Journal of Experimental & Clinical Cancer Research (May 2024)

Blockade of histamine receptor H1 augments immune checkpoint therapy by enhancing MHC-I expression in pancreatic cancer cells

  • PingShan Zhong,
  • Kohei Nakata,
  • Koki Oyama,
  • Nobuhiro Higashijima,
  • Akiko Sagara,
  • Satomi Date,
  • HaiZhen Luo,
  • Masataka Hayashi,
  • Akihiro Kubo,
  • ChenYi Wu,
  • Shan He,
  • Takeo Yamamoto,
  • Kazuhiro Koikawa,
  • Chika Iwamoto,
  • Toshiya Abe,
  • Naoki Ikenaga,
  • Kenoki Ohuchida,
  • Takashi Morisaki,
  • Yoshinao Oda,
  • Keiji Kuba,
  • Masafumi Nakamura

DOI
https://doi.org/10.1186/s13046-024-03060-5
Journal volume & issue
Vol. 43, no. 1
pp. 1 – 19

Abstract

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Abstract Background Although immune checkpoint blockade (ICB) therapy has proven to be extremely effective at managing certain cancers, its efficacy in treating pancreatic ductal adenocarcinoma (PDAC) has been limited. Therefore, enhancing the effect of ICB could improve the prognosis of PDAC. In this study, we focused on the histamine receptor H1 (HRH1) and investigated its impact on ICB therapy for PDAC. Methods We assessed HRH1 expression in pancreatic cancer cell (PCC) specimens from PDAC patients through public data analysis and immunohistochemical (IHC) staining. The impact of HRH1 in PCCs was evaluated using HRH1 antagonists and small hairpin RNA (shRNA). Techniques including Western blot, flow cytometry, quantitative reverse transcription polymerase chain reaction (RT-PCR), and microarray analyses were performed to identify the relationships between HRH1 and major histocompatibility complex class I (MHC-I) expression in cancer cells. We combined HRH1 antagonism or knockdown with anti-programmed death receptor 1 (αPD-1) therapy in orthotopic models, employing IHC, immunofluorescence, and hematoxylin and eosin staining for assessment. Results HRH1 expression in cancer cells was negatively correlated with HLA-ABC expression, CD8+ T cells, and cytotoxic CD8+ T cells. Our findings indicate that HRH1 blockade upregulates MHC-I expression in PCCs via cholesterol biosynthesis signaling. In the orthotopic model, the combined inhibition of HRH1 and αPD-1 blockade enhanced cytotoxic CD8+ T cell penetration and efficacy, overcoming resistance to ICB therapy. Conclusions HRH1 plays an immunosuppressive role in cancer cells. Consequently, HRH1 intervention may be a promising method to amplify the responsiveness of PDAC to immunotherapy.

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