Literature DB >> 25164250

Thymoquinone restores radiation-induced TGF-β expression and abrogates EMT in chemoradiotherapy of breast cancer cells.

Shashi Rajput1, B N Prashanth Kumar, Payel Banik, Sheetal Parida, Mahitosh Mandal.   

Abstract

Radiotherapy remains a prime approach to adjuvant therapies in patients with early and advanced breast cancer. In spite of therapeutic success, metastatic progression in patients undergoing therapy, limits its application. However, effective therapeutic strategies to understand the cellular and molecular machinery in inhibiting radiation-induced metastatic progression, which is poorly understood so far, need to be strengthened. Ionizing radiation was known to prompt cancer cell's metastatic ability by eliciting Transforming Growth Factor-beta (TGF-β), a key regulator in epithelial-mesenchymal transdifferentiation and radio-resistance. In this viewpoint, we employed thymoquinone as a radiosensitizer to investigate its migration and invasion reversal abilities in irradiated breast cancer cell lines by assessing their respective attributes. The role of metastasis regulatory molecules like TGF-β, E-cadherin, and integrin αV and its downstream molecules were determined using RT-PCR, western blotting, immunofluorescence, and extracellular TGF-β levels affirmed through ELISA assays. These studies affirmed the TGF-β restoring ability of thymoquinone in radiation-driven migration and invasion. Also, results demonstrated that the epithelial markers E-cadherin and cytokeratin 19 were downregulated whereas mesenchymal markers like integrin αV, MMP9, and MMP2 were upregulated by irradiation treatment; however thymoquinone pre-sensitization has reverted the expression of these proteins back to control proteins expression. Here, paclitaxel was chosen as an apoptosis inducer in TGF-β restored cells and confirmed its cytotoxic effects in radiation alone and thymoquinone sensitized irradiated cells. We conclude that this therapeutic modality is effective in preventing radiation-induced epithelial-mesenchymal transdifferentiation and concomitant induction of apoptosis in breast cancer.
© 2014 Wiley Periodicals, Inc., A Wiley Company.

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Year:  2015        PMID: 25164250     DOI: 10.1002/jcp.24780

Source DB:  PubMed          Journal:  J Cell Physiol        ISSN: 0021-9541            Impact factor:   6.384


  16 in total

1.  The effect of thymoquinone on the renal functions following ischemia-reperfusion injury in the rat.

Authors:  Fayez T Hammad; Loay Lubbad
Journal:  Int J Physiol Pathophysiol Pharmacol       Date:  2016-12-25

2.  Thymoquinone potentiates chemoprotective effect of Vitamin D3 against colon cancer: a pre-clinical finding.

Authors:  Amr M Mohamed; Bassem A Refaat; Adel G El-Shemi; Osama A Kensara; Jawwad Ahmad; Shakir Idris
Journal:  Am J Transl Res       Date:  2017-02-15       Impact factor: 4.060

3.  The combination of thymoquinone and paclitaxel shows anti-tumor activity through the interplay with apoptosis network in triple-negative breast cancer.

Authors:  Çağrı Şakalar; Kenan İzgi; Banu İskender; Sedat Sezen; Huriye Aksu; Mustafa Çakır; Büşra Kurt; Ali Turan; Halit Canatan
Journal:  Tumour Biol       Date:  2015-10-26

Review 4.  Thymoquinone as a Potential Adjuvant Therapy for Cancer Treatment: Evidence from Preclinical Studies.

Authors:  A G M Mostofa; Md Kamal Hossain; Debasish Basak; Muhammad Shahdaat Bin Sayeed
Journal:  Front Pharmacol       Date:  2017-06-12       Impact factor: 5.810

5.  Tannic Acid Induces Endoplasmic Reticulum Stress-Mediated Apoptosis in Prostate Cancer.

Authors:  Prashanth K B Nagesh; Elham Hatami; Pallabita Chowdhury; Vivek K Kashyap; Sheema Khan; Bilal B Hafeez; Subhash C Chauhan; Meena Jaggi; Murali M Yallapu
Journal:  Cancers (Basel)       Date:  2018-03-07       Impact factor: 6.639

Review 6.  Therapeutic Potential of Thymoquinone in Glioblastoma Treatment: Targeting Major Gliomagenesis Signaling Pathways.

Authors:  Fabliha Ahmed Chowdhury; Md Kamal Hossain; A G M Mostofa; Maruf Mohammad Akbor; Muhammad Shahdaat Bin Sayeed
Journal:  Biomed Res Int       Date:  2018-01-31       Impact factor: 3.411

Review 7.  Effects of radiation on the metastatic process.

Authors:  Nora Sundahl; Fréderic Duprez; Piet Ost; Wilfried De Neve; Marc Mareel
Journal:  Mol Med       Date:  2018-04-24       Impact factor: 6.354

8.  Depletion of MLKL inhibits invasion of radioresistant nasopharyngeal carcinoma cells by suppressing epithelial-mesenchymal transition.

Authors:  Yuanli Dong; Yun Sun; Yangle Huang; Xumeng Fang; Pian Sun; Bilikere Dwarakanath; Lin Kong; Jiade Jay Lu
Journal:  Ann Transl Med       Date:  2019-12

9.  miRNA-205 Nanoformulation Sensitizes Prostate Cancer Cells to Chemotherapy.

Authors:  Prashanth K B Nagesh; Pallabita Chowdhury; Elham Hatami; Vijaya K N Boya; Vivek K Kashyap; Sheema Khan; Bilal B Hafeez; Subhash C Chauhan; Meena Jaggi; Murali M Yallapu
Journal:  Cancers (Basel)       Date:  2018-08-25       Impact factor: 6.639

10.  DCST1-AS1 Promotes TGF-β-Induced Epithelial-Mesenchymal Transition and Enhances Chemoresistance in Triple-Negative Breast Cancer Cells via ANXA1.

Authors:  Li Tang; Yuli Chen; Huanhuan Chen; Pan Jiang; Linping Yan; Dongping Mo; Xun Tang; Feng Yan
Journal:  Front Oncol       Date:  2020-03-12       Impact factor: 6.244

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