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Audit of Targeted Sentinel Node Biopsy (TSNB) in Patients With Limited Nodal Disease Undergoing Primary Surgery

Sponsor: University Hospitals of Derby and Burton NHS Foundation Trust

NCT ID: NCT07085442

View on ClinicalTrials.gov ↗

At a glance

What the study gets you
Health checks and monitoring — no treatment given
Type of study
Observational (no treatment given)
Time in hospital
In-person visits at study sites — visit count not specified by the sponsor
Drug or intervention
Targeted Sentinel Node Biopsy (TSNB) (procedure)
How long the study runs
Study runs about 107 months (dates as stated)
About the drug or intervention
Targeted Sentinel Node Biopsy (TSNB) — procedure: Targeted Sentinel Node Biopsy will be performed according to routine local practice.
Patient visit burden
Not specified by the sponsor
Type of study
Observing health over time
Ages
18 Years and over
Who
All
Number of participants
400
Started
2025-01-17
Last checked
2026-09

Plain English Summary

What is this study?

  • • Testing a new treatment for breast cancer
  • • Clinical study - 400 participants
  • • Axillary ultrasound scan (AUS) is routinely employed in the UK for preoperative axillary staging and can diagnose approximately 50 - 80% of node positive patients when combined with percutaneous needle biopsy techniques (either core-biopsy or fine-needle aspiration cytology)

Who can take part?

  • • Ages 18 Years and over
  • • Diagnosed with breast cancer

Where?

  • • Burnley - Burnley General Teaching Hospital
  • • Cambridge - Addenbrooke's Hospital
  • • Derby - University Hospitals of Derby and Burton
  • • Glasgow - Gartnavel General Hospital
  • • +8 more UK sites

This is a simplified summary. Always discuss with your doctor before making any decisions.

