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Entwicklung elektrochemischer Biosensoren für die TumordiagnostikSteude, Anja 11 January 2013 (has links)
Die vorliegende Arbeit befasst sich mit der Entwicklung und Anwendung elektrochemischer Biosensoren zur Erweiterung oder zum Ersatz herkömmlicher Diagnostikverfahren. Als Basis für die Biosensoren wurden Elektrodenarraychips entworfen und im Reinraum gefertigt. Die als 9WPtE bezeichneten Elektrodenarrays waren aus 3 x 3 Elektrodenpaaren im 96-well-Maßstab (ANSI-Standard) aufgebaut. Jedes Elektrodenpaar bestand aus einer kreisrunden Arbeitselektrode mit einem Durchmesser von 1,9 mm und einer Gegenelektrode als offenem Kreisring um die Arbeitselektrode mit einem Durchmesser von 7 mm. Außerhalb des Reinraums wurden separate Messkammern und Ag/AgCl-Referenzelektroden integriert. Sowohl das Referenzsystem als auch die Signalqualität der 9WPtE-Elektrodenarraychips wurden mittels Zyklovoltammetrie, Impedanzspektroskopie und Rasterkraftmikroskopie analysiert und anhand dieser Untersuchungen optimiert. Das Augenmerk lag hierbei auf den Produktionsprozessen zur Herstellung der Elektrodenarraychips, auf den Elektrolytbedingungen für die elektrochemischen Messungen und auf der Recyclebarkeit der Chips. Die Funktionalisierung der Arbeitselektroden der 9WPtE-Chips erfolgte mit sich selbst-organisierenden Schichten aus Thiolen. An die Thiole wurden mittels Chemoligation die biologischen Erkennungskomponenten kovalent gekoppelt. Mit dem 9WPtE-Elektrodenarray wurde auf diese Weise ein funktionsfähiger kompetitiver Immunosensoren gegen den Tumormarker Tenascin C entwickelt. Außerdem wurden der 9WPtE-Chip und ein zusätzlich entwickelter Durchflusssensor, basierend auf dem Prinzip des 9WPtE, genutzt, um die Möglichkeit der Detektion ganzer eukaryotischer Zellen zu untersuchen.
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Immuno-modulatory functions of tenascin-C in a tumor progression model / Fonctions immuno-modulatrices de la ténascine-C dans un modèle de progression tumoraleMurdamoothoo, Devadarssen 14 September 2018 (has links)
La ténascine-C (TNC), protéine de la matrice extracellulaire, favorise la progression tumorale et la métastase par des mécanismes pas totalement élucidés. J’ai utilisé un nouveau modèle de progression tumorale de la glande mammaire basé sur une approche de greffe de cellules tumorales orthotopiques syngéniques et j’ai ainsi identifié la TNC comme un régulateur important de la croissance tumorale. L’expression concomitante de la TNC par les cellules de l’hôte et les cellules tumorales induit une régression de la tumeur en induisant une signature de présentation d’antigène. Cette signature a été corrélée avec une meilleure survie des patientes atteintes de cancer du sein. D’autre part, la TNC exprimée par les cellules tumorales induit également l’expression de CXCL12 au sein de la tumeur, piégeant les lymphocytes CD8+ dans des travées de matrice enrichies avec le CXCL12 lié à la TNC. L’inhibition du récepteur de CXCL12, le CXCR4 provoque une régression tumorale qui s’accompagne d’un afflux important de lymphocytes T CD8+ et d’une augmentation de la mort cellulaire au sein du lit tumorale. La séquestration des lymphocytes T cytotoxiques par la TNC dans les travées de matrice peut avoir une implication importante dans le développement et l’utilisation des nouvelles immunothérapies ciblant l’activité des cellules effectrices du système immunitaire. / The extracellular matrix molecule tenascin-C (TNC) promotes tumor progression and metastasis by poorly understood mechanisms. I used a novel breast progression model based on a syngeneic orthotopic tumor cell grafting approach and identified TNC as an important regulator of tumor growth. I document that TNC promotes the battle between tumor regression and growth, where combined expression of tumor cell- and host-derived TNC induces tumor cell rejection. Tumor cell-derived TNC may elicit regression by induction of an antigen presenting signature (APS) expressed by the host, which correlates with better breast cancer patient survival. Tumor-cell derived TNC also triggers CXCL12 expression, thereby causing trapping of CD8+ T cells in the surrounding TNC matrix tracks. TNC binds CXCL12, and combined TNC/CXCL12 attracts and immobilizes CD8+ T cells. Inhibition of the CXCL12 receptor CXCR4 causes tumor regression that is accompanied by massive infiltration of CD8+ T cells and cell death inside the tumor cell nests. Altogether,TNC-triggered CXCL12 signaling may dampen CD8+ T cell function where physical trapping of CD8+ T cells in the TNC matrix may have implications for immune cell therapies. Our results and new tumor model, offer novel opportunities for preclinical cancer research and cancer patient therapy, by triggering the “good” and blocking the “bad” actions of TNC. In particular, overcoming the immune suppressive action of TNC, through inhibition of CXCR4, could be a useful approach.
