Tryptophan metabolism enzymes are potential targets in ovarian clear cell carcinoma
Sumei Zhang1,2, Yike Gao3, Pan Wang4
1Clinical Biobank, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China.
Aim:
As the second most prevalent subtype of epithelial ovarian cancers, ovarian clear cell carcinoma (OCCC) is known for its chemoresistance to conventional platinum-based therapy. In this work, we examined the tryptophan (Trp) metabolism enzymes' differential expression in patients with OCCC to assess the potential for personalised treatment.
Methods:
A total of 127 OCCC tissues were used to construct tissue microarrays, and immunohistochemistry (IHC) staining of the Trp enzymes IDO1, IDO2, TDO2 and IL4I1 was performed. The correlations between Trp enzyme expression and clinical characteristics were analysed.
Results:
Positive IDO1, IDO2, TDO2 and IL4I1 staining was identified in 26.8%, 94.5%, 75.6% and 82.7% of OCCC respectively. IDO1-positive samples were more common in the chemoresistant group than in the platinum-sensitive group (46.7% vs. 19.8%). Moreover, positive expression of IDO1, TDO2 and IL4I1 was related to advanced stage, metastasis, bilateral tumours, endometriosis and tumour rupture (p < 0.05) respectively. Univariate analysis revealed a significant association between bilateral tumours, lymph node metastasis, advanced stage, distant metastasis and aberrant cytology with a poor prognosis for OCCC, while the absence of residual tumour was correlated with a favourable outcome (p < 0.05). However, only bilateral tumours and lymph node metastases were related to a poor prognosis after multivariate analysis.
Conclusion:
This is the first study to investigate the expression of the Trp enzymes IDO1, IDO2, TDO2 and IL4I1 in OCCC tissues. IDO2, TDO2 and IL4I1 were detected in the majority of OCCC. Clinical traits were correlated with IDO1, IDO2, TDO2 and IL4I1 expression. IDO1 may be used as a therapeutic target given the large percentage of chemoresistant cases with IDO1 expression. These results will aid the development of personalised therapies for OCCC.
Insights
Ovarian clear cell carcinoma (OCCC) shows chemoresistance. This study found tryptophan metabolism enzymes IDO1, IDO2, TDO2, and IL4I1 expression correlates with OCCC traits, suggesting IDO1 as a potential therapeutic target for personalized treatment.
Area of Science:
- Oncology
- Biochemistry
- Molecular Biology
Background:
- Ovarian clear cell carcinoma (OCCC) is the second most common epithelial ovarian cancer subtype.
- OCCC exhibits significant chemoresistance to standard platinum-based therapies.
- Tryptophan (Trp) metabolism enzymes are implicated in cancer progression and immune evasion.
Purpose of the Study:
- To investigate the differential expression of Trp metabolism enzymes (IDO1, IDO2, TDO2, IL4I1) in OCCC tissues.
- To assess the correlation between enzyme expression and clinical characteristics of OCCC.
- To explore the potential of these enzymes as therapeutic targets for personalized OCCC treatment.
Main Methods:
- Tissue microarrays were constructed from 127 OCCC samples.
- Immunohistochemistry (IHC) was used to detect the expression of IDO1, IDO2, TDO2, and IL4I1.
- Statistical analyses were performed to correlate enzyme expression with clinical features and patient prognosis.
Main Results:
- IDO1, IDO2, TDO2, and IL4I1 were expressed in 26.8%, 94.5%, 75.6%, and 82.7% of OCCC tissues, respectively.
- IDO1 expression was significantly higher in chemoresistant OCCC compared to platinum-sensitive cases (46.7% vs. 19.8%).
- Expression of IDO1, TDO2, and IL4I1 correlated with advanced stage, metastasis, bilateral tumors, endometriosis, and tumor rupture.
Conclusions:
- This is the first study to analyze IDO1, IDO2, TDO2, and IL4I1 expression in OCCC.
- IDO2, TDO2, and IL4I1 are widely expressed in OCCC, while IDO1 expression is linked to chemoresistance.
- IDO1 presents a potential therapeutic target for developing personalized treatments for OCCC, particularly in chemoresistant cases.
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