Cancer associated fibroblast-related lactate metabolism promotes cisplatin resistance in colorectal cancer by enhancing NBS1 transcription via H3K18 lactylation

Background Cancer-associated fibroblasts (CAFs) secrete abundant lactate and drive chemoresistance in colorectal cancer (CRC). This study investigates the epigenetic mechanisms, focusing on histone lactylation and transcriptional regulation of Nijmegen breakage syndrome 1 (NBS1). Methods Clinical analyses included 32 cisplatin (DDP)-resistant and 37 DDP-sensitive CRC specimens to evaluate α-SMA-positive stromal signal, Histone H3 lysine 18 lactylation (H3K18la) and NBS1 expression. Mechanistic and functional experiments were primarily performed in HCT116 cells. Primary CAFs were co-cultured with HCT116 cells, with or without AZD3965, an inhibitor of the lactate transportermonocarboxylate transporter 1 (MCT1). Cell viability, apoptosis, half-maximal inhibitory concentration (IC 50 ), and the p300/H3K18la/NBS1 transcriptional axis were assessed. For in vivo validation, HCT116 cells (with or without NBS1 knockdown) were co-injected with CAFs into a xenograft mouse model (n = 6/group) receiving DDP treatment. Results In clinical samples, DDP-resistant tumors showed significantly higher α-SMA-positive stromal signal, H3K18la, and NBS1 levels than sensitive tumors, showing positive pairwise associations (r = 0.7744-0.7960). In vitro, CAF co-culture increased lactate production and HCT116 cisplatin IC 50 from 5.25 μM (95% CI: 4.88-5.65) to 13.88 μM (95% CI: 12.65-15.24), while suppressing apoptosis. These chemoprotective effects were significantly attenuated by AZD3965, which reduced the IC50 to 5.97 μM (95% CI: 5.35-6.67). Mechanistically, CAF-associated lactate promoted H3K18la enrichment at the NBS1 promoter, which was associated with transcriptional activation of NBS1. Rescue experiments showed that NBS1 knockdown significantly attenuated CAF-induced DDP resistance and restored apoptosis. In vivo, CAF co-injection promoted tumor progression under DDP treatment, which was effectively attenuated by NBS1 knockdown. Conclusion These preclinical findings demonstrate that CAF-associated, AZD3965-sensitive lactate signaling is associated with H3K18la enrichment and NBS1 upregulation, thereby reducing cisplatin sensitivity in CRC. Further pharmacological validation in independent models is required before translating these targets clinically.

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Journal
Journal of Radiation Research and Applied Sciences
Published
2026-09-29
DOI
https://doi.org/10.1016/j.jrras.2026.102711
Primary Topic
Cancer, Hypoxia, and Metabolism
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article
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article

Cancer associated fibroblast-related lactate metabolism promotes cisplatin resistance in colorectal cancer by enhancing NBS1 transcription via H3K18 lactylation

Jun Wang, Mingjie Li, Xiaofang Yao
Journal of Radiation Research and Applied Sciences
Cancer, Hypoxia, and Metabolism
article

Cancer associated fibroblast-related lactate metabolism promotes cisplatin resistance in colorectal cancer by enhancing NBS1 transcription via H3K18 lactylation

Jun Wang, Mingjie Li, Xiaofang Yao
article en

Abstract

Background Cancer-associated fibroblasts (CAFs) secrete abundant lactate and drive chemoresistance in colorectal cancer (CRC). This study investigates the epigenetic mechanisms, focusing on histone lactylation and transcriptional regulation of Nijmegen breakage syndrome 1 (NBS1). Methods Clinical analyses included 32 cisplatin (DDP)-resistant and 37 DDP-sensitive CRC specimens to evaluate α-SMA-positive stromal signal, Histone H3 lysine 18 lactylation (H3K18la) and NBS1 expression. Mechanistic and functional experiments were primarily performed in HCT116 cells. Primary CAFs were co-cultured with HCT116 cells, with or without AZD3965, an inhibitor of the lactate transportermonocarboxylate transporter 1 (MCT1). Cell viability, apoptosis, half-maximal inhibitory concentration (IC 50 ), and the p300/H3K18la/NBS1 transcriptional axis were assessed. For in vivo validation, HCT116 cells (with or without NBS1 knockdown) were co-injected with CAFs into a xenograft mouse model (n = 6/group) receiving DDP treatment. Results In clinical samples, DDP-resistant tumors showed significantly higher α-SMA-positive stromal signal, H3K18la, and NBS1 levels than sensitive tumors, showing positive pairwise associations (r = 0.7744-0.7960). In vitro, CAF co-culture increased lactate production and HCT116 cisplatin IC 50 from 5.25 μM (95% CI: 4.88-5.65) to 13.88 μM (95% CI: 12.65-15.24), while suppressing apoptosis. These chemoprotective effects were significantly attenuated by AZD3965, which reduced the IC50 to 5.97 μM (95% CI: 5.35-6.67). Mechanistically, CAF-associated lactate promoted H3K18la enrichment at the NBS1 promoter, which was associated with transcriptional activation of NBS1. Rescue experiments showed that NBS1 knockdown significantly attenuated CAF-induced DDP resistance and restored apoptosis. In vivo, CAF co-injection promoted tumor progression under DDP treatment, which was effectively attenuated by NBS1 knockdown. Conclusion These preclinical findings demonstrate that CAF-associated, AZD3965-sensitive lactate signaling is associated with H3K18la enrichment and NBS1 upregulation, thereby reducing cisplatin sensitivity in CRC. Further pharmacological validation in independent models is required before translating these targets clinically.

Journal of Radiation Research and Applied SciencesVol. 19(4)
Guangdong Medical College (CN), Dongguan People’s Hospital (CN)
Good health and well-being
Openalex Percentile: Top 16%
Cancer, Hypoxia, and Metabolism
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