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Updated: Jan 10, 2026

Ganglioside Extraction, Purification and Profiling
Published on: March 12, 2021
Ganglioside therapy in cancer molecular insights and therapeutic opportunities
Avisek Banerjee1, Sounak Banerjee2, Soham Raj Maity3
1Department of Zoology, Ramakrishna Mission Vidyamandira, Belur Math, Howrah, West Bengal, India. avisek_banerjee@yahoo.com.
Abstract:
Gangliosides, a class of glycosphingolipids located on the plasma membrane of nearly all cells, play a crucial role in cell signaling and lipid raft dynamics. Their expression is notably high during embryonic development, markedly reduced in most adult tissues, but significantly elevated in various tumor tissues. This distinct expression pattern highlights gangliosides as promising therapeutic targets due to their roles in tumor progression, metastasis, and therapeutic resistance. Targeted ganglioside therapies, particularly monoclonal antibodies against GD2, have already demonstrated clinical benefit. Dinutuximab, approved for high-risk neuroblastoma, improved event-free survival when combined with cytokines with standard therapy alone (NCT00026312). Similarly, Naxitamab, in combination with GM-CSF, achieved an overall response rate in relapsed/refractory neuroblastoma (NCT03363373). Beyond antibodies, emerging GD2-targeted cellular immunotherapies, including CAR-T cell approaches, have shown promising early-phase clinical responses in refractory neuroblastoma and sarcomas, underscoring their translational potential. Additionally, Racotumomab (anti-NeuGcGM3) demonstrated a survival benefit in advanced non-small cell lung cancer, extending median overall survival compared to placebo (NCT01240447). Despite these advances, challenges remain in improving patient selection, reducing off-target toxicities such as neuropathic pain, and addressing resistance mechanisms. This review examines the latest developments in ganglioside-mediated cancer therapy, emphasizing current clinical outcomes, highlighting the need for more precise targeting approaches, and exploring rational combination strategies to enhance therapeutic efficacy.
Insights
Gangliosides are key in cancer progression and resistance. Therapies targeting gangliosides, like GD2 antibodies and cellular immunotherapies, show promise but require improved patient selection and toxicity management for enhanced efficacy.
Area of Science:
- Oncology
- Immunology
- Glycobiology
Background:
- Gangliosides are glycosphingolipids crucial for cell signaling and lipid raft dynamics.
- Elevated ganglioside expression in tumors contrasts with low levels in adult tissues, marking them as potential therapeutic targets.
- Their roles in tumor progression, metastasis, and therapeutic resistance are well-documented.
Purpose of the Study:
- To review the latest advancements in ganglioside-targeted cancer therapies.
- To highlight current clinical outcomes and challenges in the field.
- To explore strategies for enhancing therapeutic efficacy through precise targeting and combination approaches.
Main Methods:
- Review of clinical trial data and scientific literature on ganglioside-targeted therapies.
- Analysis of monoclonal antibodies (e.g., anti-GD2, anti-NeuGcGM3) and cellular immunotherapies (e.g., CAR-T cells).
- Examination of therapeutic outcomes, including survival benefits and response rates in various cancers.
Main Results:
- Monoclonal antibodies like Dinutuximab and Naxitamab have shown clinical benefits in neuroblastoma.
- GD2-targeted CAR-T cell therapies demonstrate early-phase promise in refractory neuroblastoma and sarcomas.
- Racotumomab (anti-NeuGcGM3) improved survival in advanced non-small cell lung cancer.
Conclusions:
- Ganglioside-targeted therapies, including antibodies and cellular immunotherapies, offer significant therapeutic potential in oncology.
- Addressing challenges like patient selection, off-target toxicities (e.g., neuropathic pain), and resistance mechanisms is critical for clinical success.
- Rational combination strategies and precise targeting are essential to maximize the efficacy of ganglioside-based cancer treatments.
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