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◆ ACS Applied Electronic Materials2026-03-05· Cancer

Advances in Volatile Organic Compounds-Based Biomarker Detection Using Nanomaterial-Integrated Sensor Platforms for Cancer Diagnosis

Swati Checker, Aniruddh Bahadur Yadav, G. V. Sivnath Reddy, Rahul Checker

原始摘要(英文原文)· Original abstract
Volatile organic compounds (VOCs) in exhaled breath have been reflected in many human diseases, including cancers. Cancerous cells produce several VOCs composed of hydrogen, oxygen, and carbon due to specific biological processes such as oxidative stress and inflammation. These VOCs are currently used as biomarkers for the early diagnosis of different cancers to improve the survival rate. Numerous electronic devices have been employed to classify these VOCs, for example, transistors, diodes, and other nanomaterial-based sensors. The need to develop diagnostic and detection methodologies for an increasing number of clinical challenges is escalating each year. In this review, we present a concise yet informative overview of the recent advancements in nanosensors and the use of VOCs for cancer diagnosis. VOCs found in exhaled breath have shown promising results as biomarkers for various cancer types. Advancement in colorimetric sensor array technology, functionalized gold nanoparticles, surface acoustic wave sensors, breath collection methods, and clinical phenotyping has significantly enhanced the accuracy of breath-based biomarkers. Nanomaterials are ideal for such sensor arrays due to ease of fabrication, chemical versatility, and compatibility with currently available sensing platforms. Following a general introduction and background of VOCs, we provide a brief description of VOC-related disease mechanisms. We then focus on volatile biomarkers identified in different types of cancer and the detection of VOC-related biomarkers using both selective and cross-reactive sensing approaches. These approaches utilize mechanical, chemical, and optical transducers incorporating the most relevant classes of nanomaterials. We conclude with a discussion on the potential integration of various nanomaterials into sensor arrays along with anticipated outcomes and current limitations.
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