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Mécanisme et conséquences de la répression de DKK1 par la ténascine-C, une molécule du microenvironnement tumoral / Mechanism and consequences of DKK1 downregulation by the tumor microenvironmental molecule tenascin-CSchwenzer, Anja 30 September 2013 (has links)
La Ténascine-C (TNC) est un composé majeur de la matrice extracellulaire tumorale et sa forte expression est directement corrélée à l’angiogenèse tumorale et au processus métastatique. Lors de ma thèse j’ai pu démontrer que la TNC dérégulait DKK1, un inhibiteur de la voie de signalisation Wnt et par ce biais augmentait l’activité de cette voie impliquée dans la cancérogenèse. La diminution de la formation des fibres de stress en présence de TNC est l’un des mécanismes majeurs qui contribue à la diminution de DKK1. L’activité de MKL1, facteur co-transcriptionnel de SRF et régulable par l’actine, s’avère diminuée en présence de TNC. Mes données indiquent que la fonction de MKL1 n’est peut-être pas le mécanisme majeur de la régulation de DKK1 par la statu de l’actine. D’autres facteurs, probablement liés aux fibres de stress d’actine pourraient être impliqués. L’augmentation de l’activité de la voie de signalisation Wnt, dépendante de DKK1, est probablement le mécanisme majeur par lequel la TNC active la progression tumorale. Cette étude a permis de mettre en évidence un nouveau mécanisme de régulation de DKK1 faisant intervenir l’intégrité du cytosquelette d’actine. / Tenascin-C (TNC) is a major component of the tumor specific extracellular matrix and its expression has been linked to tumor angiogenesis and metastasis. I demonstrated that TNC downregulates the expression of the Wnt signalling inhibitor DKK1 and by that enhances Wnt/-catenin signalling. Reduced stress fibre formation in the presence of TNC was identified as a major mechanism contributing to DKK1 downregulation. The activity of the actin-regulated SRF co-transcription factor MKL1 was found to be reduced in the presence of TNC. My results indicate that TNC-regulated MKL1 function maybe one, but not the major mechanism of DKK1 regulation by the actin status and that other factors, presumably regulated by actin stress fibres, are involved. Enhanced Wnt signalling activity downstream of TNC-induced DKK1 downregulation might be a major mechanism by which TNC promotes tumor progression. Furthermore, this study discovered a novel mechanism of regulating the Wnt inhibitor DKK1 by the integrity of the actin cytoskeleton.
