Investigação, Desenvolvimento e Inovação · Em Execução

Avanços na Monitorização Neuroquímica com Sensores e Biossensores Electroquímicos Implantados no Cérebro

UNIVERSIDADE DE COIMBRA

Fundo aprovado
212 058,00 €
Fundo executado
0,00 €
Fundo pago
0,00 €

Esta ficha organiza os campos que o Portugal 2030 publica sobre a operação: financiamento aprovado, execução administrativa, enquadramento e território. O mérito da candidatura e os resultados no terreno não constam desta fonte.

COMPETE2030-FEDER-00711800

O QUE FOI APRESENTADO

Finalidade da operação

This project comprises three key objectives, focused on the advancement of neuroelectrochemistry and the promotion of innovative neurotechnology. The first objective centres on advancing the design and development of state-of-the-art microelectrode sensors. A second objective involves validating a preclinical platform for conducting multimodal and multiplexed measurements of neurochemicals in vivo in the brain, assessing probe biocompatibility. The third objective focuses on the translation of biosensor technologies from the laboratory to healthcare settings, enhancing diagnostic capabilities. These objectives are broken down into the specific goals of each activity: i) Enhance Electrochemical Bio-Sensing Capabilities of Microelectrodes; This goal focuses on enhancing the analytical…

Ler a descrição publicada na íntegra

This project comprises three key objectives, focused on the advancement of neuroelectrochemistry and the promotion of innovative neurotechnology. The first objective centres on advancing the design and development of state-of-the-art microelectrode sensors. A second objective involves validating a preclinical platform for conducting multimodal and multiplexed measurements of neurochemicals in vivo in the brain, assessing probe biocompatibility. The third objective focuses on the translation of biosensor technologies from the laboratory to healthcare settings, enhancing diagnostic capabilities. These objectives are broken down into the specific goals of each activity: i) Enhance Electrochemical Bio-Sensing Capabilities of Microelectrodes; This goal focuses on enhancing the analytical performance of single and multi-channel microelectrode sensors for electrochemical measurements of oxygen and hydrogen peroxide. ii) Development of Highly Sensitive and Selective Microelectrode Biosensors; Activity 2 is centred on the design of highly sensitive and selective oxidase-based electrochemical biosensors for glutamate, glucose, and lactate using single and multichannel microelectrodes. iii) In Vivo Validation and Assessment of Tissue Disruption and Biocompatibility: Activity 3 entails two goals: validation of the analytical performance of microelectrode sensors for glutamate, glucose, lactate, and oxygen ex vivo and in vivo in the rat brain, including monitoring of neurochemicals (EChem) concurrently with electrical activity (EPhys) as local field potential-related currents (LPF); evaluation of tissue disruption and microelectrode sensor biocompatibility when implanted in brain tissue. iv) Demonstrate the Electrochemical Utility of FDA-Approved Multi-Site Electrodes: Activity 4 aims to validate the use of commercial FDA-approved multi-site electrodes, commonly employed for clinical intracortical recordings, to develop electrochemical (bio)sensors for measuring relevant neurochemicals. v) Develop a Rapid, Simple, and Disposable Test of Lactate for Clinical Diagnostic and Sports Medicine: The goal of activity 5 is to leverage a novel disposable electrochemical biosensor using a screen-printed electrode (SPE) platform to TRL5. This biosensor is tailored for Point-of-Care Testing (POCT) in various biological sample matrices. These goals represent a significant advancement of the current state-of-the-art in electrochemical bio-sensing neurotechnology. The envisioned implantable hybrid sensor probes are designed to concurrently capture EChem and EPhys information in real-time in the living rat brain. These probes enable multimodal and multiplexed recordings in vivo, by using high-frequency amperometry. The concept of "Functional Amperometry" (fAmp) is introduced, highlighting its capacity to offer insight into the functional aspects of neuronal activity, including dynamics of neurochemicals concurrently with recordings of electrical activity as local-field potentials-related currents. The objectives demonstrate a multidisciplinary approach aimed to push the boundaries of neuroelectrochemistry and interfaced neurotechnology emphasizing translating research findings into clinical applications in healthcare settings.

PROGRAMA E OBJETIVOS

Como a operação está enquadrada

Programa
Programa Inovação e Transição Digital
Fundo
Fundo Europeu de Desenvolvimento Regional
Objetivo estratégico
+ Inteligente
Objetivo específico
Reforçar a investigação, inovação e adoção de tecnologias avançadas.
Área temática
Investigação, Desenvolvimento e Inovação
Atividade económica
Outra investigação e desenvolvimento das ciências físicas e naturais
Modalidade
Subvenção
Taxa de cofinanciamento
85%

ONDE

Distribuição territorial publicada

CoimbraRegião de Coimbra · Centro
100% da localização

Localização observada no ficheiro de 31 de agosto de 2026.

QUANDO

Calendário publicado

Início previsto
1 de julho de 2025
Início efetivo
24 de fevereiro de 2026
Conclusão prevista
29 de junho de 2028
Conclusão efetiva
Não indicada

PROVENIÊNCIA

Fonte oficial e datas de corte

Operação e valores: 31 de agosto de 2026. Localização: 31 de agosto de 2026.

Consultar o portal oficial Portugal 2030 ↗Capturas validadas por SHA-256; fonte verificada em 21 de setembro de 2026.
Avanços na Monitorização Neuroquímica com Sensores e Biossensores Electroquímicos Implantados no Cérebro | Impacto Público