Recent Progress in Prompt Molecular Detection of Exosomes Using CRISPR/Cas and Microfluidic‐Assisted Approaches Toward Smart Cancer Diagnosis and Analysis

Author:

Mojtaba Mousavi Seyyed1,Alireza Hashemi Seyyed2,Yari Kalashgrani Masoomeh3,Rahmanian Vahid4,Riazi Mohsen3,Omidifar Navid5,Hamed Althomali Raed6,Rahman Mohammed M.7ORCID,Chiang Wei‐Hung1,Gholami Ahmad3

Affiliation:

1. Department of Chemical Engineering National Taiwan University of Science and Technology Taipei City 106335 Taiwan

2. Health Policy Research Center Health Institute Shiraz University of Medical Sciences Shiraz Iran

3. Biotechnology Research Center Shiraz University of Medical Science Shiraz 71468-64685 Iran

4. Centre of Molecular and Macromolecular Studies Polish Academy of Sciences Sienkiewicza 112 Lodz 90-363 Poland

5. Department of Pathology School of Medicine Shiraz University of Medical Sciences Shiraz Iran

6. Prince Sattam bin Abdulaziz University Alkharj Saudi Arabia

7. Center of Excellence for Advanced Materials Research (CEAMR) & Department of Chemistry Faculty of Science King Abdulaziz University P.O. Box 80203 Jeddah 21589 Saudi Arabia

Abstract

AbstractExosomes are essential indicators of molecular mechanisms involved in interacting with cancer cells and the tumor environment. As nanostructures based on lipids and nucleic acids, exosomes provide a communication pathway for information transfer by transporting biomolecules from the target cell to other cells. Importantly, these extracellular vesicles are released into the bloodstream by the most invasive cells, i. e., cancer cells; in this way, they could be considered a promising specific biomarker for cancer diagnosis. In this matter, CRISPR‐Cas systems and microfluidic approaches could be considered practical tools for cancer diagnosis and understanding cancer biology. CRISPR‐Cas systems, as a genome editing approach, provide a way to inactivate or even remove a target gene from the cell without affecting intracellular mechanisms. These practical systems provide vital information about the factors involved in cancer development that could lead to more effective cancer treatment. Meanwhile, microfluidic approaches can also significantly benefit cancer research due to their proper sensitivity, high throughput, low material consumption, low cost, and advanced spatial and temporal control. Thereby, employing CRISPR‐Cas‐ and microfluidics‐based approaches toward exosome monitoring could be considered a valuable source of information for cancer therapy and diagnosis. This review assesses the recent progress in these promising diagnosis approaches toward accurate cancer therapy and in‐depth study of cancer cell behavior.

Funder

Prince Sattam bin Abdulaziz University

Publisher

Wiley

Subject

Organic Chemistry,General Pharmacology, Toxicology and Pharmaceutics,Molecular Medicine,Drug Discovery,Biochemistry,Pharmacology

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