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Article type: Review Article
Authors: Alamoudi, Abdullah O.
Affiliations: Department of Radiological Sciences and Medical Imaging, College of Applied Medical Sciences, Majmaah University, Almajmaah-11953, Kingdom of Saudi Arabia | Tel.: +966 561599222; E-mails: [email protected] and [email protected]
Correspondence: [*] Corresponding author: Department of Radiological Sciences and Medical Imaging, College of Applied Medical Sciences, Majmaah University, Almajmaah-11953, Kingdom of Saudi Arabia. Tel.: +966 561599222; E-mails: [email protected] and [email protected].
Abstract: At present, cancer is a major health issue and the second leading cause of mortality worldwide. Researchers have been working hard on investigating not only improved therapeutics but also on early detection methods, both critical to increasing treatment efficacy and developing methods for disease prevention. Diagnosis of cancers at an early stage can promote timely medical intervention and effective treatment and will result in inhibiting tumor growth and development. Several advances have been made in the diagnostics and imagining technologies for early tumor detection and deciding an effective therapy these include radiomics, nanobodies, and aptamers. Here in this review, we summarize the main applications of radiomics, aptamers, and the use of nanobody-based probes for molecular imaging applications in diagnosis, treatment planning, and evaluations in the field of oncology to develop quantitative and personalized medicine. The preclinical data reported to date are quite promising, and it is predicted that nanobody-based molecular imaging agents will play an important role in the diagnosis and management of different cancer types in near future.
Keywords: Radiomics, medical images, PET, SPECT, nanobody, aptamers, probes, antibody, cancer
DOI: 10.3233/HAB-200436
Journal: Human Antibodies, vol. 29, no. 1, pp. 1-15, 2021
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