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Biomarkers for Diagnosis and Treatment of COPD (BmiRCOPD)

24 de setembro de 2019 atualizado por: Luca Gallelli, University of Catanzaro

A Predictive "Molecular Biology Signature" for Diagnosis and Treatment of Chronic Obstructive Pulmonary Disease

COPD is an inflammatory disease characterized by enhanced chronic airway and lung inflammatory responses to noxious agents (e.g. smoke, pollutants) and progressive airflow limitation. In COPD patients there is a spillover of peripheral lung inflammation into systemic circulation resulting in increased level of various inflammatory markers such as: IL-1β, IL-6, IL-8, and TNF-α.

Diagnosis, now, is based on clinical evaluation and spirometry test and COPD treatment includes the use of LABA, LAMA and corticosteroids.

To data no plasmatic marker able to identify the stage of COPD and the response to the treatment have been documented . The aim of this study is to evaluate in COPD patients the role of microRNA as predictive biomarker, of the disease in order to have a signature of miRs typically of COPD

Visão geral do estudo

Status

Concluído

Condições

Descrição detalhada

Chronic obstructive pulmonary disease (COPD) is a heterogeneous respiratory disorder affecting more than 200 million patients worldwide. It is characterized by enhanced chronic airway and lung inflammatory responses to noxious agents (e.g. smoke, pollutants) and progressive airflow limitation.

Both, prevalence and incidence of this disease are continuously increasing, thus the investigators can predict that in 2020 it will be the third important cause of death in the world.

Several immune system cells (e.g. macrophages, eosinophils) and biochemical mediators (e.g. tumor necrosis factor-alpha, transforming growth factor beta, Interleukins and metalloproteases) are involved in its development and in symptom severity.

It has been suggested that in COPD patients there is a spillover of peripheral lung inflammation into systemic circulation resulting in increased level of various inflammatory markers such as: IL-1β, IL-6, IL-8, and TNF-α. Those biomolecules are responsible of various complication associated with COPD such as cardiovascular disease, hypertension and skeletal muscle weakness to name a few. It is worth to note that the increase of systemic inflammatory markers is also responsible of diabetes, obesity and metabolic syndrome development in COPD patients.

Diagnosis, now, is based on clinical evaluation and spirometry test and COPD treatment includes the use of LABA, LAMA and corticosteroids. Therefore, an early diagnosis in order to asses a specific treatment it is mandatory.

Sarioglu et al.,reported that systemic inflammatory markers levels (in plasma) TNFα, IL-6 and C-reactive protein, persist in the stable period in 110 COPD patients and the C-reactive protein levels correlate with the COPD Assessment Test.

However, C-reactive protein is not a specific marker, while to date more appropriate marker(s) could be represented by microRNA (miR) a key class of gene expression regulators, emerging as crucial players in various biological processes such as cellular proliferation and differentiation, development and apoptosis.

In this concern, Stolzenburg et al., documented, in an experimental model of COPD, that miR-1343 reduces the expression of both isoform of TGF-b receptor 1 and 2, directly targeting their 3' UTRs mRNA region, suggesting a role in the improvement of lung fibrosis.

To date, no other data have been performed yet on this topic. In the present project the investigators would like to screen with nCounter GX Human Inflammation Kit a comprehensive number of 249 human genes known to be differentially expressed in inflammation. The gene list represents a broad range of inflammation-related pathways. In parallel miRs screening will be performed (800 in a single reaction tube) using NanoString Technology Platform. This technology is robust and sensitive and today is used for the validation of New Generation Sequence (NGS) data. Our aim is to evaluate in COPD patients the role of miRs as predictive biomarker, of the disease in order to have a signature of miRs typically of COPD. The signature could be used to monitoring the therapeutic application of drugs used in COPD as well as to asses a Prediction COPD Diagnostic test.

The absence of a plasmatic marker able to identify the stage of disease and the response to the treatment leads to COPD exacerbation and progression, this represent, in the real life, a common problem during COPD treatment and is also related with an increase of sanitary health costs. Last year, the European health bill for COPD treatment increased by USD 10 million and the market is thought to increase up to USD 37.7 million by 2030.

Tipo de estudo

Observacional

Inscrição (Real)

195

Contactos e Locais

Esta seção fornece os detalhes de contato para aqueles que conduzem o estudo e informações sobre onde este estudo está sendo realizado.

