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Updated: Dec 28, 2025

Isolation of Human Lymphatic Endothelial Cells by Multi-parameter Fluorescence-activated Cell Sorting
Published on: May 1, 2015
Analysis of mTOR pathway expression in lymphatic malformation and related diseases
Yumiko Hori1, Michio Ozeki2, Katsutoshi Hirose3
1Department of Pathology, Osaka University Graduate School of Medicine, Osaka, Japan.
Abstract:
The mammalian target of rapamycin (mTOR) inhibitor sirolimus is an effective treatment for difficult-to-treat lymphatic anomalies. However, little is known about the expression of mTOR pathway components in lymphatic anomalies. Here we investigated the expression pattern of mTOR pathway components and their phosphorylated forms (mTOR, p-mTOR, 4EBP1, p-4EBP1, S6K1 and p-S6K1) in normal lymphatic vessels and lymphatic anomalies using immunohistochemistry. We studied 18 patients of lymphatic anomalies, including lymphatic malformation (LM, n = 14), Kaposiform lymphangiomatosis (KLA, n = 2) and Kaposiform hemangioendothelioma (KHE, n = 2). Normal lymphatic vessels expressed 4EBP1, S6K1 and p-S6K1, but not p-4EBP1, mTOR or p-mTOR. The mTOR was detected in all lymphatic anomalies, whereas its activation form p-mTOR was detected in half cases of KLA and KHE but not in LM. All lymphatic anomalies expressed S6K1 and its activated form p-S6K1. The expression of 4EBP1 was also found in all lymphatic anomalies, but its activation was detected in approximately half of them. The activation of mTOR was seen in tumor (KLA and KHE) but not in malformation (LM), whereas the activation of S6K1 and 4EBP1 was seen in all and half of lymphatic anomalies, respectively.
Insights
Sirolimus treats lymphatic anomalies by targeting the mTOR pathway. This study reveals mTOR pathway component expression differs between lymphatic malformations and tumors, guiding future treatment strategies.
Area of Science:
- Vascular Biology
- Oncology
- Molecular Medicine
Background:
- Sirolimus, an mTOR inhibitor, is effective for lymphatic anomalies.
- The expression of mTOR pathway components in lymphatic anomalies is poorly understood.
Purpose of the Study:
- To investigate the expression patterns of mTOR pathway components and their activated forms in normal lymphatic vessels and various lymphatic anomalies.
- To differentiate mTOR pathway activation between lymphatic malformations and tumors.
Main Methods:
- Immunohistochemistry was used to analyze mTOR, p-mTOR, 4EBP1, p-4EBP1, S6K1, and p-S6K1 expression.
- The study included 18 patients with lymphatic malformations (LM), Kaposiform lymphangiomatosis (KLA), and Kaposiform hemangioendothelioma (KHE).
Main Results:
- Normal lymphatics expressed 4EBP1, S6K1, and p-S6K1, but not mTOR or p-mTOR.
- mTOR was detected in all anomalies; p-mTOR was present in KLA/KHE but not LM.
- S6K1 and p-S6K1 were in all anomalies; 4EBP1 was in all, with activation in about half. mTOR activation was specific to KLA/KHE.
Conclusions:
- mTOR pathway activation differs between lymphatic malformations and tumors (KLA/KHE).
- These findings provide insights into the molecular mechanisms of lymphatic anomalies and potential therapeutic targets.
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