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Immune Profiling of Stage III Non-small Cell Lung Cancer Patients Treated With Concurrent Chemoradiation and Adjuvant Durvalumab: A Prospective Observational Phase II Trial

Immune Profiling of Stage III Non-small Cell Lung Cancer Patients Treated With Concurrent Chemoradiation and Adjuvant Durvalumab: A Prospective Observational Phase II Trial

Status
Active, not recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04432142
Acronym
IPON-1
Enrollment
45
Registered
2020-06-16
Start date
2021-04-01
Completion date
2026-12-01
Last updated
2026-01-27

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Carcinoma, Non-Small-Cell Lung

Brief summary

Currently, there is only limited data available on the functional immune changes after concurrent chemoradiation in NSCLC (non-small cell lung cancer) patients. Identifying the effect of the treatment on immune cells and what their functional consequences are is an essential first step to come to prognostic and predictive biomarkers. Many studies investigating the role of immunomodulatory effects of treatment are carried out in either in vitro or in vivo animal models. However, identified factors frequently hamper clinical validation. In addition, as mentioned earlier, although several immunogenic factors have been shown to be released by irradiated tumor cells, so far, only a limited number of studies searched for potential predictive and prognostic immunological biomarkers. This will be the first time that the immune effects of both treatment modalities will be studied, with, in addition, the immune changes during durvalumab treatment, which are also unknown at present. By getting more insight in the treatment-induced immunomodulatory effects, ultimately, in subsequent projects, this will allow to determine optimal immune stimulation and hence improved outcomes of subsequent durvalumab immune therapy.

Detailed description

Even with the addition of durvalumab to concurrent chemoradiation, approximately only half of the patients are alive at 3 years, and more have progressed already, either locally or distant. Not much is known regarding to identification of patients that will benefit from adjuvant durvalumab, or regarding resistance to adjuvant durvalumab after chemoradiation. Most data on immunotherapy resistance come from metastatic patients treated with monotherapy PD-(L)1 antagonists. Depending on PD-L1 expression level, 10-44% of patients respond well to PD-(L)1 antagonists. The majority of patients are either unresponsive, or experience a tumor recurrence after achieving an initial response. The development of individual immunological treatment strategies (e.g. selection of best treatment: mono- or combination ICI, ICI combined with chemotherapy, or the addition of radiotherapy) is hampered by the lack of knowledge in the best timing, sequencing, and dosing of all modalities and the lack of optimal biomarkers for monitoring the treatment response. This highlights the need of clear biomarkers that can be used to select the best treatment for each individual patient and predict whether patients will benefit from adjuvant immunotherapy. Currently, there is only limited data available on the functional immune changes after concurrent chemoradiation in NSCLC patients. Identifying the effect of the treatment on immune cells (e.g. T-, B-, NK-cells, dendritic cells, macrophages) and what their functional consequences are is an essential first step to come to prognostic and predictive biomarkers. Many studies investigating the role of immunomodulatory effects of treatment are carried out in either in vitro or in vivo animal models. However, identified factors frequently hamper clinical validation. In addition, as mentioned earlier, although several immunogenic factors have been shown to be released by irradiated tumor cells, so far, only a limited number of studies searched for potential predictive and prognostic immunological biomarkers. This will be the first time that the immune effects of both treatment modalities will be studied, with, in addition, the immune changes during durvalumab treatment, which are also unknown at present. By getting more insight in the treatment-induced immunomodulatory effects, ultimately, in subsequent projects, this will allow to determine optimal immune stimulation and hence improved outcomes of subsequent durvalumab immune therapy.

Interventions

None listed

Sponsors

Maastricht Radiation Oncology
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Pathological diagnosis of adequately staged (according to standard practice using chest-CT, FDG-PET, brain imaging MRI/CT) NSCLC * Participant is willing and able to give informed consent for participation in the trial * Male or female, aged 18 years or above * Scheduled to receive one of the following two therapeutic strategies: * Concurrent chemotherapy and radiotherapy with photons (60 Gy in 30 fractions of 2 Gy) in patients with stage III NSCLC * Concurrent chemotherapy and radiotherapy with protons (60 Gy in 30 fractions of 2 Gy) in patients with stage III NSCLC * Is able and willing to comply with all trial requirement

Exclusion criteria

* Mixed non-small cell lung cancer with other histologies such as small cell lung cancer * Not able to comply with the study protocol * Less than 18 years' old * Pregnancy or not able to comply with adequate contraception in women with child baring potential * Previous radiotherapy to the chest for benign or malignant conditions, including radiation for breast cancer * Previous malignancy treated with chemotherapy, immune therapy or radiotherapy (irrespective of when this happened) * Previous malignancies treated with surgery only are allowed if 2 years or more before inclusion in the present study

Design outcomes

Primary

MeasureTime frameDescription
Immune changes3 monthsNumber of patients with immune changes in stage III NSCLC patients receiving concurrent chemoradiation with protons or photons followed by durvalumab.

Secondary

MeasureTime frameDescription
PFS12 monthsProgression Free Survival
OS12 monthsOverall survival
Toxicity chemoraditionuntil 3 months after chemo/radiotherapy\- Number of participants with treatment-related adverse events as assessed by CTCAE v5.0 during and after concurrent chemoradiation, also in relation to the irradiated bone marrow volume
Number of participants with treatment-related adverse events as assessed by CTCAE v5.0 during courses of DurvalumabUntil 12 months after chemo/radiotherapyNumber of participants with treatment-related adverse events as assessed by CTCAE v4.0 of durvalumab and chemoradiation treatment
Number of participants with treatment-related adverse events as assessed by CTCAE v4.0Until 12 months after chemoradiationIncidence and severity of adverse events (Common Terminology Criteria for Adverse Events (CTCAE) v 5.0 and patient reported outcome (PRO)-CTCAE)
Immune changes comparedUntil 12 months after chemoradiationNumber of patients with immune changes that are distinct for proton therapy compared with photon therapy
Cardiac functionUntil 12 months after chemoradiationTroponins
Neurocognitive function testUntil 12 months after chemoradiationMOS
Tumor materialUntil 12 months after chemoradiationObtaining tumor material from standard diagnostic material for translational purposes

Countries

Netherlands

Contacts

PRINCIPAL_INVESTIGATORDirk De Ruysscher, MD, PhD

Maastro

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 5, 2026