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Target in context : molecular pathology of pediatric ependymoma and high grade gliomaAndreiuolo, Felipe 13 June 2012 (has links) (PDF)
Biomarkers for the classification, clinical management and prognosis of pediatric brain tumors (ependymoma and high grade glioma, (HGG)) are lacking. To address this, biomarkers were developed and explored in view of classification, prognostication, target identification and prediction of the efficacy of treatment for patients with such tumors.We show that overexpression of neuronal markers distinguishes supratentorial from infratentorial ependymoma, and among the former higher immunoexpression of neurofilament 70 (NEFL) is correlated with better progression free survival (PFS). Tenascin-C (TNC) is significantly overexpressed in infratentorial ependymoma. A multi-institutional European ependymoma collaboration group was established and analyses were performed in a pediatric cohort of 250 patients, where immunohistochemistry (IHC) for TNC showed to be a robust marker of poor overall survival (OS) and PFS, particularly among children under 3 years, this being further validated in an independent cohort. Techniques and scoring performed in different laboratories were highly reproducible. IHC for NEFL and TNC could be used for prognostication of pediatric ependymoma.The analysis of putative predictive markers for the response to targeted therapies in pediatric HGG in the setting of a clinical trial with the anti-EGFR agent erlotinib was performed by IHC and fluorescent in situ hybridization. The frequent loss of PTEN in diffuse intrinsic pontine glioma (DIPG) and the confirmation of the biological singularity of the certain subgroups (expressing EGFR, displaying oligodendroglial differentiation) which seem to be associated with better response to erlotinib have helped our group to establish the design of the next Phase III protocol for this disease at our institution. We report mutations in PI3KCA constituting the first identification of oncogene mutations in some DIPG, which further highlight their biological heterogeneity. Further studies are needed to define the interaction between PTEN loss, EGFR overexpression, oligodendroglial differentiation, PI3KCA mutations and other recent findings such as PDGFRA/MET gains/amplification and TP53 mutations in these heterogeneous lesions and their relationship to the outcome of patients under new targeted therapies for this largely fatal disease.This thesis has allowed us to explore the molecular pathology in the context of biology and clinical setting of pediatric brain tumors.
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Etude des mécanismes d'adhérence et d'activation des plaquettes sanguines appliquée à l'identification de nouvelles cibles anti-thrombotiques plus sûres / Study of blood platelet adhesion and activation mechanisms to identify safer antithrombotic targetsSchaff, Mathieu 07 December 2012 (has links)
L’adhérence, l’activation et l’agrégation des plaquettes sanguines sont essentielles à l’hémostase mais peuvent également conduire à la thrombose artérielle sur plaque d’athérosclérose, aujourd’hui première cause de mortalité dans le monde. Les anti-thrombotiques actuels, dirigés contre l’activation et l’agrégation plaquettaires, ont une efficacité reconnue mais ont pour inconvénient d’augmenter le risque de saignement. L’objectif de cette thèse a été d’explorer de nouvelles stratégies réduisant la thrombose tout en préservant l’hémostase. L’utilisation de souris modifiées génétiquement a mis en évidence que l’intégrine alpha6 beta1, impliquée dans l’adhérence des plaquettes aux laminines, joue un rôle critique en thrombose expérimentale mais pas en hémostase. De plus, nous avons montré dans un système de perfusion de sang qu’une protéine préférentiellement exprimée dans les plaques d’athérosclérose, la ténascine-C, permet l’adhérence et l’activation des plaquettes. En revanche, la beta-arrestine-1, une protéine de signalisation, ne contribue que modestement aux fonctions plaquettaires et à la thrombose. En conclusion, ce travail a permis de dégager deux nouvelles pistes anti-thrombotiques potentiellement capables de préserver l’hémostase, basées sur le ciblage de l’intégrine alpha6 beta1 ou de l’interaction plaquette/ténascine-C. / Following vascular injury, blood platelet adhesion, activation and aggregation are essential for hemostasis but can also lead to arterial thrombosis, which is a leading cause of death worldwide. Current antithrombotic drugs impede platelet activation and aggregation, thereby considerably reducing cardiovascular mortality, but their use is linked to an increased bleeding risk. This thesis aimed to explore more selective strategies causing minimal perturbation of hemostasis. The use of genetically-modified mice has revealed an unsuspected important contribution of integrin alpha6 beta1, which mediates platelet adhesion to laminins, to experimental arterial thrombosis but not hemostasis. In addition, we showed that tenascin-C, an extracellular matrix protein overexpressed in atherosclerotic plaques, can support platelet adhesion and activation under flow. In contrast, the signaling protein beta-arrestin-1 does not play a major role in platelet function, hemostasis and thrombosis. In conclusion, this work provides two interesting candidates, namely integrin alpha6 beta1 and tenascin-C, to put into practice the concept of targeting thrombosis while minimally impairing hemostasis.
