BITFORM · Multiplexed biosensing and tissue-on-a-chip integrated platform for breast cancer biomarkers monitoring
„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“
- Период
- 2019-10-01 → 2023-07-02
- Финансиране от ЕС
- 245 732 €
- Участници
- 3
- Схема
- MSCA-IF
Линиите свързват координатора с партньорите.
Накратко на български
Разработва се платформа с биосензори и изкуствени тъкани, за да се следят биомаркерите при рак на гърдата. Това помага за по-доброто разбиране на механизмите на болестта и тестването на ефективността на нови лекарства.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Multiplexed biosensing and tissue-on-a-chip integrated platform for breast cancer biomarkers monitoring
Breast cancer is the most common cancer in women, still, 15% of women affected by breast cancer die each year according to the World Health Organization (WHO). In addition, the number of new cases is increasing every year and, therefore, there is an imperative need to control and mitigate this affection. For that, novel technologies such as organ-on-a-chip addressed to mimic breast cancer tissues are needed. This will allow us to study how cancer tissue is developed and to better understand the biological, molecular, and physiological mechanisms involved in this disease. Moreover, this organ-on-a-chip approach can help to develop new drugs and elucidate which therapies are more effective on the different cancer organoids (3D self-organized tissues) developed. In this regard, this project aims to develop a multimodular platform including a (breast cancer ecosystem) BCE-on-a-chip (perfused bioreactor containing an organoid) module connected to a label-free biosensor for continuous monitoring of cell-secreted biomarkers. In other to enhance the organ-on-a-chip technology, one of the key factors is to be able to monitor hundreds of parameters affecting the tissue construct. For that reason, different characterization and monitoring strategies need to be developed and implemented in the system. One of them is the continuous detection of cell-secreted biomarkers. For that reason, in this project, we are developing a label-free optical biosensor based on R-NPs (resonant nanopillars) for in-line monitoring of the BCE-on-a-chip. There are other label-free sensors performing competitive sensitiveness’ (mirco and nanomolar) able to provide real-time measurements, such as microwave-based resonator devices or SPR. But they depend on complex light coupling which hampers their combination with bioreactors included in an incubator. R-NPs, meet the optical performance to satisfy the real-time monitoring and sensitivity requirements (ng/mL which is in the same order of concentration of target biomarkers such as Interleukin-8. In addition, RNPs multiplexing provides the desired layout for simultaneous biomarker sensing. Therefore the main objective of this project is to fabricate a multi-modular platform for breast cancer-on-a-chip cell-secreted, monitoring of several biomarkers, by means of RNPs optical biosensors. The specific objectives are listed below: 1 Implementation of the sensing module for the three biomarkers. 2 Development of the BCE-on a-chip module as well as the corresponding physiological and bubble trapping modules. 3 Microfluidic setup for the connection of the different modules. And platform breadboard. 4 Testing of cancer therapies on the BCE-on-a-chip defined, as well. On one hand, the platform will allow us to deepen our knowledge of the biomarker’s efficiency in breast cancer monitoring. On the other hand, specific cells from patients can be used for the organoid construct to be studied, and thus patients can receive more accurate treatments. This is called precision medicine and it is considered one of the paradigms of future medicine.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
In this project I will develop an integrated multi-module platform in which a breast cancer ecosystem-on-a-chip (BCE-on-a-chip) bioreactor module, connected to an optical biosensing module based on multiplexed Resonant Nanopillars (R-NPs) transducers, will be developed for biomarkers and anti-breast cancer drug real-time monitoring. Currently attrition rates in clinical trials for new anti-cancer drugs and personalized treatments are higher than all other therapeutic areas. Mainly due to the great reliability on conventional 2D and 3D scaffolds in-vitro culture methodologies in preclinical studies. Those cell-based models are limited by their inability to conserve the patient tumor features and do not accurately show drug response, observed later in clinical trials.Due to the increasing number of cancer diagnoses, an engineered system that allows an accurate prediction of patient tumor response to anti-cancer drug, is urgently needed. In Bitform Project I will develop a BCE-on-a-chip bioreactor that intends to conserve the cancer tissue characteristics with high reliability. Breast cancer cell secreted biomarkers will be monitored in real-time with a multiplexed biosensing module based on R-NPs. In order to assess the capability of Bitform platform, an anti-cancer drug demonstrator (Paclitaxel) will be tested. By delivering Paclitaxel to the BCE-on-a-chip, monitoring of different cell secreted target biomarkers will permit to evaluate the effect of this drug, and thus to demonstrate the performance of the platform.The Bitform platform will be suitable for different organ-on-chip culture models and biomolecules monitoring secreted by the cells. This will lead to a new methodology for testing anti-cancer therapies on-a-chip. This is a relevant milestone to study the further potential of the Bitform Platform in personalized medicine, which can have a transformative impact not only on the outcome but also on the costs of treatments by avoiding expensive failures.
Оригинален текст от CORDIS (на английски).
Участници
- UNIVERSIDAD POLITECNICA DE MADRID · MadridКоординаторИспания
- TERASAKI INSTITUTE FOR BIOMEDICAL INNOVATION · Los AngelesСъединени щати
- THE REGENTS OF THE UNIVERSITY OF CALIFORNIA · OaklandСъединени щати
Връзки
Данни: CORDIS, © Европейски съюз
