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NCT Number: NCT06863805

Evaluation of the Clinical Utility of Circulating Biomarkers in Advanced Thyroid Carcinomas

The study is aimed at all adult patients diagnosed with advanced thyroid carcinomas and well-differentiated thyroid carcinomas (DTC) iodine-refractory, well-differentiated iodine-refractory thyroid (RAI-R DTC) metastatic carcinomas that are candidates for systemic therapy. By simple blood sampling and analysis on peripheral blood of circulating DNA (ccf-DNA), circulating RNA (ccf-RNA), and counting and analysis of circulating tumor cells through the use of liquid biopsy, molecular profiling corresponding to those obtained by genomic sequencing on tumor tissue can be arrived at, depending on optimal therapeutic choices

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Observational

Primary location

IRCCS Azienda Ospedaliero universitaria Bologna

Bologna, 40138, Italy

Location status: Recruiting

Location contact

Margherita Nannini

CONTACT

[email protected]

+390512142207

About this study

In recent years, research has focused on the so-called "liquid biopsy," understood as a noninvasive procedure capable of performing analysis on tumor-derived material contained in blood such as circulating free DNA (ccf-DNA), circulating free RNA (ccf-RNA), and circulating tumor cells (CTCs), capable of providing a dynamic snapshot of the molecular structure of the oncological pathology throughout its course.

In thyroid cancers, liquid biopsy methods have also proven feasible with potential clinical applications, both in the prognostic field, in the identification and monitoring of minimal residual disease, and in therapeutics. 28 The identification, in fact, of circulating biomarkers predictive of response or resistance to drugs in use to date first and foremost would allow in clinical practice a more accurate selection of patients at the time of initiation of systemic treatment, especially where tumor tissue is not available or adequate for molecular profiling. In addition, the identification of new molecular events, even secondary ones, during treatment would offer the possibility of developing alternative therapeutic strategies aimed at overcoming resistance.

The primary objective of the present study is to verify the match between molecular profiling obtained by liquid biopsy versus that obtained by genomic sequencing on tumor tissue (gold standard) in patients with advanced thyroid carcinoma who are candidates for systemic therapy.

The secondary objectives of this study are as follows:

  • identification of circulating biomarkers predictive of response to cancer treatment useful for selecting patients with iodine-resistant metastatic disease for initiation of systemic therapy by profiling on peripheral blood;
  • identification of additional molecular events, expression of polyclonal disease evolution, that may represent new therapeutic targets.

The study is interventional low-risk, tissue-based, prospective, single-center study.

For each patient enrolled in the present study, 4 EDTA tubes of peripheral blood will be collected to be used to obtain molecular profiling during scheduled laboratory controls as per normal clinical practice according to the following time schedule:

  • T0 = basal collection before initiation of systemic treatment;
  • T1 = sampling at 1 month after the start of systemic treatment;
  • T2 = sampling at 3 months (+/- 1 month) after the start of systemic treatment at the first instrumental re-evaluation of disease;
  • T3 = sampling at 6 months (+/- 1 month) from the start of systemic treatment at the time of instrumental disease reassessment;
  • T4 = sampling at the time of evidence of instrumental disease progression within 24 months of treatment initiation.

The following analyses will be conducted on the samples thus collected:

  • multigenic analysis on ccf-DNA and ccf-RNA at baseline, i.e., before the initiation of systemic treatment;
  • isolation, counting and analysis of CTCs at baseline visit
  • multigenic analysis on ccf-DNA and ccf-RNA and isolation, counting and analysis of CTCs during treatment (at + 1 month, + 3 months, + 6 months and at progression)
  • Outcome of the primary study objective: presence of gene alterations (BRAF mutations, RAS mutations, RET mutations, rearrangements of NTRK, RET, ALK, etc.) found in the two molecular profiling methods, performed on peripheral blood and tumor tissue.
  • Outcome of the study secondary objectives: early metabolic response rate assessed by fluorodeoxyglucose (FDG) CT-PET at one month of treatment; overall response rate (ORR); progression-free survival (PFS); tumor burden assessed by sum of diameters (SOD) of measurable disease according to RECIST v.1.1 criteria; isolation, count (CTC/ml) and phenotype assessment of CTCs.