About This Trial

Axillary ultrasound scan (AUS) is routinely employed in the UK for preoperative axillary staging and can diagnose approximately 50 - 80% of node positive patients when combined with percutaneous needle biopsy techniques (either core-biopsy or fine-needle aspiration cytology). It is recognised that nodal burden is generally higher in clinically node negative patients with abnormal nodes on AUS and confirmed on needle-biopsy to be histologically positive than patients diagnosed as node positive on sentinel node biopsy (SNB). However, up to 40% of biopsy-proven node positive patients are found to have fewer than 3 involved nodes on subsequent axillary lymph node dissection (ALND) and are potential candidates for less extensive axillary surgery with axillary radiotherapy (ART) rather than ALND. The total number of abnormal nodes on ultrasound is a key predictor of overall nodal tumour burden. The AMAROS and OTOASOR trials randomised patients with up to 2 positive sentinel nodes to either ALND or ART. These trials were conducted around the turn of the millennium and before routine use of AUS and therefore would have included a significant number of patients who were radiologically node positive (cN1). Likewise, the ACOSOG Z0011 trial that randomised a similar group of patients to either ALND or observation only, did not incorporate routine AUS and would have included some (radiological) cN1 patients. These trials revealed no adverse impact on disease-free or overall survival from omission of completion ALND. Targeted axillary dissection (TAD) was introduced a few years ago to reduce the false negative rate of SNB following neoadjuvant chemotherapy (NACT) and has been standardised as part of the ongoing ATNEC trial \[ClinicalTrials.govNCT04109079\]. This technique for axillary staging after NACT is increasingly being adopted in the UK and elsewhere. TAD is technically more straightforward and less challenging in patients undergoing primary surgery with no concerns about clip migration consequent to nodal shrinkage as part of treatment response to NACT. Furthermore, the risk of under-treating the axilla is offset by the protocol: if no disease is identified in the targeted nodes (false-negative case), then patients proceed to ALND, thereby ensuring adequate treatment. Unlike TAD following NACT, the presence of viable tumour within the sampled nodes is mandatory and finding fibrosis is irrelevant except as a response to nodal biopsy per se. Current ASCO guidelines support both SNB and TAD as staging options for patients with ultrasound-detected, biopsy-confirmed nodal disease. The Edinburgh randomised trials comparing four-node sampling with ALND demonstrated significantly lower arm morbidity with node sampling, supporting TAD as a less morbid appropriate alternative in this patient population. The UK-ANZ POSNOC trial randomised 1,900 patients with \<3 macrometastases to either no further axillary treatment or additional axillary treatment. The study included cN1 patients with biopsy-confirmed nodal metastases who underwent sentinel node biopsy or TAD. Patients with \<3 macrometastases on final histology were randomised to receive no further axillary treatment or proceed with additional axillary treatment (ALND or ART). POSNOC trial will answer whether further axillary treatment provides any benefit in patients with low volume nodal disease on SNB or TAD. Notably, patients with biopsy-confirmed metastases and \<3 macrometastases on SNB/TAD are biologically and clinically similar to patients with normal AUS who are later found to have low-volume disease on SNB. Clinical decision-making and patient outcomes are driven by tumour biology and overall disease burden rather than the method of nodal disease detection. Furthermore, AUS sensitivity is operator dependent and whether FNA or core biopsy was used to sample the node. A patient considered node negative on AUS by one radiologist may be diagnosed with core biopsy confirmed nodal metastases with another radiologist. Pending the results of POSNOC trial, patients with less than 3 macrometastases are generally advised further axillary treatment, and ART is preferred over ALND to reduce the risk of lymphoedema. NodeSMART is a prospective audit collecting data on patients undergoing TAD in the primary surgery setting. Its goal is to audit surgical outcomes and benchmark them against - a) Comparing technical outcomes with those from sentinel node biopsy in the primary surgery setting and TAD performed after neoadjuvant chemotherapy. b) Assessing rates of arm lymphoedema and disease progression relative to findings from the AMAROS and Z11 trials, and the POSNOC trial once results are available. The term "Targeted Axillary Dissection" is somewhat misleading in this context, as the marked (biopsied) node is removed alongside sentinel nodes - not in isolation. NodeSMART therefore refers to the procedure more accurately as Targeted Sentinel Node Biopsy (TSNB).

More detail

Guidelines for node marking: Node marking is recommended for NodeSMART but not mandatory. Sites are advised to follow the same standards for node marking used in the ongoing ATNEC breast cancer trial. At least three nodes should be removed to allow adequate assessment of nodal tumour burden. Timing: The node may be marked at the time of needle biopsy or at a separate visit. Technique: Node may be marked using any technique e.g. clip or coil (with or without skin mark), black dye, magnetic seeds or reflector. Black dye node marking: Inject 0.2-0.4 ml of black dye into the cortex of the node Do not inject around the node or into the needle tract If the marked node is not found or if multiple black nodes are identified the surgeon may stop once a total of four nodes have been removed Single vs multiple node marking: It is not necessary to mark more than one node, even if multiple nodes are biopsied or appear malignant. The most abnormal-appearing node should be marked.

Breast CancerAxillary Lymph Nodes DissectionAxillary MetastasesSentinel Lymph Node Biopsy (SLNB)Node Positive Breast CancerAxilla; BreastAxillary Ultrasound

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What we know so far

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Preliminary match based on your answers. Full eligibility requires on-site assessment including medical history, physical exam, and lab tests. This does not guarantee enrolment.

