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  1. Article ; Online: Hydroelectric actuator for 3-dimensional analysis of electrophoretic and dielectrophoretic behavior of cancer cells; suitable in diagnosis and invasion studies.

    Moharamipour, Shima / Aminifar, Mina / Foroughi-Gilvaee, Mohammad Reza / Faranoush, Pooya / Mahdavi, Reihane / Abadijoo, Hamed / Parniani, Mohammad / Abbasvandi, Fereshteh / Mansouri, Sepideh / Abdolahad, Mohammad

    Biomaterials advances

    2023  Volume 151, Page(s) 213476

    Abstract: Cancer is a cellular-based disease, so cytological diagnosis is one of the main challenges for its early detection. An extensive number of diagnostic methods have been developed to separate cancerous cells from normal ones, in electrical methods attract ... ...

    Abstract Cancer is a cellular-based disease, so cytological diagnosis is one of the main challenges for its early detection. An extensive number of diagnostic methods have been developed to separate cancerous cells from normal ones, in electrical methods attract progressive attention. Identifying and specifying different cells requires understanding their dielectric and electric properties. This study evaluated MDA-MB-231, HUVEC, and MCF-10A cell lines, WBCs isolated from blood, and patient-derived cell samples with a cylindrical body with two transparent FTO (fluorine-doped tin oxide) plate electrodes. Cell mobility rates were recorded in response to these stimuli. It was observed that cancer cells demonstrate drastic changes in their motility in the presence and absence of an electric field (DC/AC). Also, solution viscosity's effect on cancer cells' capturing efficacy was evaluated. This research's main distinguished specification uses a non-microfluidic platform to detect and pathologically evaluate cytological samples with a simple, cheap, and repeatable platform. The capturing procedure was carried out on a cytological slide without any complicated electrode patterning with the ability of cytological staining. Moreover, this platform successfully designed and experimented with the invasion assay (the ability of captured cancer cells to invade normal cells).
    MeSH term(s) Electrophoresis/instrumentation ; Electrophoresis/methods ; Neoplasms/diagnosis ; Neoplasms/pathology ; Neoplasm Invasiveness ; Electrodes ; Humans ; Cell Line, Tumor ; Printing, Three-Dimensional ; Cell Separation ; Cell Hypoxia ; Cell Migration Assays
    Language English
    Publishing date 2023-05-31
    Publishing country Netherlands
    Document type Journal Article
    ISSN 2772-9508
    ISSN (online) 2772-9508
    DOI 10.1016/j.bioadv.2023.213476
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  2. Article ; Online: Electrochemical measuring of reactive oxygen species levels in the blood to detect ratio of high-density neutrophils, suitable to alarm presence of cancer in suspicious cases.

    Miripour, Zohreh Sadat / Aminifar, Mina / Akbari, Mohammad Esmaeil / Abbasvandi, Fereshteh / Miraghaie, Seyyed Hossein / Hoseinpour, Parisa / Javadi, Mohammad Reza / Dabbagh, Najmeh / Mohajerzadeh, Leily / Aghdam, Maryam Kazemi / Shamsian, Shahin / Sanati, Hassan / Abdolahad, Mohammad

    Journal of pharmaceutical and biomedical analysis

    2021  Volume 209, Page(s) 114488

    Abstract: Here for the first time, a real-time electrochemical assay on unprocessed blood was designed to detect the presence of cancer in patients. The system has been based on the recently approved pathway, which indicates that the abundance of immature and ... ...

    Abstract Here for the first time, a real-time electrochemical assay on unprocessed blood was designed to detect the presence of cancer in patients. The system has been based on the recently approved pathway, which indicates that the abundance of immature and mature low-density neutrophils (LDNs) with reduced ROS production in peripheral blood is increased with the presence of active cancer tumors. Reduced ROS/H
    MeSH term(s) Humans ; Hydrogen Peroxide ; Neoplasms/diagnosis ; Neutrophils ; Reactive Oxygen Species
    Chemical Substances Reactive Oxygen Species ; Hydrogen Peroxide (BBX060AN9V)
    Language English
    Publishing date 2021-11-29
    Publishing country England
    Document type Journal Article
    ZDB-ID 604917-5
    ISSN 1873-264X ; 0731-7085
    ISSN (online) 1873-264X
    ISSN 0731-7085
    DOI 10.1016/j.jpba.2021.114488
    Database MEDical Literature Analysis and Retrieval System OnLINE

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