Anti-tumor activity of valproic acid in EBV-positive Burkitt lymphoma via PFN2-associated PI3K/AKT pathway repression

Background Burkitt lymphoma (BL) has limited therapies and poor prognosis in elderly or relapsed patients. Valproic acid (VPA) exhibits broad anti-tumor activity, but its quantitative efficacy and molecular mechanism in EBV-positive BL remain undefined. Methods VPA activity in Daudi, Raji, Namalwa BL cell lines (n = 3 biological replicates per assay) was assessed using CCK-8 viability (24 h/48 h IC 50 values), EdU proliferation, PI cell-cycle, and Annexin V/PI dual-staining apoptosis assays. In vivo efficacy was tested in Namalwa CDX (control n = 5, VPA n = 6) and three independent EBV-positive PDX models (6 mice/group for each PDX line), with daily 400 mg/kg intraperitoneal VPA administration for 1–3 weeks; ex vivo drug response of PDX fragments was quantified via hydrogel embedded histoculture drug sensitivity test (HDST). RNA-seq was conducted on PDX No.1 tumor tissues (VPA vs. saline control, n = 3 per group). PFN2 and PI3K/AKT pathway alterations were validated by RT-qPCR, Western blot, PFN2 knockdown/overexpression, and PI3K/AKT inhibitor combination assays. Results 24 h IC 50 values of VPA were 20.15, 4.672, 7.769 mM for Daudi, Raji, Namalwa, while 48 h IC 50 decreased to 4.891, 2.283, 0.4836 mM. At 2 mM VPA treatment for 24 h, total apoptosis rates increased by 14.22% (Daudi), 10.20% (Raji), and 18.68% (Namalwa). VPA induced G0/G1 cell-cycle arrest across all 3 cell lines. In CDX and three PDX models, VPA treatment reduced tumor weight (CDX: control 1.132 g vs. VPA 0.365 g, p = 0.0207, No.1: control 1.450 g vs. VPA 1.013 g, p = 0.049, No.2: control 1.283 g vs. VPA 0.913 g, p = 0.0295, No.3: control 1.371 g vs. VPA 0.9239, p = 0.0062) without body weight loss. RNA-seq analysis identified PFN2 as an exploratory candidate transcript with nominal transcriptional downregulation upon VPA administration (log 2 FC = −0.3213, raw p = 0.0355, FDR = 0.6149), and KEGG enrichment revealed perturbation of the PI3K/AKT signaling pathway. VPA reduced PFN2 mRNA and protein abundance in vitro and in vivo . PFN2 knockdown recapitulated proliferation suppression and reduced p-PI3K/p-AKT levels; PFN2 overexpression partially restored cell proliferation and PI3K/AKT phosphorylation, which could be attenuated by VPA treatment. Co-administration of VPA with idelalisib or capivasertib produced stronger anti-proliferative effects of BL. Conclusion VPA exerts potent anti-tumor activity against EBV-positive BL in vitro and in multiple xenograft models, associated with PFN2 downregulation and suppressed PI3K/AKT signaling.

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Journal
Frontiers in Pharmacology
Published
2026-09-14
DOI
https://doi.org/10.3389/fphar.2026.1925552
Primary Topic
Histone Deacetylase Inhibitors Research
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article
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article

Anti-tumor activity of valproic acid in EBV-positive Burkitt lymphoma via PFN2-associated PI3K/AKT pathway repression

Zujie Lin, Shouhua Zhang, Yaoling Luo, 何远桥 et al.
Frontiers in Pharmacology
Histone Deacetylase Inhibitors Research
article

Anti-tumor activity of valproic acid in EBV-positive Burkitt lymphoma via PFN2-associated PI3K/AKT pathway repression

Zujie Lin, Shouhua Zhang, Yaoling Luo, 何远桥, Rui Liu, Yongliang Zheng, Aili He, Yuxiu Yang
article en

Abstract

Background Burkitt lymphoma (BL) has limited therapies and poor prognosis in elderly or relapsed patients. Valproic acid (VPA) exhibits broad anti-tumor activity, but its quantitative efficacy and molecular mechanism in EBV-positive BL remain undefined. Methods VPA activity in Daudi, Raji, Namalwa BL cell lines (n = 3 biological replicates per assay) was assessed using CCK-8 viability (24 h/48 h IC 50 values), EdU proliferation, PI cell-cycle, and Annexin V/PI dual-staining apoptosis assays. In vivo efficacy was tested in Namalwa CDX (control n = 5, VPA n = 6) and three independent EBV-positive PDX models (6 mice/group for each PDX line), with daily 400 mg/kg intraperitoneal VPA administration for 1–3 weeks; ex vivo drug response of PDX fragments was quantified via hydrogel embedded histoculture drug sensitivity test (HDST). RNA-seq was conducted on PDX No.1 tumor tissues (VPA vs. saline control, n = 3 per group). PFN2 and PI3K/AKT pathway alterations were validated by RT-qPCR, Western blot, PFN2 knockdown/overexpression, and PI3K/AKT inhibitor combination assays. Results 24 h IC 50 values of VPA were 20.15, 4.672, 7.769 mM for Daudi, Raji, Namalwa, while 48 h IC 50 decreased to 4.891, 2.283, 0.4836 mM. At 2 mM VPA treatment for 24 h, total apoptosis rates increased by 14.22% (Daudi), 10.20% (Raji), and 18.68% (Namalwa). VPA induced G0/G1 cell-cycle arrest across all 3 cell lines. In CDX and three PDX models, VPA treatment reduced tumor weight (CDX: control 1.132 g vs. VPA 0.365 g, p = 0.0207, No.1: control 1.450 g vs. VPA 1.013 g, p = 0.049, No.2: control 1.283 g vs. VPA 0.913 g, p = 0.0295, No.3: control 1.371 g vs. VPA 0.9239, p = 0.0062) without body weight loss. RNA-seq analysis identified PFN2 as an exploratory candidate transcript with nominal transcriptional downregulation upon VPA administration (log 2 FC = −0.3213, raw p = 0.0355, FDR = 0.6149), and KEGG enrichment revealed perturbation of the PI3K/AKT signaling pathway. VPA reduced PFN2 mRNA and protein abundance in vitro and in vivo . PFN2 knockdown recapitulated proliferation suppression and reduced p-PI3K/p-AKT levels; PFN2 overexpression partially restored cell proliferation and PI3K/AKT phosphorylation, which could be attenuated by VPA treatment. Co-administration of VPA with idelalisib or capivasertib produced stronger anti-proliferative effects of BL. Conclusion VPA exerts potent anti-tumor activity against EBV-positive BL in vitro and in multiple xenograft models, associated with PFN2 downregulation and suppressed PI3K/AKT signaling.

Frontiers in PharmacologyVol. 17
Nanchang University (CN), Jinggangshan University (CN), Jiangxi Science and Technology Normal University (CN), Second Affiliated Hospital of Xi'an Jiaotong University (CN), First Affiliated Hospital of Gannan Medical University (CN), Jiangxi Provincial Children's Hospital (CN), Xi'an Jiaotong University (CN)
Natural Science Foundation of Jiangxi Province, Health Commission of Jiangxi Province
No poverty, Good health and well-being
Openalex Percentile: Top 18%
Histone Deacetylase Inhibitors Research
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