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Updated: May 3, 2026

Isolation of Group 2 Innate Lymphoid Cells from Mouse Nasal Mucosa to Detect the Expression of CD226
Published on: May 10, 2022
Recombinant soluble CD226 protein directly inhibits cancer cell proliferation in vitro
Shengke Hou1, Xiaodong Zheng1, Haiming Wei2
1Department of Immunology, School of Life Sciences, University of Science and Technology of China, Hefei, Anhui 230027, China.
Abstract:
Interactions between CD155 and nectins on tumor cells have been reported to potentially inhibit tumor growth. CD226, a receptor that recognizes CD155 and CD112, is an activation receptor of NK and T cells by which immune cells may attack a tumor. The purpose of this study is to explore whether soluble CD226 (sCD226) directly inhibits tumor growth by binding CD155 or CD112 on tumor cells. We expressed, purified and confirmed the identity of recombinant sCD226 (19aa-248aa) and then examined the effect of sCD226 on tumor cell growth using CD226 ligand (CD155 and CD112)-expressing cancer cell lines (K562, HeLa). After 3days of co-culture with sCD226, we found that the numbers of K562 and HeLa cells were significantly reduced but those of a CD226-blocking mAb specifically attenuated the inhibitory effects of sCD226. We also noted that the sCD226 protein could compete with a PE-conjugated anti-CD112 antibody in flow cytometric analysis and block the binding of the PE-conjugated anti-CD112 antibody to tumor cells. Mechanistic studies using flow cytometric analysis demonstrated that sCD226 inhibited the division of CFSE (carboxyfluorescein diacetate succinimidyl ester)-labeled K562 cells by delaying the cell cycle. In addition, we observed that sCD226 might have an impact on the metastatic potential of solid tumors in vitro. These results demonstrated that sCD226 molecule might be a potential biotherapy against tumor for further development.
Insights
Soluble CD226 (sCD226) directly inhibits tumor cell growth by binding to CD155 and CD112. This biotherapy shows potential for cancer treatment by reducing tumor cell numbers and impacting metastasis.
Area of Science:
- Immunology
- Cancer Biology
- Biotherapy
Background:
- Tumor cells interact with CD155 and nectins, potentially inhibiting growth.
- CD226, a receptor for CD155 and CD112, activates immune cells to attack tumors.
Purpose of the Study:
- To investigate if soluble CD226 (sCD226) inhibits tumor growth by targeting CD155 or CD112 on tumor cells.
Main Methods:
- Recombinant sCD226 was expressed and purified.
- sCD226's effect on cancer cell lines (K562, HeLa) was assessed in co-culture.
- Flow cytometry was used to analyze sCD226's binding competition and cell cycle effects.
Main Results:
- sCD226 significantly reduced K562 and HeLa cell numbers.
- A CD226-blocking antibody attenuated sCD226's inhibitory effects.
- sCD226 competed with anti-CD112 antibody binding and delayed cell cycle progression.
Conclusions:
- sCD226 directly inhibits tumor cell growth and division.
- sCD226 may impact the metastatic potential of solid tumors in vitro.
- sCD226 is a potential biotherapy candidate for further development.
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