The results obtained will be compared with those obtained from biomolecular profiling of disease on tumor tissue that is already available as per clinical practice.

Who can participate

Healthy volunteers accepted: No

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

Inclusion criteria

  • Signed written informed consent,
  • Adult (≥18 years) male or female patients
  • Histologic diagnosis of advanced thyroid carcinoma confirmed at centralized review,
  • well-differentiated thyroid carcinomas, medullary thyroid carcinomas, anaplastic thyroid carcinomas, advanced, candidates for initiation of systemic medical therapy,
  • Availability of biomolecular profiling performed by multigenic NGS panel on tumor tissue,
  • Measurable disease by conventional imaging adopted in clinical practice (total body CT with mdc, CT-PET with FDG or F-DOPA).

Exclusion criteria

  • Patients already receiving previous lines of systemic therapy,
  • Patients not eligible for systemic therapy.

Treatment and study plan

4 EDTA tubes of peripheral blood for Multigene analysis on ccf-DNA and ccf-RNA

Diagnostic Test

For each patient enrolled in the present study, 4 EDTA tubes of peripheral blood will be collected to be used to obtain molecular profiling during scheduled laboratory controls as per normal clinical practice according to the following time schedule:

  • T0 = basal collection before initiation of systemic treatment;
  • T1 = sampling at 1 month after the start of systemic treatment;
  • T2 = sampling at 3 months (+/- 1 month) after the start of systemic treatment at the first instrumental re-evaluation of disease;
  • T3 = sampling at 6 months (+/- 1 month) from the start of systemic treatment at the time of instrumental disease reassessment;
  • T4 = sampling at the time of evidence of instrumental disease progression within 24 months of treatment initiation.

The following analyses will be conducted on the samples thus collected:

  • multigenic analysis on ccf-DNA and ccf-RNA at baseline, i.e., before the initiation of systemic treatment;
  • isolation, counting and analysis of CTCs at baseline vi

Primary outcomes

  1. Genomic alterations

    Time frame: Before the start of pharmacologic treatment and after 30 days and 3, 6 and 24 months after the start of treatment

    Presence of BRAF mutations, RAS mutations, RET mutations, rearrangements of NTRK, RET, ALK, etc. in ccf-DNA, ccf-RNA and Circulating Tumour Cells (CTCs)

Secondary outcomes

  1. Early metabolic response rate

    Time frame: 30 days from the start of pharmacologic treatment

    Early metabolic response rate evaluated by FDG-PET

  2. Overall response rate (ORR)

    Time frame: Throughout the study duration, an average of 24 months

    Rate of clinical response

  3. Progression-free survival (PFS)

    Time frame: Throughout the study duration, an average of 24 months

    Progression-free survival (PFS) assessed throughout the study

  4. Tumour load

    Time frame: Throughout the study duration, an average of 24 months

    Calculated as sum of diameters (SOD) of measurable disease according to RECIST v.1.1 criteria

  5. Number of Circulatin Tumour cells (CTC) (CTC/ml)

    Time frame: Before the start of pharmacologic treatment and after 30 days and 3, 6 and 24 months after the start of treatment

    CTC number expressed as CTC/ml

  6. Circulatin Tumour Cells phenotype

    Time frame: Before the start of pharmacologic treatment and after 30 days and 3, 6 and 24 months after the start of treatment

    Description of the CTC phenotype

Study contacts

Contact information is provided by the study sponsor or research team.

Margherita Nannini

CONTACT

[email protected]

+390512142207

Maria Abbondanza Pantaleo

CONTACT

[email protected]

+390512142208

Sponsors and collaborators

Lead sponsor

IRCCS Azienda Ospedaliero-Universitaria di Bologna

Other

Registry information

Important dates

Study start
2022
Primary completion
2026
Study completion
2027
First posted
Mar 7, 2025
Registry last updated
Mar 7, 2025

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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