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Published on: October 20, 2023
Cell surface sphingomyelin: key role in cancer initiation, progression, and immune evasion
Hatem Tallima1,2, Hassan M E Azzazy3, Rashika El Ridi4
1Department of Chemistry, School of Science and Engineering, The American University in Cairo, New Cairo, Cairo, 11835, Egypt. htallima@aucegypt.edu.
Abstract:
Cell surface biochemical changes, notably excessive increase in outer leaflet sphingomyelin (SM) content, are important in cancer initiation, growth, and immune evasion. Innumerable reports describe methods to initiate, promote, or enhance immunotherapy of clinically detected cancer, notwithstanding the challenges, if not impossibility, of identification of tumor-specific, or associated antigens, the lack of tumor cell surface membrane expression of major histocompatibility complex (MHC) class I alpha and β2 microglobulin chains, and lack of expression or accessibility of Fas and other natural killer cell immune checkpoint molecules. Conversely, SM synthesis and hydrolysis are increasingly implicated in initiation of carcinogenesis and promotion of metastasis. Surface membrane SM readily forms inter- and intra- molecular hydrogen bond network, which excessive tightness would impair cell-cell contact inhibition, inter- and intra-cellular signals, metabolic pathways, and susceptibility to host immune cells and mediators. The present review aims at clarifying the tumor immune escape mechanisms, which face common immunotherapeutic approaches, and attracting attention to an entirely different, neglected, key aspect of tumorigenesis associated with biochemical changes in the cell surface that lead to failure of contact inhibition, an instrumental tumorigenesis mechanism. Additionally, the review aims to provide evidence for surface membrane SM levels and roles in cells resistance to death, failure to respond to growth suppressor signals, and immune escape, and to suggest possible novel approaches to cancer control and cure.
Insights
Altered cell surface sphingomyelin (SM) content disrupts cell-cell contact and immune signaling, promoting cancer growth and immune evasion. Targeting these biochemical changes offers novel therapeutic strategies for cancer control.
Area of Science:
- Biochemistry
- Cell Biology
- Immunology
Background:
- Cancer cells exhibit altered surface biochemistry, including increased sphingomyelin (SM).
- Conventional immunotherapies face challenges due to tumor antigen identification and immune evasion mechanisms.
Purpose of the Study:
- To clarify tumor immune escape mechanisms linked to cell surface biochemical changes.
- To highlight the role of sphingomyelin in tumorigenesis, metastasis, and immune evasion.
- To propose novel therapeutic strategies targeting cell surface alterations.
Main Methods:
- Review of existing literature on sphingomyelin metabolism and cancer.
- Analysis of cell surface biochemical changes in cancer initiation and progression.
- Examination of immune evasion strategies related to cell surface properties.
Main Results:
- Excessive sphingomyelin in the outer cell membrane disrupts cell-cell contact inhibition and signaling.
- Increased SM levels contribute to resistance to cell death and unresponsiveness to growth suppressors.
- These surface changes facilitate tumor immune escape.
Conclusions:
- Cell surface sphingomyelin alterations are a critical, yet neglected, aspect of tumorigenesis.
- Targeting sphingomyelin metabolism presents a promising avenue for novel cancer therapies.
- Understanding these biochemical changes is key to overcoming therapeutic resistance and immune evasion.
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