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Immunohistochemical evidence for the association between attenuated mTOR signaling and diffuse alveolar damage, a
Ryoko Saito1, Mitsuru Yanai, Yasuhiro Miki
1Department of Pathology, Tohoku University School of Medicine.
Abstract:
Targeted anticancer therapies have been developed to interfere with specific target molecules including those of downstream pathways required for tumor growth and progression. Mammalian target of rapamycin (mTOR) has been considered as one of the target molecules of cancer growth, and its inhibitors have been reported to exert an anticancer effect in various malignant tumors. The pulmonary disorder is one of the major side effects of anticancer drugs including mTOR inhibitor (mTORi), and the diagnosis of lung injury induced by medication is difficult because of non-specific nature of the radiological findings. In this study, we present the detailed autopsy findings of a patient who developed diffuse alveolar damage (DAD) following mTORi treatment for metastatic renal cell carcinoma. We also studied 19 cases of DAD derived from other diseases and 9 cases with non-pathological lung. Of interest, pneumocytes of the patients with DAD, who received other anticancer drugs or contacted bacteria, demonstrated significantly lower mTOR activities than pneumocytes of those with non-pathological lung tissue, as judged by the immunohistochemical analysis. In contrast, both pneumocytes and T cells in DAD tissues of the patient treated with mTORi showed higher mTOR activities than those of patients with DAD of other causes, suggesting that the enhanced mTOR signaling may be involved in the development of DAD after mTORi treatment. This unexpected finding needs to be confirmed in other patients treated with mTORi. In conclusion, the attenuated mTOR signaling in pneumocytes may contribute to the pathogenesis of DAD in patients without mTORi treatment.
Insights
Mammalian target of rapamycin (mTOR) inhibitors can cause lung injury. This study found enhanced mTOR activity in lung cells of a patient treated with mTOR inhibitors, suggesting a role in drug-induced lung damage.
Area of Science:
- Oncology
- Pulmonology
- Pathology
Background:
- Targeted anticancer therapies, including mammalian target of rapamycin (mTOR) inhibitors, are crucial in cancer treatment.
- Pulmonary complications, such as diffuse alveolar damage (DAD), are significant side effects of anticancer drugs, posing diagnostic challenges due to non-specific radiological findings.
Observation:
- Autopsy findings of a patient with metastatic renal cell carcinoma who developed DAD after mTOR inhibitor (mTORi) treatment were analyzed.
- Comparative analysis included 19 DAD cases from other causes and 9 non-pathological lung samples.
- Immunohistochemical analysis revealed distinct mTOR activity patterns in pneumocytes across different DAD etiologies.
Findings:
- Patients with DAD from other causes or bacterial contact showed significantly lower pneumocyte mTOR activity compared to healthy controls.
- In contrast, the patient treated with mTORi exhibited elevated mTOR activity in both pneumocytes and T cells within DAD tissues.
- This suggests enhanced mTOR signaling may be implicated in DAD development following mTORi therapy.
Implications:
- The findings indicate a potential paradoxical role of mTOR signaling in mTORi-induced lung injury, contrasting with its role in other DAD cases.
- Further studies are needed to validate the association between enhanced mTOR signaling and DAD in patients undergoing mTORi treatment.
- Understanding these mechanisms could lead to improved diagnosis and management of drug-induced lung injury in cancer patients.
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