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NCT Number: NCT04487457

Prospective Study to Evaluate the Blood Kinetics of Immune Cells and Immunosuppressive Cytokines After Exposure to an Immunity Checkpoint Inhibitor (ICI): Study of the Impact of Chemotherapy

Non-small cell lung cancer (NSCLC) is the most common histological form, accounting for 85% of all bronchopulmonary cancers (PBC). The advent of Immunity Checkpoint Inhibitors (ICIs) targeting Programmed cell Death-1 (PD-1) is changing current treatment algorithms.

Preliminary results from work carried out in the Medical Oncology Department of the University Hospital of Tours suggest that immunotherapy targeting ICI, when administered beforehand, increases the effect of catch-up chemotherapy. In NSCLC, the progression-free survival (PFS) of 3rd line chemotherapy after anti-PD-1 immunotherapy was better than the PFS of 3rd line chemotherapy performed at the end of conventional chemotherapy. Moreover, the combination of chemotherapy and immunotherapy gives paradoxically better results than immunotherapy alone.

Immunotherapy restores the anti-tumor T immunity inhibited by the cancer cell. While the mode of action of ICIs is well known, the mechanisms of resistance to them are poorly understood. Several pathways are evoked, in particular the modulation of cellular interactions within the tumour microenvironment (TME), the molecular expression profile of cancer cells, or the immunological status of the patient.

Regulatory T lymphocytes (Treg) participate in the maintenance of immune system homeostasis by ensuring tolerance to self antigens. Within TME, Treg inhibit anti-tumor T cell activity and potentiate tumor proliferation. The latter, by specifically recognizing tumor antigens, block the activity of effector T lymphocytes directed against tumor cells. Thus, an increase in circulating Treg concentrations and in TME is a poor prognostic factor, especially in NSCLC.

Gemcitabine chemotherapy is commonly used in the management of NSCLC. Recent data show that gemcitabine decreases Treg activity and regulates levels of anti-inflammatory TME cytokines such as IL10, TGF-β and interferon-Ɣ.

The hypothesis of this study is that the decrease in Treg blood concentration by catch-up chemotherapy restores sensitivity to immunotherapy.

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Key information

About this study

Non-small cell lung cancer (NSCLC) is the most common histological form, accounting for 85% of all bronchopulmonary cancers (PBC). The advent of Immunity Checkpoint Inhibitors (ICIs) targeting Programmed cell Death-1 (PD-1) is changing current treatment algorithms.

Preliminary results from work carried out in the Medical Oncology Department of the University Hospital of Tours suggest that immunotherapy targeting ICI, when administered beforehand, increases the effect of catch-up chemotherapy. In NSCLC, the the progression-free survival (PFS) of 3rd line chemotherapy after anti-PD-1 immunotherapy was better than the PFS of 3rd line chemotherapy performed at the end of conventional chemotherapy. Moreover, the combination of chemotherapy and immunotherapy gives paradoxically better results than immunotherapy alone.

Immunotherapy restores the anti-tumor T immunity inhibited by the cancer cell. While the mode of action of ICIs is well known, the mechanisms of resistance to them are poorly understood. Several pathways are evoked, in particular the modulation of cellular interactions within the tumour microenvironment (TME), the molecular expression profile of cancer cells, or the immunological status of the patient.

Regulatory T lymphocytes (Treg) participate in the maintenance of immune system homeostasis by ensuring tolerance to self antigens. Within TME, Treg inhibit anti-tumor T cell activity and potentiate tumor proliferation. The latter, by specifically recognizing tumor antigens, block the activity of effector T lymphocytes directed against tumor cells. Thus, an increase in circulating Treg concentrations and in TME is a poor prognostic factor, especially in NSCLC.

Gemcitabine chemotherapy is commonly used in the management of NSCLC. Recent data show that gemcitabine decreases Treg activity and regulates levels of anti-inflammatory TME cytokines such as IL10, TGF-β and interferon-Ɣ.

The hypothesis of this study is that the decrease in Treg blood concentration by catch-up chemotherapy restores sensitivity to immunotherapy.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Age ≥ 18 years old
  • Patients treated with immune checkpoint inhibitor alone or in combination with chemotherapy in 1st or 2nd line
  • Patient with locally advanced or metastatic Non-Small-Cell Lung Cancer, or bladder cancer or Ear Nose Throat cancer
  • Maximum delay of 2 months between ICI and chemotherapy

Exclusion criteria

  • Symptomatic brain metastases
  • Corticotherapy > 10 mg/day
  • Active auto-immune disease
  • Oncogenic addiction
  • Data processing objection

Treatment and study plan

Blood Samples

Other

Blood samples

Primary outcomes

  1. Change from baseline blood concentration of regulatory T-lymphocytes (Treg) at 6 months

    Time frame: Baseline, 3 months and 6 months

    Blood concentrations will be measured at specific times

  2. Change from baseline blood concentration of lymphocyte populations T, B, NK, CD4+ and CD8+ (effector T-lymphocytes (Teff) included) at 6 months

    Time frame: Baseline, 3 months and 6 months

    Blood concentrations will be measured at specific times

Secondary outcomes

  1. Change from baseline blood concentration of anti-inflammatory cytokines at 6 months

    Time frame: Baseline, 3 months and 6 months

    Blood concentrations will be measured at specific times

  2. Assess correlation between blood concentration of Treg, blood concentration of Teff and blood concentration of anti-inflammatory cytokines

    Time frame: Baseline, 3 months and 6 months

  3. Determination of PDL1 status

    Time frame: Baseline

Sponsors and collaborators

Lead sponsor

University Hospital, Tours

Other

Registry information

Official study title

Étude Prospective d'évaluation de la cinétique Sanguine de Cellules Immunitaires et de Cytokines Immunosuppressives après Exposition à un Inhibiteur Des Checkpoints de l'immunité (ICI) : étude de l'Impact de la chimiothérapie

Acronym: CINECI

Important dates

Study start
2021
Primary completion
2022
Study completion
2022
First posted
Jul 27, 2020
Registry last updated
Apr 6, 2023

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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