The superparamagnetic iron oxide tracer: a valid alternative in sentinel node biopsy for breast cancer treatment.

M Ghilli, E Carretta, F Di Filippo, C Battaglia, L Fustaino, I Galanou, S Di Filippo, P Rucci, M P Fantini, M Roncella

Journal: European journal of cancer care 2018;26(4):

PMID: 26365441

Abstract

The European Union has determined that from 2016 breast cancer patients should be treated in Specialist Breast Units that achieve the minimum standards for the mandatory quality indicators as defined by Eusoma. The existing standard for axillary lymph node staging in breast cancer is sentinel node biopsy (SNB), performed using Technetium-sulphur colloid ( Tc) alone or with blue dye. The major limits of radioisotope consist in the problems linked to radioactivity, in the shortage of tracer and nuclear medicine units. Among existing alternative tracers, SentiMag , which uses superparamagnetic iron oxide particles, can represent a valid option for SNB. We conducted a paired, prospective, multicentre study to evaluate the non-inferiority of SentiMag vs. Tc. The primary end point was the detection rate (DR) per patient. The study sample consists of 193 women affected by breast carcinoma with negative axillary assessment. The concordance rate per patients between Tc and SentiMag was 97.9%. The DR per patient was 99.0% for Tc and 97.9% for SentiMag . SentiMag appears to be non-inferior to the radiotracer and safe. While Tc remains the standard, SentiMag DR appears adequate after a minimum learning curve. In health care settings where nuclear medicine units are not available, SentiMag/Sienna+ allows effective treatment of breast cancer patients.

© 2015 John Wiley & Sons Ltd.

Address: Breast Cancer Center, University Hospital of Pisa, Via Roma, Pisa, Italy.; Department of Biomedical and Neuromotor Sciences, University of Bologna, Bologna, Italy.; Department of General and Breast Surgery, Regina Elena National Tumour Institute, Roma, Italy.; Breast Surgery, Sanremo Civic Hospital, Sanremo, Italy.
Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.