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Black tea bioactive phytoconstituents realign NRF2 for anticancer activity in lung adenocarcinoma
Suchisnigdha Datta1, Anupam Bishayee2, Dona Sinha1
1Department of Receptor Biology and Tumor Metastasis, Chittaranjan National Cancer Institute, Kolkata, West Bengal, India.
Abstract:
Constitutive activation of nuclear factor erythroid 2-related factor 2 (NRF2) is pivotal in bestowing therapy resistance in cancer cells. Several phytochemicals have been reported with the potential of modulating NRF2. Therefore, it was hypothesized that NRF2-deregulated chemoresistance in lung adenocarcinoma (LUAD) may be counteracted by theaflavin-rich black tea (BT). A non-responsive LUAD cell line, A549, was the best sensitized towards cisplatin upon pre-treatment with BT. BT-mediated NRF2 reorientation was observed to be dependent on concentration and duration of treatment as well as on the mutational profile of NRF2 in A549 cells. Transient exposure of low-concentration BT hormetically downregulated NRF2, its downstream antioxidants, and drug transporter. BT also influenced the Kelch-like ECH-associated protein (KEAP1)-dependent cullin 3 (Cul3) and KEAP-1-independent signaling through epidermal growth factor receptor (EGFR) - rat sarcoma virus (RAS) - rapidly accelerated fibrosarcoma (RAF) - extracellular signal-regulated kinase 1/2 (ERK) - matrix metalloproteinase (MMP)-2 and MMP-9. The realignment of NRF2 in KEAP1-suppressed A549 cells enhanced the chemotherapeutic outcome. But a higher concentration of the same BT surprisingly upregulated NRF2 and its transcriptional targets with a subsequent decrease in the NRF2-regulatory machinery in NCI-H23 cells (a KEAP1-overexpressed LUAD cell line), ultimately resulting in a better anticancer response. The BT-mediated bidirectional NRF2 modulation was reconfirmed upon comparison with the action of a pharmacological NRF2 inhibitor, ML-385, in A549 and a known NRF2 activator, tertiary-butylhydroquinone, in NCI-H23 respectively. BT-mediated regulation of NRF2-KEAP1 and their upstream networks (EGFR/RAS/RAF/ERK) sufficed as a better anticancer agent than synthetic NRF2 modulators. Therefore, BT may be indicated as a potent multi-modal small molecule for increasing drug responsiveness in LUAD cells by maintaining NRF2/KEAP1 axis at an optimum level.
Insights
Black tea (BT) modulates the nuclear factor erythroid 2-related factor 2 (NRF2) pathway, enhancing chemotherapy effectiveness in lung adenocarcinoma (LUAD). This phytochemical approach offers a multi-modal strategy for improving drug response in cancer treatment.
Area of Science:
- Molecular Oncology
- Cancer Pharmacology
- Phytochemical Research
Background:
- Constitutive activation of nuclear factor erythroid 2-related factor 2 (NRF2) is a key mechanism of therapy resistance in cancer cells.
- Phytochemicals, including those found in black tea (BT), have shown potential in modulating NRF2 activity.
- Lung adenocarcinoma (LUAD) often exhibits NRF2-deregulated chemoresistance, necessitating novel therapeutic strategies.
Purpose of the Study:
- To investigate the hypothesis that NRF2-deregulated chemoresistance in LUAD can be counteracted by theaflavin-rich black tea (BT).
- To elucidate the mechanisms of BT-mediated NRF2 modulation in different LUAD cell lines with varying NRF2/KEAP1 profiles.
- To evaluate the potential of BT as a multi-modal agent for enhancing chemosensitivity in LUAD.
Main Methods:
- Treatment of LUAD cell lines (A549 and NCI-H23) with BT at varying concentrations and durations.
- Assessment of NRF2 expression, downstream targets, and related signaling pathways (KEAP1, EGFR, RAS, RAF, ERK, MMPs).
- Comparative analysis with pharmacological NRF2 inhibitor (ML-385) and activator (tertiary-butylhydroquinone).
Main Results:
- BT pre-treatment sensitized A549 cells (NRF2-mutated) to cisplatin by hormetically downregulating NRF2 and its targets.
- BT exhibited bidirectional NRF2 modulation: low concentrations downregulated NRF2 in A549, while higher concentrations upregulated NRF2 in NCI-H23 (KEAP1-overexpressed).
- BT influenced both KEAP1-dependent and KEAP1-independent signaling pathways, including the EGFR/RAS/RAF/ERK axis.
Conclusions:
- Black tea (BT) demonstrates a potent, multi-modal capacity to modulate the NRF2/KEAP1 axis in LUAD cells.
- BT-mediated bidirectional regulation of NRF2 can enhance chemotherapeutic outcomes by optimizing NRF2 pathway activity.
- BT represents a promising natural compound for improving drug responsiveness in LUAD, potentially serving as a superior anticancer agent compared to synthetic modulators.
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