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Genexpressionsprofil und Aktivität humaner Papillomviren in nicht-melanozytären HauttumorenDang-Heine, Chantip 05 July 2010 (has links)
Für die Entstehung nicht-melanozytärer Hauttumore sind mehrere Risikofaktoren verantwortlich: UV-Exposition, Pigmentierung, Alter, Immunsuppression und möglicherweise Humane Papillomviren (HPV). Die molekularen Mechanismen der Tumorgenese des kutanen Plattenepithelkarzinoms (SCC) sowie der Präkanzerose Aktinische Keratose (AK) sind nur lückenhaft bekannt. Fokus dieser Arbeit ist die Untersuchung von SCC-Genexpressionsprofilen sowie der Einfluss kutaner HPV-Typen während der Karzinogenese bei immunkompetenten und immunsupprimierten, organtransplantierten Patienten. Durch Genexpressionsanalyse kutaner SCC, AK und normaler Haut konnten 118 differenziell exprimierte Gene in SCC mittels cDNA-Microarrays identifiziert werden. Bestätigt wurde die Expression von 11 aus 13 ausgewählten Genen (85%) mittels quantitativer real-time RT-PCR (qPCR), dabei konnte eine Korrelation der Genexpression mit der Progression der AK zum SCC für 3 Gene nachgewiesen werden. Dazu zählen das Gen Metalloproteinase-1, kodierend für ein Enzym, das in den Umbau von extrazellulärer Matrix involviert ist, das Protoonkogen RAB31 und das Tenascin-C (Tn-C) kodierende Gen Tn-C. Tn-C war im SCC-Gewebe an der Invasionsfront in Basalzellen sowie Keratinozyten im Stratum papillare und retikulare als Protein nachweisbar, nicht aber in normaler Haut. Die im Rahmen dieser Arbeit erstmalig nachgewiesene 2243 bp-Spleißvariante von Tn-C könnte aufgrund der primären Expression in SCC–Gewebe als diagnostischer Marker für SCC dienen. Diese Daten zeigen, dass simultane, multifaktorielle Dysregulationen von Genexpression und DNA-Reparatur, Zellzyklus und Proliferation, proteolytischen Enzymen und Adhäsionsmolekülen in SCC vorliegen. Ferner wurde die Expression von HPV in SCC und damit der kausale Zusammenhang einer HPV-Infektion mit der Hauttumorgenese untersucht. Das Infektionsmuster von SCC-Gewebe und normaler Haut mit spezifischen HPV-Typen erfolgte durch den Nachweis typenspezifischer HPV-DNA. Virale E6/E7-mRNA-Transkripte der kutanen HPV-Typen 8, 9 und 15 wurden in AK und SCC nachgewiesen. Dagegen konnten in HPV-DNA positiver, gesunder Haut oder Warzen keine HPV-Transkripte gefunden werden. Die Variantenanalyse des offenen Leserahmens von E6 identifizierte eine einzelne, bislang nicht beschriebene Punktmutation mit nicht bekannter Veränderung der Proteinstruktur. Die virale Aktivität der Onkogene E6 und E7 einiger kutaner Typen in AK und SCC weisen auf eine mögliche Rolle von HPV bei der kutanen Hautkarzinogenese hin. / During development of non-melanoma skin cancer, several risk factors are involved: UV-exposition, pigmentation, age, and potentially human papilloma virus (HPV). The molecular mechanisms underlying tumourgenesis in squamous cell carcinoma (SCC) and its pre-cancerosis actinic keratosis (AK) are not fully understood. In this study, the gene expression profile and HPV-infection status were analysed in SCC from immunocompetent and organ transplanted, immunocompromised patients.By global transcriptome analysis from cutaneous SCC, AK and healthy skin, 118 genes were identified differentially expressed in a cDNA-microarray. The expression of 11 out of 13 selected genes (85%) was investigated by real-time RT-PCR (qPCR) and the expression of three genes remarkably induced in SCC correlated with the progression to AK until SCC. These genes encoded for Metalloproteinase-1, which is involved in the remodelling of extracellular matrix, and the protooncogene RAB31 and Tenascin-C (Tn-C). Tn-C protein is expressed in SCC-tissue at the invasion front in basal cells and in keratinocytes in the Stratum papillare and retikulare, but not in healthy skin. This study, the 2243 bp Tn-C-specific splice-variant has for the first time detected in SCC, but not in normal skin. Thus it might serve as diagnostic marker of SCC progression. The data of the transcriptome analysis indicates that a simultaneous dysregulation of oncogene expression and DNA-repair, cell-cycle and proliferation, proteolysis and adhesion molecules exists in SCC. Additionally, the expression of HPV in SCC and thus the causal relationship between HPV-infection and tumourgenesis of SCC in immunocompromised patients was investigated. The HPV-infection pattern in SCC-tissue and normal skin was assessed by detection of DNA from cutaneous HPV-types. Viral E6/E7-mRNA-transcripts of the cutaneous HPV-types 8, 9, 15 were expressed selectively in AK and SCC. In contrast, no HPV-specific mRNA was present in HPV-DNA positive normal skin. The analysis of the open reading frame from the respective E6-protein genes unravelled one single pointmutation, which is not been characterized so far in terms of e.g. its impact on protein structure. The viral activity of the oncogenes E6 and E7 of cutaneous HPV-types indicates a potential function of HPV in the tumourgenesis of SCC in immunocompromised individuals.
