 treatment cycles with 5 to 20 µM N2-OH-PhIP. This might be due to the fact that GST activity as well as the expression of the GST -A1, -A3, -Pi and -T2 units, which are responsible for the detoxication of the N-acetoxy derivative of PhIP were strongly induced by N2-OH-PhIP. In contrast, HCEC cells were malignantly transformed when exposed three times to 1.5 µM N2-OH-PhIP. The chemically-treated cells showed a reduced population doubling time, they lost cell-cell contact inhibition and started pilling up. Furthermore, if HCEC cells were injected subcutaneously into SCID mice tumors developed at the site of injection in all animals tested. The transformed HCEC cells also express high amounts of truncated APC protein, which in vivo appears at an early stage of colon cancerogenesis. Taken together, it has been shown that IEC-18 cells are not suitable for chemical transformation studies with the HAA metabolite N2-OH-PhIP. For the first time it has been shown that the HAA metabolite N2-OH-PhIP is indeed able to malignantly transform human colon epithelial cells in vitro.
20

Caracterização molecular dos genes ospC1, ospG e ospF em diferentes sorotipos de Escherichia coli enteroinvasora / Molecular characterization of the ospC1, ospG and ospF genes in serotypes different of the enteroinvasive Escherichia coli

Renée de Nazaré Oliveira da Silva 29 November 2012 (has links)
Escherichia coli enteroinvasora (EIEC) é um dos agentes etiológicos da disenteria bacilar, caracteriza-se pela destruição do epitélio do cólon provocado pela resposta inflamatória induzida após invasão da mucosa por bactérias. Cepas de EIEC são bioquímica, genética e patogênica semelhante a Shigella spp. A patogenicidade de EIEC e Shigella dependem da presença da pInv plasmídeo, que contém os genes necessários para a colonização bacteriana na mucosa intestinal. Recentemente, demonstrou-se que genes plasmidias ospC1, ospG e ospF de S. flexneri estão envolvidos na inibição da resposta inflamatória em células epiteliais intestinais, um fator importante na iniciação da colonização bacteriana e produção de doença. Como a EIEC mostrou doença menos grave, foi analisada as sequências de aminoácido, avaliada a transcrição destes genes plasmídiais e resposta inflamatória modulada por este micro-organismo na célula epitelial intestinal Caco-2. As células Caco-2 foram infectadas em momentos diferentes com 11 sorotipos de EIEC e S. flexneri (M90T). Os dados sobre a capacidade de invasão e sobrevivência de bactérias, expressão de genes de bactérias e da quimiocina IL-8 foram obtidos por CFU, RT-PCR, e ELISA, respectivamente. A significância estatística foi avaliada por ANOVA de dois fatores. Os 11 sorotipos de EIEC estudados apresentaram similaridade de 100% com S.flexneri para OspC1 e OspF,contudo, foram diferentes na homologia do OspG. Quando comparamos as sequências de aminoácido dos 11 sorotipos observamos 100% de similaridade entre eles para OspG, sugerindo o envolvimento destas proteínas na modulação da resposta imune induzida por estes micro-organismos. Os sorotipos de EIEC apresentam diferenças na capacidade de invasão dos enterócitos. Algumas diferenças significativas foram observadas na transcrição dos genes e na produção de IL-8. Os sorotipos de EIEC O29: H-e O167: H-apresentou um baixo transcrição de genes ospC1 e ospF, e um aumento significativo na produção de IL-8 quando comparado com outros sorotipos. Além disso, demonstrou que a maior transcrição destes genes por alguns sorotipos de EIEC parecem estar relacionados com a menor indução de IL-8. Estes dados sugerem que as proteínas OspC1 e OspF desempenham um papel na resposta inflamatória. No entanto, não se observou relação na transcrição ospG para a produção de IL-8. Estes resultados sugerem que as proteinas efetoras OspC1 e OspF estão envolvidas na inibição da resposta inflamatória em células epiteliais do intestino favorecendo a invasão da EIEC. / Enteroinvasive E. coli (EIEC) is one of the etiological agents of bacillary dysentery, it is characterized by the destruction of the colonic epithelium caused by the inflammatory response induced upon invasion of the mucosa by bacteria. Strains of EIEC are biochemical, genetic and pathogenic similar to Shigella spp. The pathogenecity of EIEC and Shigella depend on the presence of the plasmid pInv, which contains the genes necessary for bacterial colonization in the intestinal mucosa. Recently, it was demonstrated that the plasmid genes ospC1, ospG and ospF of S. flexneri are involved in inhibition of the inflammatory response in intestinal epithelial cells, an important factor in the initiation of bacterial colonization and production of disease. As EIEC has showed less severe disease, we evaluated the transcription of these plasmid genes and inflammatory response modulated by this microorganism in the intestinal epithelial cell Caco-2. The Caco-2 cells were infected in different times with 11 serotypes of EIEC and S. flexneri M90T strain. The data about sequences of amino acids, invasiveness and survival of bacteria, bacterial genes expression, and chemokine IL-8 were obtained by CFU, RT-PCR, and ELISA, respectively. The statistical significance was evaluated by two-way ANOVA. All EIEC serotypes studied showed 100% similarity with S.flexneri to OspC1 and OSPF, however, were different in the homology of OspG. Compared the amino acid sequences of the 11 serotypes observed 100% similarity between them to OspG, suggesting the involvement of them in modulating of the immune response induced by these microorganisms. There were no differences in the invasion the enterocytes among EIEC serotypes. However, some significant differences were observed in the transcription of those genes and production of IL-8. The EIEC serotypes O29:H- and O167:H- showed a low transcription of genes ospC1 and ospF, and a significant increase in production of IL-8 when compared with other serotypes. Furthermore, it was shown that the high transcription of ospF and ospC1 by some EIEC serotypes are related to low induction of IL-8. These data suggested that the proteins OspC1 and OspF play a role in the inflammatory response. However, we did not observed association between ospG transcription to the production of IL-8. These results lead us to believe that the effector proteins OspF and OspC1 are involved in inhibition of the inflammatory response in intestinal epithelial cells favoring the EIEC invasion.

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