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Product Specific References for Applications and Species
Immunocytochemistry: Human | ||
PMID | Dilution | Publication |
29255269 | not listed | Holze, C, et al. 2018. Oxeiptosis, a ROS-induced caspase-independent apoptosis-like cell-death pathway. Nature immunology, 130-140. |
Immunohistochemistry: Human | ||
PMID | Dilution | Publication |
37741130 | 1:200 | You, M, et al. 2023. 4-Octyl itaconate inhibits inflammation to attenuate psoriasis as an agonist of oxeiptosis. International Immunopharmacology, 110915. |
Western Blot: Human | ||
PMID | Dilution | Publication |
39978447 | not listed | Zhu, J, et al. 2025. Mechanism of action of Danlou tablets affecting MAFLD via KEAP1-mediated oxeiptosis. Journal of Ethnopharmacology, 119521. |
37712005 | not listed | Nasirzadeh, M, et al. 2023. Alantolactone triggers oxeiptosis in human ovarian cancer cells via Nrf2 signaling pathway. Biochemistry and Biophysics Reports, 101537. |
37741130 | not listed | You, M, et al. 2023. 4-Octyl itaconate inhibits inflammation to attenuate psoriasis as an agonist of oxeiptosis. International immunopharmacology, 110915. |
37712005 | not listed | Nasirzadeh, M, et al. 2023. Alantolactone triggers oxeiptosis in human ovarian cancer cells via Nrf2 signaling pathway. Biochemistry and Biophysics Reports, 101537. |
36626243 | not listed | Tsui, KH, et al. 2023. Mitoquinone shifts energy metabolism to reduce ROS-induced oxeiptosis in female granulosa cells and mouse oocytes. Aging, 246-260. |
35177586 | 1:1000 | Kang, P, et al. 2022. Oxeiptosis: a novel pathway of melanocytes death in response to oxidative stress in vitiligo. Cell death discovery, 70. |
34872005 | 1:1000 | Wang, CX, et al. 2022. Auriculasin enhances ROS generation to regulate colorectal cancer cell apoptosis, ferroptosis, oxeiptosis, invasion and colony formation. Biochemical and Biophysical Research Communications, 99-106. |
Western Blot: Mouse | ||
PMID | Dilution | Publication |
38540291 | 1:1000 | Chen, X, et al. 2024. Circular RNA CircFOXO3 Functions as a Competitive Endogenous RNA for Acid-Sensing Ion Channel Subunit 1 Mediating Oxeiptosis in Nucleus Pulposus. Biomedicines, 0. |
36914635 | not listed | Pallichankandy, S, et al. 2023. Targeting oxeiptosis-mediated tumor suppression: a novel approach to treat colorectal cancers by sanguinarine. Cell death discovery, 94. |