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Updated: Jan 27, 2026

Reconstruct Human Retinoblastoma In Vitro
Published on: October 11, 2022
The antitumor function of arctigenin in human retinoblastoma cells is mediated by jagged‑1
Ning Ke1, Qing Liu1, Lianhong Pi1
1Department of Ophthalmology, Children's Hospital, Chongqing Medical University, Chongqing 400014, P.R. China.
Abstract:
Retinoblastoma is an intraocular malignant tumor that may severely affect vision and represents a life‑threatening disease in children. Arctigenin (ATG) is an active compound that exhibits numerous pharmacological activities, which is isolated from the seeds of greater burdock (Arctium lappa Linnaeus), a plant used in traditional Chinese herbal medicine. The present study aimed to investigate the effects of ATG on cancer progression by analyzing the retinoblastoma cell line Y79. ATG exhibited a significant inhibitory effect on the viability of Y79 cells in a dose‑dependent manner. Furthermore, treatment with ATG promoted apoptosis, and increased the protein expression levels of B‑cell lymphoma 2 (BCL‑2)‑associated X protein and decreased the protein expression levels of BCL‑2. Cell migration was suppressed following treatment with ATG, as assessed by Transwell migration assay. Furthermore, the protein expression levels of jagged‑1 (JAG1) were decreased, and various factors involved in the Notch signaling pathway, including the Notch intracellular domain (NICD), transcription factor HES (HES)5 and HES1 were downregulated following treatment with ATG. The decreased expression levels of JAG1 were restored in response to JAG1 overexpression, alongside increases in the protein expression levels of NICD, HES5 and HES1. Furthermore, overexpression of JAG1 partly restored the cell viability and migration suppressed following treatment with ATG. In addition, ATG‑induced apoptosis was reduced by JAG1 overexpression. Collectively, the present results suggested that ATG may serve as an antitumor compound by suppressing the proliferation and migration of retinoblastoma cells, inducing apoptosis, downregulating the protein expression levels of JAG1, and decreasing the activity of the Notch signaling pathway.
Insights
Arctigenin (ATG) effectively inhibits retinoblastoma cell growth and migration. This compound promotes apoptosis and downregulates the Notch signaling pathway, offering potential as an anticancer treatment.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Retinoblastoma is a severe childhood eye cancer.
- Arctigenin (ATG), from *Arctium lappa*, has known pharmacological activities.
- Investigating ATG's effect on retinoblastoma is crucial for new treatments.
Purpose of the Study:
- To evaluate the anti-cancer effects of Arctigenin (ATG) on the Y79 retinoblastoma cell line.
- To elucidate the mechanisms underlying ATG's action, focusing on apoptosis and the Notch signaling pathway.
- To assess ATG's potential as a therapeutic agent for retinoblastoma.
Main Methods:
- Assessed ATG's effect on Y79 cell viability and apoptosis.
- Analyzed protein expression of BCL-2 family members (Bax, BCL-2).
- Utilized Transwell migration assays and Western blotting to study Notch pathway components (JAG1, NICD, HES5, HES1).
Main Results:
- ATG significantly inhibited Y79 cell viability and migration in a dose-dependent manner.
- ATG treatment promoted apoptosis by increasing Bax and decreasing BCL-2 expression.
- ATG downregulated JAG1 and Notch pathway activity (NICD, HES5, HES1); JAG1 overexpression partially reversed ATG's effects.
Conclusions:
- Arctigenin (ATG) demonstrates significant anti-tumor potential against retinoblastoma.
- ATG suppresses retinoblastoma proliferation and migration, inducing apoptosis via the Notch signaling pathway.
- Targeting JAG1 and the Notch pathway with ATG presents a promising therapeutic strategy for retinoblastoma.
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