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A systematic review of multimodal application of quantum dots in breast cancer diagnosis: Effective parameters, status and future perspectives

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DOI: 10.1016/j.jddst.2023.104682

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Breast cancer; Nanoparticles; Quantum dots; Diagnosis

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Breast cancer is the most common malignancy among women, causing numerous deaths each year. Early detection is crucial for effective treatment and prevention of this tragedy. Nanoparticles, specifically quantum dots, have attracted attention for their superior properties in breast cancer diagnosis. This review discusses the benefits of quantum dots in non-invasive, fast, inexpensive, and precise early breast cancer imaging and detection techniques.
Breast cancer (BC) is now the greatest common malignancy type among women, and many women die from it each year. Early detection obviously is critical in this disease to effectively treat BC and prevent this tragedy. Among a numerous variety of novel diagnosis techniques that are employed to detect BC, nanoparticles (NPs) due to their superior properties have attracted the researchers' attention. Various types of NPs, both alone and in conjunction with other methods including computed tomography (CT) and magnetic resonance imaging (MRI), have been employed for improving breast cancer diagnosis. The benefits of quantum dot (QD), a novel grouping of NPs with distinctive characteristics in the fields of size, surface modification techniques, optical properties, cellular uptake, and biomedical applications, are discussed in this work. In current review, issued studies con-cerned with the use of QDs in BC diagnosis were collected in a systematic and comprehensive manner. The QDs hold promise for non-invasive, fast, inexpensive, and precise early BC imaging also detection techniques.

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