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Updated: Feb 3, 2026

Anticancer Efficacy of Photodynamic Therapy with Lung Cancer-Targeted Nanoparticles
Published on: December 1, 2016
Stress and interferon signalling-mediated apoptosis contributes to pleiotropic anticancer responses induced by
Ashwini Zolekar1, Victor J T Lin1, Nigam M Mishra1
1Department of Pharmaceutical Sciences, UNT System College of Pharmacy, University of North Texas Health Science Center, Fort Worth, TX, USA.
Background:
Although NGLY1 is known as a pivotal enzyme that catalyses the deglycosylation of denatured glycoproteins, information regarding the responses of human cancer and normal cells to NGLY1 suppression is limited.
Methods:
We examined how NGLY1 expression affects viability, tumour growth, and responses to therapeutic agents in melanoma cells and an animal model. Molecular mechanisms contributing to NGLY1 suppression-induced anticancer responses were revealed by systems biology and chemical biology studies. Using computational and medicinal chemistry-assisted approaches, we established novel NGLY1-inhibitory small molecules.
Results:
Compared with normal cells, NGLY1 was upregulated in melanoma cell lines and patient tumours. NGLY1 knockdown caused melanoma cell death and tumour growth retardation. Targeting NGLY1 induced pleiotropic responses, predominantly stress signalling-associated apoptosis and cytokine surges, which synergise with the anti-melanoma activity of chemotherapy and targeted therapy agents. Pharmacological and molecular biology tools that inactivate NGLY1 elicited highly similar responses in melanoma cells. Unlike normal cells, melanoma cells presented distinct responses and high vulnerability to NGLY1 suppression.
Conclusion:
Our work demonstrated the significance of NGLY1 in melanoma cells, provided mechanistic insights into how NGLY1 inactivation leads to eradication of melanoma with limited impact on normal cells, and suggested that targeting NGLY1 represents a novel anti-melanoma strategy.
Insights
N-linked glycanase 1 (NGLY1) is upregulated in melanoma. Suppressing NGLY1 causes cancer cell death and tumor growth inhibition, offering a new melanoma treatment strategy with minimal effects on normal cells.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- N-linked glycanase 1 (NGLY1) is a key enzyme in deglycosylation.
- Limited data exists on NGLY1 suppression effects in human cancer and normal cells.
Purpose of the Study:
- To investigate the impact of NGLY1 suppression on melanoma cell viability and tumor growth.
- To explore the molecular mechanisms behind NGLY1 suppression-induced anticancer responses.
- To develop novel NGLY1 inhibitors.
Main Methods:
- Analysis of NGLY1 expression in melanoma cell lines and patient tumors.
- NGLY1 knockdown studies in melanoma models.
- Systems biology and chemical biology approaches.
- Development of NGLY1-inhibitory small molecules using computational and medicinal chemistry.
Main Results:
- NGLY1 is upregulated in melanoma compared to normal cells.
- NGLY1 knockdown leads to melanoma cell death and suppressed tumor growth.
- Targeting NGLY1 induces apoptosis and cytokine release, synergizing with existing therapies.
- Melanoma cells show unique vulnerability to NGLY1 suppression.
Conclusions:
- NGLY1 plays a significant role in melanoma.
- NGLY1 inactivation eradicates melanoma with limited impact on normal cells.
- Targeting NGLY1 presents a novel therapeutic strategy for melanoma.
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