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March 12, 2026Advanced Biology0 citations

Tumor‐Infiltrating Nociceptor Neurons in Ovarian Cancer Treatment Resistance

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AJAllison M. D. JorgensenDVDaniel W. VermeerEJEuihye Jung

Key Points

  • This research aims to investigate the role of tumor-infiltrating nociceptor neurons in treatment resistance among different ovarian cancer subtypes.
  • Immunohistochemical analysis of ovarian cancer histological subtypes for nerve presence.
  • In vitro neurite outgrowth assay to assess activity of small extracellular vesicles from ovarian cancer.
  • Use of syngeneic mouse models to evaluate tumor growth and response to carboplatin in the absence of tumor-infiltrating nerves.
  • Only high-grade serous ovarian carcinoma (HGSOC) displayed dense nerve infiltration.
  • sEVs from HGSOC showed significant neurite outgrowth activity compared to those from fallopian tube cell lines.
  • Mice lacking tumor-infiltrating nerves exhibited slower tumor growth and improved survival when treated with carboplatin.
  • Recurrent treatment-resistant ovarian cancer showed greater nerve infiltration compared to untreated malignancies.

Abstract

Patients with densely innervated tumors suffer with poor outcomes, thus identifying them could define a cohort that could benefit from aggressive treatments. Most cases and deaths from ovarian cancer are associated with high-grade serous ovarian carcinoma (HGSOC). We immunohistochemically analyzed the histological subtypes of ovarian cancer (high-grade serous, low-grade serous, clear cell, mucinous, and endometrioid) for nerves; only HGSOCs were densely innervated. We previously defined that tumor-released small extracellular vesicles (sEVs) recruit nerves to the tumor bed and thus tested whether the difference in nerve infiltration amongst ovarian cancers was associated with sEVs. Using an in vitro neurite outgrowth assay, we found that HGSOC sEVs harbored robust neurite outgrowth activity. Importantly, sEVs from fallopian tube cell lines (the primary cell of origin of HGSOC) predominantly lacked this activity. Implantation of a syngeneic mouse model of HGSOC into transgenic mice lacking tumor-infiltrating nerves slowed tumor growth, sensitized disease to carboplatin, and improved survival. Consistent with this, we show that recurrent, treatment-resistant disease in patients is significantly more innervated than its matched naïve (untreated) malignancy. Taken together, these data identify dense nerve infiltration of HGSOCs and show that innervation contributes to treatment resistance.

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Cite This Study

Jorgensen et al. (2026) studied this question.

synapsesocial.com/papers/69b25be596eeacc4fceca452https://doi.org/10.1002/adbi.202500404
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