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Efficacy and Safety of RFA vs MWA for Treatment of Large Benign Thyroid Nodules, RCT

Comparing the Efficacy and Safety of Radiofrequency Ablation Versus Microwave Ablation for the Treatment of Large Benign Thyroid Nodules, a Randomized Controlled Trial

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07804862
Enrollment
25
Registered
2026-09-04
Start date
2023-12-05
Completion date
2027-06-30
Last updated
2026-09-04

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

Conditions

Ablation Techniques, RFA, Ablation Treatment, Benign Thyroid Nodules, Local Anaesthesia

Keywords

RFA, MWA, LA, compressive symptoms, Large benign thyroid nodules

Brief summary

We will conduct a multi-institutional randomized control trial of RFA and MWA for the primary treatment of large, benign nodules. Adult patients \>/=18 years of age who have a solitary thyroid nodule ≥20ml in volume who presents to 1) Columbia University, NY or 2) Queen Mary Hospital, Hong Kong for consultation will be eligible for enrollment in the study. They will need either a) two benign fine needle biopsies, with the most recent biopsy performed within 1 year of enrollment in study or b) one benign fine needle biopsy and low suspicion characteristics on ultrasound. Both functional and non-functional nodules are eligible. After thorough evaluation of each individual case and if the eligibility criteria are met, participants will be offered ultrasound guided thermal ablation as a viable option for management of their nodule. If they consent to undergo thermal ablation and consent to participation in the study, patients will be randomly assigned to either treatment arm a) RFA or treatment arm b) MWA according to a pre-generated block randomization list created using www.sealedenvelope.com.

Detailed description

There is an estimated 10% lifetime probability for developing a thyroid nodule. Although up to 15% of these nodules will prove to be malignant, most thyroid nodules that are identified are benign nodules. However, even benign nodules can continue to grow to a size that start to cause compressive symptoms for patients, including neck pressure and discomfort, dysphagia, dyspnea, and dysphonia. Some nodules will become autonomously functioning causing hyperthyroidism. Traditionally the gold standard treatment for these benign, but problematic nodules, has been thyroidectomy. Although generally a low risk operation, thyroidectomy is associated with some risk for recurrent laryngeal nerve injury, bleeding, infection, and need for thyroid hormone supplementation. Introduced in the early 2000s, ultrasound-guided percutaneous ablation of thyroid lesions has emerged as a potential alternative to surgery in patients with benign thyroid nodules. Of the myriad ablation methods, the most commonly used technique is radiofrequency ablation (RFA). An expanding body of evidence shows that radiofrequency ablation and other percutaneous interventions are effective treatments for benign solid thyroid nodules, toxic adenomas, and thyroid cysts resulting in overall volume reduction ranges of 40-70% with durable resolution of compressive and hyperthyroid symptoms. However, RFA is not without its limitations. Radiofrequency waves can be limited by the heat sink effect and tissue char leading to longer procedure times and potentially less optimal outcomes in larger, hypervascular, and/or more cystic nodules. Microwave ablation (MWA) is another ablative technique that uses electromagnetic energy waves to cause tissue hyperthermia and coagulative necrosis. It generally causes higher ablation temperatures than RFA and is less subject to the heat sink effect, and therefore can facilitate more efficient ablation procedures. Current evidence comparing RFA versus MWA for thyroid ablation were limited and were either retrospective or non-randomized, with focus mainly on small thyroid nodules of ≤10ml in volume. There is a lack of high quality evidence on the safety and efficacy of RFA versus MWA for the treatment of large thyroid nodules (≥20ml). Given the higher ablation temperatures, freedom from heat sink effect and no influence from impedance changes during ablation, MWA may achieve different treatment efficacy in large nodules. The aim of this randomized controlled trial is to compare the safety and efficacy of RFA and MWA in the treatment of large, benign thyroid nodules. We hypothesize that MWA is not inferior to RFA in terms of complication rate and overall volume reduction of large, benign nodules, but will also be associated with overall decrease in procedure time and procedural discomfort. Patients with large benign thyroid nodules ≥20ml will be considered for recruitment. Suitable subjects will be randomized to receive either RFA or MWA according to a pre-generated block randomization list at a 1:1 ratio. The primary outcome of is the volume reduction rate at 6 months and one year after ablation. The secondary outcomes include safety, complication rates and quality of life after both procedures.