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Gene expression of tendon markers in mesenchymal stromal cells derived from different sourcesBurk, Janina, Gittel, Claudia, Heller, Sandra, Pfeiffer, Bastian, Paebst, Felicitas, Ahrberg, Annette B., Brehm, Walter January 2014 (has links)
Background: Multipotent mesenchymal stromal cells (MSC) can be recovered from a variety of tissues in the body. Yet, their functional properties were shown to vary depending on tissue origin. While MSC have emerged as a favoured cell type for tendon regenerative therapies, very little is known about the influence of the MSC source on
their properties relevant to tendon regeneration. The aim of this study was to assess and compare the expression of tendon extracellular matrix proteins and tendon differentiation markers in MSC derived from different sources as well as in native tendon tissue. MSC isolated from equine bone marrow, adipose tissue, umbilical cord tissue, umbilical cord blood and tendon tissue were characterized and then subjected to mRNA analysis by real-time polymerase chain reaction. Results: MSC derived from adipose tissue displayed the highest expression of collagen 1A2, collagen 3A1 and decorin compared to MSC from all other sources and native tendon tissue (p < 0.01). Tenascin-C and scleraxis
expressions were highest in MSC derived from cord blood compared to MSC derived from other sources, though both tenascin-C and scleraxis were expressed at significantly lower levels in all MSC compared to native tendon tissue (p < 0.01). Conclusions: These findings demonstrate that the MSC source impacts the cell properties relevant to tendon regeneration. Adipose derived MSC might be superior regarding their potential to positively influence tendon matrix reorganization.
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Utilisation de cellules souches médullaires en bioingénierie tissulaire du ligament / Use of bone marrow mesenchymal stem cell in bioengineering of ligamentsZhang, Lei 24 January 2008 (has links)
Les ligaments jouent un rôle important dans le mouvement et la stabilité des articulations. Les accidents et la fatigue chronique sont les principales raisons des ruptures de ligaments qui n’ont généralement pas de capacité de guérison, ce qui conduit à de graves dysfonctionnements du ligament et des articulations. La construction des ligaments en bioingénierie donne un nouvel espoir thérapeutique. Pour construire un tel tissu, les cellules sont très importantes dans la mise en oeuvre de la construction d’un biotissu ayant de bonnes propriétés tant biologiques que mécaniques. Quelle source cellulaire et quel microenvironnement doivent être utilisés pour la reconstruction des ligaments ? L’objectif de ce travail était d’étudier la différenciation des cellules souches mésenchymateuses médullaires (CSMM) en fibroblaste. Pour ce faire, d’une part, nous avons co-cultivé des CSMM du rat sans contact avec des fibroblastes ligamentaires, et d’autre part, nous avons stimulé mécaniquement les CSMM. Un suivi des ARNm et des protéines associées caractéristiques des ligaments (collagènes I et III et ténascine-C) a été analysés. Nos résultats expérimentaux ont montré que la culture des CSMM dans un microenvironnement fibroblastique de ligaments ou l’étirement favorisent les synthèses de collagènes I et III et de ténascine-C dans les proportions proches des ligaments. L’ensemble de cette étude suggère qu’il est envisageable d’utiliser les CSMM comme source cellulaire, pour une application clinique, en ingénierie tissulaire du ligaments / Ligaments play an important role in the movement and stability of joints. Accidents and chronic fatigues are the main reasons for ligament lesion which usually is difficult for self healing and leads to serious dysfunction of ligaments and joints. The construction of bioengineering ligaments gives a new way to overcome this problem. Cells are very important in the construction of a biotissue with appropriate biological as well as mechanical properties. Which cellular source and microenvironment should be used for the reconstruction of ligaments? The objective of this work is to study the differentiation of bone marrow mesenchymal stem cell (BMSC) into fibroblast. We co-cultured indirectly rat BMSC with ligament fibroblasts or stimulated them by mechanical stretching. After that, the expressions of characteristics mRNA and protein of ligaments (collagen I, III and tenascin-C) have been analyzed. Our experimental results showed that the culture of BMSC in a microenvironment of ligament fibroblast or under stretching favored the syntheses of collagen I, III and tenascin-C in the proportions close to ligaments. In summary, these studies suggest it is feasible to use BMSC as cellular source for a clinical application in tissue engineering of ligaments