Locais de estudo

      • Catanzaro, Itália, 88100
        • UCCP
    • Catanzaro
      • Badolato, Catanzaro, Itália, 88100
        • UCCP
      • Borgia, Catanzaro, Itália, 88100
        • UCCP

Critérios de participação

Os pesquisadores procuram pessoas que se encaixem em uma determinada descrição, chamada de critérios de elegibilidade. Alguns exemplos desses critérios são a condição geral de saúde de uma pessoa ou tratamentos anteriores.

Critérios de elegibilidade

Idades elegíveis para estudo

40 anos a 80 anos (Adulto, Adulto mais velho)

Aceita Voluntários Saudáveis

Sim

Gêneros Elegíveis para o Estudo

Tudo

Método de amostragem

Amostra Não Probabilística

População do estudo

An open label, parallel groups study, will be performed after it is approve by the Ethical committee and before the beginning of the study, all participants will be informed about the aim, procedures, risks and benefits of the study and they will provide a written informed consent

Descrição

Inclusion Criteria:

  • COPD diagnosed according to the GOLD criteria

Exclusion Criteria:

  • allergy to corticosteroids or to bronchodilators
  • neurodegenerative diseases
  • autoimmune diseases
  • inability to use inhalers
  • progressive serious medical conditions (such as cancer, AIDS or end-stage renal disease)
  • infectious diseases

Plano de estudo

Esta seção fornece detalhes do plano de estudo, incluindo como o estudo é projetado e o que o estudo está medindo.

Como o estudo é projetado?

Detalhes do projeto

Coortes e Intervenções

Grupo / Coorte
COPD-Untreated (Group 1)
In this Group will be enrolled patients of both sex and older than 40-years with COPD stage GOLD 2 and 3 that did not receive COPD treatment in the last 6 months (beta 2 agonists, corticosteroids, anticholinergics).
COPD-uncontrolled (Group 2)
In this Group will be enrolled patients of both sex and older than 40-years with COPD stage GOLD 2 and 3 that receive a COPD treatment (e.g. beta 2 agonists, corticosteroids, anticholinergics) but with a post-bronchodilator FEV1< 80% and an FEV1/FVC < 0.7 or with 1-2 exacerbation/year
Control subjects (Group 3)
In this Group will be enrolled patients of both sex and older than 40 years; (2) will be free from lung disease as determined by a physician; (3) will have a normal spirometry (FEV1> 85% and FEV1/FVC > 0.7)

O que o estudo está medindo?

Medidas de resultados primários

Medida de resultado
Descrição da medida
Prazo
Change of miR expression at 6 and 12 months
Prazo: 6 and 12 months
Change of miR expression in COPD-groups (Groups 1 and 2 ) vs control-Group
6 and 12 months

Medidas de resultados secundários

Medida de resultado
Descrição da medida
Prazo
correlation between miRs expression and clinical outcome
Prazo: 6 and 12 months
correlation between miRs and clinical outcome evaluated through the COPD Assessment Test (CAT) and the modified Medical Research Council (mMRC) dispnea scale
6 and 12 months
correlation between miRs expression and the development of adverse drug reaction
Prazo: 6 and 12 months
correlation between miRs and clinical outcome evaluated through the Naranjo probability scale
6 and 12 months
correlation between miRs expression and inflammatory markers
Prazo: 6 and 12 months
correlation between miRs expression and plasma levels of ILs, TNF-Alpha, C reactive protein
6 and 12 months

Colaboradores e Investigadores

É aqui que você encontrará pessoas e organizações envolvidas com este estudo.

Investigadores

  • Investigador principal: Luca Gallelli, MD, University of Catanzaro

Publicações e links úteis

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Publicações Gerais

Datas de registro do estudo

Essas datas acompanham o progresso do registro do estudo e os envios de resumo dos resultados para ClinicalTrials.gov. Os registros do estudo e os resultados relatados são revisados ​​pela National Library of Medicine (NLM) para garantir que atendam aos padrões específicos de controle de qualidade antes de serem publicados no site público.

Datas Principais do Estudo

Início do estudo

1 de abril de 2016

Conclusão Primária (Real)

1 de abril de 2017

Conclusão do estudo (Real)

1 de outubro de 2018

Datas de inscrição no estudo

Enviado pela primeira vez

27 de novembro de 2015

Enviado pela primeira vez que atendeu aos critérios de CQ

14 de dezembro de 2015

Primeira postagem (Estimativa)

17 de dezembro de 2015

Atualizações de registro de estudo

Última Atualização Postada (Real)

25 de setembro de 2019

Última atualização enviada que atendeu aos critérios de controle de qualidade

24 de setembro de 2019

Última verificação

1 de setembro de 2019

Mais Informações

Termos relacionados a este estudo

Outros números de identificação do estudo

  • COPD

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