FP6Реинтеграция2006–2008

3DCAP · Three-dimensional genomic analysis of cancer progression

6РП — Действия „Мария Кюри“

Период
2006-01-02 → 2008-01-01
Финансиране от ЕС
80 000 €
Участници
1
Схема
IRG

Линиите свързват координатора с партньорите. За проекти отпреди 2014 г. CORDIS не винаги дава точни координати. Тези точки са на ниво град или държава.

Накратко на български

Ролята на ензима теломераза при рака на белия дроб се анализира чрез измерване на дължината на теломерите в клетките. Това помага за разбирането на механизмите, чрез които раковите клетки се възпроизвеждат безкрайно и избягват естествената си смърт.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Final Activity Report Summary - 3DCAP (Three-dimensional genomic analysis of cancer progression)

Cancer is a disease of the cells, caused by abnormal functioning of the machinery that controls the timing and oversees the accuracy of every cell division. Consequently, cancer cells with abnormal genetic content, which in a normal cell would be forced into cell death -also called apoptosis-, manage to survive, thus compromising the normal function of the tissues where they are located. In this process, telomerase, an enzyme whose function is to protect and elongate the ends of cellular chromosomes, play a pivotal role, still not completely understood. Telomerase is not expressed in most somatic cells, and its role seems to be limited to preventing premature death of highly proliferative cells - i.e. stem and transit amplifying cells. However, most cancer cells manage to activate telomerase as a way to achieve immortalization. There is therefore a dual role of telomerase, beneficial in some normal cells and highly deleterious in cancer cells. Our goal in this project was to shed some light on the role of telomerase in normal lung and lung cancer. We wanted to help understanding the mechanism and the timing of telomerase activation in the histological context of the disease. To this end, our goal was first to overcome some important methodological problems that had impeded being able to simultaneously quantify telomerase levels of expression and the length of individual telomeres in intact cells. We have labelled and quantified both, by performing a technically complicated dual immunostaining of telomerase and in situ hybridization of the telomeres. Then, using novel 3D microscopy and image analysis tools, we have been able to measure the length of each telomere in the context of a known level of telomerase expression. Using these unique tools, we have looked at the expression and spatial distribution of telomerase and telomere signals in six lung cancer cells lines and in a normal cell line obtained from normal bronchial epithelia. This way we have confirmed in situ, for the first time, that telomerase positive cancer cells are able to maintain the length of their telomeres as cells cycle, while normal epithelial cells, both telomerase positive and negative are shorten their telomeres as they cycle. Interestingly, we have measured telomerase expression in some normal epithelial cells, in which the rate of telomere shortening is slower than in telomerase negative epithelial cells. These findings seem to indicate the telomerase has a different role in normal and cancer cells: telomerase in cancer cells has a telomere elongation role while telomerase acts in normal cells by protecting, not elongating the chromosomes. This was confirmed by the fact that telomerase activity, measure using biochemical methods, was detected in cancer cells but not in normal cells. Taking advantage of the ability to detect and quantify the length of individual telomeres, we were also able to confirm something that had been postulated, namely, that telomerase does not act in all the telomeres of the cell where it is expressed. Instead, it has preferential activity on the shortest telomeres of the cell. This is consistent with the idea that those are the ones that can become critically short and produce problems during cell division. What remains to complete the project, as it was originally planned, is to use our tools to quantify telomerase activity and telomere length simultaneously in cells in tissue samples, to determine the time of telomerase activation within the histological context of lung cancer progression.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

Our main goal is to do a correlative study of genomic instability and telomere length during lung cancer progression, starting from normal lung epithelium to invasive carcinoma. This will allow us to locate the onset of instability and test our hypothesis that genomic instability correlates with telomere critical shortening and is followed by telomerase reactivation.To this end we will:1. Refine our image analysis routines for 3D reconstruction of cells and DNA sequences stained by Fluorescence In situ Hybridisation (FISH), and of telomeric repeats using quantitative FISH (QFISH)2. Measure the levels of genetic instability using thick tissue sections with progressive histological stages of Non Small Cell Carcinomas (Sqamous cell carcinoma and adenocarcinomas): morphologically normal epithelium, hyperplasia, dysplasia, carcinoma in situ and invasive carcinoma. For each type, we will quantify genomic instability using 3D cell-by-cell copy number enumeration of two FISH chromosomal probes in thick sections.3. Determine telomere length status of each type of tissue using terminal restriction fragment (TRF) analysis and high resolution QFISH telomere detection.4. Measure telomerase activity in the tissues by quantitative immunhistochemical analysis of the catalytic subunit telomerase reverse transcritptase.5. Establish a time course of the onset of genomic instability, telomere crisis and telomerase activity during lung cancer progression.Regarding the goals of the IRG action, this grant would support the applicant 2019; efforts to reintegrate into the European research environment, and to transfer the knowledge acquired in his eight year long stay in the US. This grant would provide support to create collaborations with other groups at the host institution and to establish a real multidisciplinary network of interest on cancer imaging that should increase the level of the European research done in this field.

Оригинален текст от CORDIS (на английски).

Участници

  • FUNDACION PARA LA INVESTIGACION MEDICA APLICADA · PAMPLONAКоординаторНиво градИспания

Връзки

Данни: CORDIS, © Европейски съюз