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Prognostic Value of (DHODH) Expression in (HGSOC): A Comparative Study Between Neoadjuvant and Adjuvant Chemotherapy Settings

Observational HGSOC

For patients and families

In plain language

An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.

What is being studied
The protocol lists: Immunohistochemical (IHC) assessment of DHODH expression, No interventions as it is observational study.
Who it may be relevant to
Registry conditions: HGSOC. Basic parameters: No limits · Female.
What needs checking
Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
Where it takes place
Egypt
Next step
Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
Official title

Prognostic Value of Dihydroorotate Dehydrogenase (DHODH) Expression in High-Grade Serous Ovarian Carcinoma: A Comparative Study Between Neoadjuvant and Adjuvant Chemotherapy Settings

Overview

* To compare DHODH protein expression in HGSC tissues from patients undergoing Primary Debulking Surgery (PDS - Chemo-naive) versus Interval Debulking Surgery (IDS - Post-NACT). * To evaluate the association between DHODH expression and the degree of chemotherapy response (using the Chemotherapy Response Score - CRS for NACT cases). * To determine the prognostic value of DHODH expression in predicting Platinum-Free Interval (PFI) ,Progression -Free Survival (PFS) and Overall Survival (OS) across both groups.

Detailed description

High-grade serous ovarian carcinoma (HGSC) is the most aggressive and lethal subtype of epithelial ovarian cancer, accounting for nearly 70% of ovarian cancer-related deaths worldwide (1). Despite initial sensitivity to platinum-based chemotherapy, the majority of patients eventually develop chemoresistant disease, leading to recurrence and poor long-term survival (2). The biological mechanisms underlying platinum resistance remain incompletely understood, but increasing evidence indicates that metabolic reprogramming and redox adaptation play a central role in tumor cell survival under therapeutic stress (3).

Ferroptosis is a regulated form of cell death driven by iron-dependent lipid peroxidation, and it has recently emerged as an important vulnerability in cancer cells exposed to chemotherapy (4). Cancer cells that survive platinum-based therapy frequently upregulate antioxidant and lipid-repair systems that protect them from ferroptotic death (5). Among these systems, dihydroorotate dehydrogenase (DHODH), a mitochondrial enzyme involved in de novo pyrimidine biosynthesis, has been identified as a key suppressor of mitochondrial lipid peroxidation and ferroptosis (6).

DHODH is localized on the inner mitochondrial membrane and catalyzes the oxidation of dihydroorotate to orotate, coupling pyrimidine synthesis to the mitochondrial respiratory chain (7). Recent work has shown that DHODH acts in parallel with glutathione peroxidase-4 (GPX4) to protect cells from ferroptosis, particularly within the mitochondrial compartment (8). Inhibition of DHODH sensitizes cancer cells to oxidative damage and restores ferroptotic cell death, especially in tumors with high mitochondrial metabolism.

In ovarian cancer, platinum resistance has been linked to enhanced mitochondrial function, redox buffering, and metabolic plasticity ( 9). Neoadjuvant chemotherapy (NACT), which is increasingly used in advanced HGSC, exposes tumor cells to intense oxidative and genotoxic stress prior to surgical removal (10). This creates a strong evolutionary pressure favoring tumor clones capable of surviving chemotherapy-induced metabolic and redox stress.

However, the expression and clinical significance of DHODH in HGSC, particularly in the context of neoadjuvant chemotherapy exposure, has not been systematically investigated. No studies have directly compared DHODH expression in chemo-naïve primary debulking surgery (PDS) specimens versus post-NACT interval debulking surgery (IDS) specimens, nor correlated DHODH with chemotherapy response and survival outcomes. Understanding whether NACT selects for DHODH-high, ferroptosis-resistant tumor cells could provide novel insights into platinum resistance and identify a new therapeutic vulnerability in HGSC.

Interventions

  • Other Immunohistochemical (IHC) assessment of DHODH expression
    Comparative analysis of DHODH expression in adjuvant and neoadjuvant groups and correlate its expression with clinical outcomes
  • Other No interventions as it is observational study
    No interventions as itis observational study

Primary outcome measures

  • DHODH expression and patient survival [Time frame: from diagnosis up to last follow up or death ( up to 96 months).]

Eligibility criteria

Inclusion criteria

  • Histologically confirmed high-grade serous ovarian carcinoma
  • Availability of adequate FFPE tumor tissue
  • Known treatment modality (PDS or IDS)
  • Available clinical follow-up including platinum-free interval and survival data

Exclusion criteria

  • Non-serous histological subtypes
  • Low-grade serous carcinoma
  • Inadequate tissue for immunohistochemistry
  • Missing clinical or follow-up data

Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.

Healthy volunteers: No

Study design

Observational model
Cohort

Study locations

Egypt · 1 center
  • Assiut University — Asyut

Identifiers

NCT: NCT07366242 · DHODH in HGSOC · assiut university

Primary sources (government registries)

View this study on ClinicalTrials.gov ↗