Research Outputs

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Now showing 1 - 6 of 6
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    A portable blood coagulation time measurement platform with fiber-optic based disposable cartridge
    (Koç University, 2016) Yaraş, Yusuf Samet; Ürey, Hakan; 0000-0002-2031-7967; Koç University Graduate School of Sciences and Engineering; Electrical and Electronics Engineering; 8579
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    Electronics system integration and characterization of electronic skin for prosthetic applications
    (Koç University, 2024) Awais, Muhammad; Beker, Levent; 0000-0002-9777-6619; Koç University Graduate School of Sciences and Engineering; Bio-Medical Sciences and Engineering; 308798
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    Immobilization of his-tagged human kappa opioid receptor on a cantilever array biosensor for detection of narcotics in bodily fluids
    (Koç University, 2009) Özber, Natali; Kavaklı, İbrahim Halil; 0000-0001-6624-3505; Koç University Graduate School of Sciences and Engineering; Materials Science and Engineering; 40319
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    Integrated photonic studies of silicon meandering distributed feedback structures: a model system for biological ligands
    (Koç University, 2019) Chaudhry, Muhammad Rehan; Serpengüzel, Ali; 0000-0002-0676-8817; Koç University Graduate School of Sciences and Engineering; Bio-Medical Sciences and Engineering; 27855
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    Linear cavity tapered fiber sensor using phase shift cavity ring down spectroscopy
    (Koç University, 2020) Ayaz, Rana Muhammad Armaghan; Kiraz, Alper; 0000-0001-7977-1286; Koç University Graduate School of Sciences and Engineering; Bio-Medical Sciences and Engineering; 22542
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    Nanotechnology-based electrochemical biosensors for monitoring breast cancer biomarkers
    (John Wiley and Sons Inc, 2022) Nasrollahpour, Hassan; Khalilzadeh, Balal; Hasanzadeh, Mohammad; Rahbarghazi, Reza; Estrela, Pedro; Naseri, Abdolhossein; Sillanpää, Mika; Department of Mechanical Engineering; Taşoğlu, Savaş; Faculty Member; Department of Mechanical Engineering; Koç University Research Center for Translational Medicine (KUTTAM) / Koç Üniversitesi Translasyonel Tıp Araştırma Merkezi (KUTTAM); College of Engineering; 291971
    Breast cancer is categorized as the most widespread cancer type among women globally. On-time diagnosis can decrease the mortality rate by making the right decision in the therapy procedure. These features lead to a reduction in medication time and socioeconomic burden. The current review article provides a comprehensive assessment for breast cancer diagnosis using nanomaterials and related technologies. Growing use of the nano/biotechnology domain in terms of electrochemical nanobiosensor designing was discussed in detail. In this regard, recent advances in nanomaterial applied for amplified biosensing methodologies were assessed for breast cancer diagnosis by focusing on the advantages and disadvantages of these approaches. We also monitored designing methods, advantages, and the necessity of suitable (nano) materials from a statistical standpoint. The main objective of this review is to classify the applicable biosensors based on breast cancer biomarkers. With numerous nano-sized platforms published for breast cancer diagnosis, this review tried to collect the most suitable methodologies for detecting biomarkers and certain breast cancer cell types.