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    Tumor reversion: a dream or a reality.

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    Date
    2021-11-01
    Author
    Tripathi, Avantika
    Kashyap, Anjali
    Tripathi, Greesham
    Yadav, Joni
    Bibban, Rakhi
    Aggarwal, Nikita
    Thakur, Kulbhushan
    Chhokar, Arun
    Jadli, Mohit
    Sah, Ashok Kumar
    Verma, Yeshvandra
    Zayed, Hatem
    Husain, Amjad
    Bharti, Alok Chandra
    Kashyap, Manoj Kumar
    ...show more authors ...show less authors
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    Abstract
    Reversion of tumor to a normal differentiated cell once considered a dream is now at the brink of becoming a reality. Different layers of molecules/events such as microRNAs, transcription factors, alternative RNA splicing, post-transcriptional, post-translational modifications, availability of proteomics, genomics editing tools, and chemical biology approaches gave hope to manipulation of cancer cells reversion to a normal cell phenotype as evidences are subtle but definitive. Regardless of the advancement, there is a long way to go, as customized techniques are required to be fine-tuned with precision to attain more insights into tumor reversion. Tumor regression models using available genome-editing methods, followed by in vitro and in vivo proteomics profiling techniques show early evidence. This review summarizes tumor reversion developments, present issues, and unaddressed challenges that remained in the uncharted territory to modulate cellular machinery for tumor reversion towards therapeutic purposes successfully. Ongoing research reaffirms the potential promises of understanding the mechanism of tumor reversion and required refinement that is warranted in vitro and in vivo models of tumor reversion, and the potential translation of these into cancer therapy. Furthermore, therapeutic compounds were reported to induce phenotypic changes in cancer cells into normal cells, which will contribute in understanding the mechanism of tumor reversion. Altogether, the efforts collectively suggest that tumor reversion will likely reveal a new wave of therapeutic discoveries that will significantly impact clinical practice in cancer therapy.
    DOI/handle
    http://dx.doi.org/10.1186/s40364-021-00280-1
    http://hdl.handle.net/10576/25009
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    • Biomedical Sciences [‎796‎ items ]

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