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Investigating cell lineage specific biosynthesis of tenascin-C during inflammationGiblin, Sean January 2018 (has links)
The extracellular matrix (ECM) is a complex network of molecules secreted by cells, which is essential for providing structural support and facilitating cell processes including adhesion, migration and survival. Tenascin-C is an immunomodulatory ECM protein that exhibits limited expression in healthy tissues, but is transiently elevated at sites of tissue injury, and is persistently expressed in chronic inflammatory diseases and tumours. Alternative splicing of 9 of tenascin-C's fibronectin type III-like domains (FnIII- A1, A2, A3, A4, B, AD2, AD1, C and D) generates enormous diversity in form; yielding 511 possible isoforms. Post-transcriptional modification of tenascin-C has been studied in cancer and during development where disease and tissue specific isoforms exhibit distinct adhesive, migratory and proliferative effects. However, little is known of how tenascin-C is expressed or alternatively spliced during inflammation. This study characterises inflammation and disease specific tenascin-C isoforms made by immune cells and fibroblasts, and investigates their functional relevance. Biosynthesis and alternative splicing of tenascin-C was examined using standard curve qPCR, ELISA, Western blot and confocal immunocytochemistry in resting and activated primary human immune cells, dermal fibroblasts, and in synovial fibroblasts isolated from healthy controls and from osteoarthritis (OA) and rheumatoid arthritis (RA) patients. Based on these data, three recombinant proteins comprising FnIII domains AD2-AD1, B-C-D and B-AD2-AD1-C-D were cloned, expressed and purified, and their impact on cell behaviour including adhesion, morphology and migration was assessed. Basal tenascin-C expression was lower in myeloid and lymphoid cells than fibroblasts, and was induced in all following inflammatory stimulation. Tenascin-C expression was elevated in disease with RA and OA synovial fibroblasts containing higher levels than healthy controls. Alternative splicing following cell activation was cell-type specific: all FnIII except AD2 and AD1 were upregulated in dendritic cells and macrophages, in T-cells all FnIII remained unchanged with FnIII A1 absent; and no change in splicing was observed in activated dermal fibroblasts. Normal and OA synovial fibroblasts exhibited similar tenascin-C splicing patterns, but FnIII B and D were specifically elevated in RA. Functional analysis revealed differences in the adhesion, morphology and migration of myeloid cells and dermal fibroblasts cultured on FnIII AD2-AD1, B-C-D, B-AD2-AD1-C-D and full length tenascin-C substrates; FnIII B-C-D promoted MDDC migration while B-AD2-AD1-C-D promoted fibroblast adhesion, compared to full length tenascin-C. For the first time, this study reveals differences in tenascin-C biosynthesis and alternative splicing by immune cells and fibroblasts following activation with inflammatory stimuli; and starts to reveal how alternative splicing of tenascin-C may influence the behaviours of both stromal and immune cells types during inflammation and in inflammatory diseases.
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The role of tumor microenvironment on oral tongue cancer invasion and prognosisSundquist, E. (Elias) 30 January 2018 (has links)
Abstract
Oral tongue squamous cell carcinoma (OTSCC) is the most common cancer of the oral cavity. The 5-year mortality of OTSCC remains at about 50%. The tumor microenvironment (TME) is now recognized as an important factor in cancer progression and metastasis, as well as a tool for prognostication. The aim of this study was to elucidate the roles of TME hypoxia and soluble factors on cancer cell migration and invasion, and the prognostic value of two extracellular matrix (ECM) molecules: tenascin-C (TNC) and fibronectin (FN).