Eligibility at a Glance

Key info

  • Age: 18 Years and over
  • Who can join: All genders

What the study is looking for

  • ✓cT1-2N1M0 breast cancer\*
  • ✓FNA or core biopsy confirmed axillary nodal metastases
  • ✓≤2 abnormal nodes on imaging
  • ✓Undergo a dual tracer or single tracer sentinel node biopsy along with removal of the marked node (Targeted Sentinel...
  • ✓1 or 2 macrometastases identified in the removed nodes, with at least three nodes removed

Who cannot take part

  • ✗before surgery drug treatment
  • ✗Previous ipsilateral axillary lymph node dissection
  • ✗cT3-4 breast cancer
  • ✗≥3 abnormal nodes on imaging
See the full criteria
Inclusion Criteria: * cT1-2N1M0 breast cancer\* * FNA or core biopsy confirmed axillary nodal metastases * ≤2 abnormal nodes on imaging * Undergo a dual tracer or single tracer sentinel node biopsy along with removal of the marked node (Targeted Sentinel Node Biopsy, TSNB) * 1 or 2 macrometastases identified in the removed nodes, with at least three nodes removed * If the sentinel node(s) cannot be localised on SNB: axillary node sampling should be performed, the patient will be eligible if 1 or 2 macrometastases are identified in the removed nodes, with at least three nodes removed. * If the node is not marked or the marked node is not removed, the patient will be eligible if 1 or 2 macrometastases are identified in the removed nodes, with at least three nodes removed‡. * patients with T3 tumours on post-operative histology will remain eligible. For multifocal/multicentric tumours, the T stage is based on the size of the largest invasive tumour focus rather than the combined size of all tumours. * If \<3 lymph nodes are identified on histology, patient will remain in the NodeSMART registry. The decision regarding any further axillary treatment will be made by the treating MDT and recorded in the registry. Exclusion Criteria: * Neoadjuvant chemotherapy * Previous ipsilateral axillary lymph node dissection * cT3-4 breast cancer * ≥3 abnormal nodes on imaging

Where Is This Study? (12 UK sites)

Burnley General Teaching Hospital

Burnley, United Kingdom

Recruiting
Site contact (verified)
Inder KumarPrincipal Investigator

Addenbrooke's Hospital

Cambridge, United Kingdom

Recruiting
Site contact (verified)
Eleftheria KleidiPrincipal Investigator
Eleftheria Kleidieleftheria.kleidi@nhs.net

University Hospitals of Derby and Burton

Derby, United Kingdom

Recruiting
Site contact (verified)
Emanuele GarreffaPrincipal Investigator
Emanuele Garreffaemanuele.garreffa@nhs.net

Gartnavel General Hospital

Glasgow, United Kingdom

Recruiting
Site contact (verified)
Laszlo RomicsPrincipal Investigator

Wycombe Hospital

High Wycombe HP11 2TT, United Kingdom

Recruiting
Site contact (verified)
Fiona Tsang-WrightPrincipal Investigator
Fiona Tsang-Wrightfiona.tsangwright@nhs.net

Liverpool University Hospitals NHS Foundation Trust

Liverpool, United Kingdom

Recruiting
Site contact (verified)
Julia HendersonPrincipal Investigator

Royal Alexandra Hospital

Paisley, United Kingdom

Recruiting
Site contact (verified)
Laura ArthurPrincipal Investigator

The Shrewsbury and Telford Hospital NHS Trust

Shrewsbury, United Kingdom

Recruiting
Site contact (verified)
Kaustuv DasPrincipal Investigator

Mersey and West Lancashire Teaching Hospitals

St Helens, United Kingdom

Recruiting
Site contact (verified)
Leena ChaglaPrincipal Investigator

University Hospital of North Tees and Hartlepool

Stockton-on-Tees, United Kingdom

Recruiting
Site contact (verified)
Rebecca WilsonPrincipal Investigator

Warrington and Halton Teaching Hospitals

Warrington, United Kingdom

Recruiting
Site contact (verified)
Hudhaifah ShakerPrincipal Investigator
Hudhaifah Shakerh.shaker@nhs.net

The Royal Wolverhampton NHS Trust

Wolverhampton WV10 0QP, United Kingdom

Recruiting
Site contact (verified)
Senthurun MylvaganamPrincipal Investigator

How to Get in Touch

Amit Goyal

Sponsor contact

CONTACT

01332 786958 amit.goyal@nhs.net
Data sourced from ClinicalTrials.gov · Last verified: 2026-09