Interventions

Ultrasound-guided thermal ablation will be performed using STARmed internally cooled RFA electrodes (18 gauge) powered by the VIVA RF generator in accordance with the 'moving shot' technique described by Baek et al. The RFA procedure uses image guidance to place an electrode through the skin into the target area. In RFA, high frequency electrical currents are passed through an electrode, creating a small region of heat to treat the lesion.

DEVICEMicrowave ablation

Ultrasound-guided thermal ablation will be performed using ECO Medical internally cooled MWA antennas (16 or 17 gauge) powered by the ECO Medical generator in accordance with the 'moving shot' technique described by Baek et al. The MWA procedure uses image guidance to place an electrode through the skin into the target area. In MWA, high frequency electromagnetic waves are passed through an electrode, creating a small region of heat to treat the lesion.

Sponsors

The University of Hong Kong
Lead SponsorOTHER
Columbia University
CollaboratorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Intervention model description

RFA of thyroid nodules can decrease nodule volume up to 75-80% from baseline at 6 months. We expect that participants who are treated with MWA will have similar nodule volume reduction and complication rates as those treated with RFA. Group sample sizes of 25 and 25 achieve 81% power to detect non-inferiority using a one-sided, two-sample equal-variance t-test. The margin of non-inferiority is -10.0. The actual difference between the means is assumed to be 0.0. The significance level (alpha) of the test is 0.050. The data are drawn from populations with a standard deviation of 13.8 in both groups.

Eligibility

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

Inclusion criteria

* who have a solitary thyroid nodule ≥20ml in volume * two benign fine needle biopsies, with the most recent biopsy performed within 1 year of enrollment in study or one benign fine needle biopsy and low suspicion characteristics on ultrasound * Both functional and non-functional nodules are eligible

Exclusion criteria

* have multiple nodules and planned simultaneous ablation * indeterminate nodules classified benign * nodules with substernal extension or posterior extension that cannot be viewed sufficiently with ultrasound * current pregnancy or cardiac arrhythmias

Design outcomes

Primary

MeasureTime frameDescription
Volume reduction rate (VRR) of thyroid nodule at 6 months and 12 months (%)6 months and 12 monthsTo measure the volume reduction rate (VRR) of thyroid nodule at 6-month and 12-month volume of nodule= length(cm) x width(cm) x depth(cm) x (π / 6 ) VRR = \[(volume at baseline - volume at 6-month or 12-month)/volume of baseline\] x 100%
Complications from procedure including vocal cord palsy, bleeding, infection, nodule rupture, skin burn12 monthsTo assess any complications from procedure during follow-up period after ablation

Secondary

MeasureTime frameDescription
Changes in compressive symptom scores (0-100)12 monthsTo measure the changes in compressive symptoms scores. Compressive symptoms score is from 0 to 100. The higher score means more compressive symptom.
Changes in cosmetic symptom scores (1-4)12 monthsTo assess the change of cosmetic symptom by experienced doctors until 12 months. Cosmetic symptoms is from 1 to 4 as below 1. = no palpable goitre 2. = Palpable goiter but invisible 3. = Goitre only visible to experienced clinician 4. = Easily visible goitre
Peri-operative pain scores (0-10)12 monthsTo measure the change in pain score before and after ablation. The pain score is from 0 to 10, the higher score means more painful.

Countries

Hong Kong

Contacts

CONTACTMan Him, Matrix Dr. Fung, MBBS
mmhfung@hku.hk+852 2255 4232

Outcome results

None listed

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