Hypoxia was studied using oral squamous cell carcinoma cells in migration and invasion assays. Invasion assays were carried out using a 3D-myoma invasion method. Similarly, the effect of soluble factors as well as ECM alterations were studied using the myoma model: the effect of soluble factors was studied by rinsing the myoma discs prior to experiments, and ECM alterations by lyophilizing and rehydrating. ECM was further studied by analyzing the prognostic value of TNC and FN from OTSCC samples.
The effect of hypoxia was shown to be OTSCC cell line dependent: the effect of hypoxia on migration and invasion was increased in aggressive cell lines. Additionally, the response to hypoxia was altered in rinsed tissue. Tissue rinsing media were analyzed and factors affecting cell motility were found. The TME was found to be pivotal for cancer invasion: invasion was impaired in non-neoplastic tissue. Furthermore, changes in the ECM by lyophilization and rehydration led to a change in the invasion mechanism. High expression of stromal TNC and FN were excellent prognosticators in early-stage OTSCC.
In conclusion, the present study highlighted the role of various TME components in cancer cell invasion as well as prognostication in OTSCC. Additionally, this study provided feasible tools for more precise diagnosis of early-stage OTSCC. / Tiivistelmä
Liikkuvan kielen levyepiteelikarsinooma (OTSCC) on suuontelon yleisin syöpä. Viiden vuoden kuolleisuus OTSCC:an on edelleen noin 50 %. Kasvaimen mikroympäristön (TME) tiedetään nykyään olevan tärkeässä roolissa syövän kehityksessä ja etäpesäkkeiden muodostuksessa, sekä tarjoavan työkaluja ennusteiden laadintaan. Tämän tutkimuksen tarkoituksena oli selvittää TME:n hypoksian ja liukoisten tekijöiden vaikutusta syöpäsolujen liikkumiseen ja invaasioon ympäröivään kudokseen, sekä tutkia kahden solunulkoisen matriksin (ECM) proteiinin, tenaskiini-C:n (TNC) ja fibronektiinin (FN), vaikutusta OTSCC:n ennusteeseen.
Hypoksian vaikutusta tutkittiin käyttäen suun levyepiteelikarsinoomasoluja liikkuvuus- ja invaasiokokeissa. Invaasiokokeissa hyödynnettiin kolmiulotteista ihmisen myoomaan perustuvaa invaasiomallia. Myös liukoisten tekijöiden ja ECM:n muutosten vaikutusten tutkimisessa käytettiin myoomamallia: liukoisten tekijöiden vaikutusta tutkittiin huuhtomalla myoomakiekot ennen niiden käyttämistä, ja ECM:n muutosten vaikutusta kylmäkuivaamalla ja uudelleen nesteyttämällä myoomakiekot. ECM:ia tutkittiin myös analysoimalla TNC:n ja FN:n värjäytyvyyden merkitystä OTSCC:n ennusteessa.
Hypoksian vaikutus osoittautui solulinjariippuvaiseksi: hypoksia lisäsi kielisyöpäsolujen liikkuvuutta ja invaasiota eniten aggressiivisimmilla solulinjoilla. Lisäksi solujen vaste hypoksialle oli erilainen huuhdotussa kudoksessa. Huuhteluliuos analysoitiin ja siitä löydettiin solujen liikkumiseen vaikuttavia tekijöitä. TME:n havaittiin olevan ratkaisevassa roolissa syöpäsolujen invaasiossa: syöpäsolut eivät kyenneet invasoitumaan lainkaan ei-neoplastiseen kudokseen. Lisäksi muutosten ECM:ssä havaittiin johtavan muutoksiin solujen käyttämässä invaasion mekanismissa. Strooman TNC:n ja FN:n värjäytyvyyden todettiin olevan erinomaisia ennustekijöitä aikaisen vaiheen OTSCC:ssa.
Tiivistettynä voidaan todeta, että tämä tutkimus alleviivasi useiden TME:n komponenttien vaikutusta syövän invaasiolle ja ennusteelle OTSCC:ssä. Lisäksi se tarjoaa käyttökelpoiset työkalut (TNC ja FN) tarkemmalle diagnostiikalle aikaisen vaiheen OTSCC:ssä.
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