1.Fate of Brain Metastasis With Cerebrospinal Fluid Space Invasion Based on MRI Findings: Clinical Features and Factors Affecting Progression to Overt Leptomeningeal Metastasis
Yoontae HONG ; Haechan SONG ; Ho-Shin GWAK ; Yun-Sik DHO ; Sang Hoon SHIN ; Heon YOO ; Kyu-Chang WANG
Brain Tumor Research and Treatment 2026;14(1):35-46
Background:
Parenchymal brain metastasis (BM) and its extended growth into cerebrospinal fluid(CSF) pathways or surgical spillage could result in leptomeningeal metastasis (LM). We defined BM with epipial spread or dural attachment on MRI as BM with CSF space invasion (BM-CSFi), regardless of CSF cytology results, and evaluated its clinical course after BM resection.
Methods:
We retrospectively reviewed 297 patients who underwent craniotomy for BM exclud-ing patients followed for <6 months or without follow-up MRI. Primary outcomes were proportion of patients progressing to overt LM and time to progression. We also evaluated clinical and radiologic variables to identify risk factors for LM progression.
Results:
A total of 91 patients (30.6%) developed overt LM, with median time to progressionof 7.9 months during 18.3 months follow-up after the craniotomy. On multivariable analysis, preoperative MRI evidence of dural attachment with enhancement (hazard ratio [HR], 5.59; p=0.002), primary small cell lung cancer (HR, 4.92; p=0.026), infratentorial BM location (HR, 2.14; p=0.019), and postoperative cumulative CSF cytology positive rate ≥50% (HR, 7.13; p=0.012) were independent risk factors for LM progression. The mode of resection and postoperative radiotherapy or systemic chemotherapy were not significantly associated with LM progression.
Conclusion
BM-CSFi, defined by preoperative MRI findings, may represent a clinically importantprecursor of LM. Our findings highlight the need for close monitoring of patients with BM-CSFi and the development of management protocols to minimize the risk of LM progression.
2.Malignant Transformation of Meningioma With TERT Promoter Mutation: A Case Report
Yoontae HONG ; Nayoung HAN ; Ho-Shin GWAK
Brain Tumor Research and Treatment 2024;12(3):192-199
High-grade meningiomas make up a relatively minor proportion of meningiomas, which are one of the most common types of primary intracranial tumors in adults. Though rare, a considerable portion of highgrade meningiomas arise from malignant transformation of benign meningiomas. The 2021 World Health Organization (WHO) classification criteria introduced molecular markers in the diagnosis and grading of central nervous system (CNS) tumors and assigned certain genomic mutations to grade 3 meningiomas. We report a case of a 54-year-old male patient who underwent stepwise malignant transformation of meningioma from WHO grade 1 to grade 3 within 10 years, during the course of five surgeries followed by adjuvant stereotactic radiosurgery and radiotherapy. We performed next-generation sequencing (NGS) on the most recent grade 3 meningioma specimen and found that it carried a telomerase reverse transcriptase promoter (TERTp) mutation (c.-124C>T) in accordance with the 2021 WHO criteria for grade 3 meningiomas. We then retrospectively examined the previous grade 1 and 2 specimens and found them to have the same mutation. We reviewed the significance of molecular markers in the diagnosis of meningiomas, possible genetic alterations associated with their malignant transformation, and what measures could be taken to effectively manage meningiomas considering NGS findings.
3.Deletion Timing of Cic Alleles during Hematopoiesis Determines the Degree of Peripheral CD4+ T Cell Activation and Proliferation
Guk-Yeol PARK ; Gil-Woo LEE ; Soeun KIM ; Hyebeen HONG ; Jong Seok PARK ; Jae-Ho CHO ; Yoontae LEE
Immune Network 2020;20(5):e43-
Capicua (CIC) is a transcriptional repressor that regulates several developmental processes. CIC deficiency results in lymphoproliferative autoimmunity accompanied by expansion of CD44hiCD62Llo effector/memory and follicular Th cell populations. Deletion of Cic alleles in hematopoietic stem cells (Vav1-Cre-mediated knockout of Cic) causes more severe autoimmunity than that caused by the knockout of Cic in CD4+CD8+ double positive thymocytes (Cd4-Cre-mediated knockout of Cic). In this study, we compared splenic CD4+ T cell activation and proliferation between whole immune cell-specific Cic-null (Cicf/f;Vav1-Cre) and T cell-specific Cic-null (Cicf/f;Cd4-Cre) mice. Hyperactivation and hyperproliferation of CD4+ T cells were more apparent in Cicf/f;Vav1-Cre mice than in Cicf/f;Cd4-Cre mice. Cicf/f;Vav1-Cre CD4+ T cells more rapidly proliferated and secreted larger amounts of IL-2 upon TCR stimulation than did Cicf/f;Cd4-Cre CD4+ T cells, while the TCR stimulation-induced activation of the TCR signaling cascade and calcium flux were comparable between them. Mixed wild-type and Cicf/f;Vav1-Cre bone marrow chimeras also exhibited more apparent hyperactivation and hyperproliferation of Cic-deficient CD4+ T cells than did mixed wild-type and Cicf/f;Cd4-Cre bone marrow chimeras. Taken together, our data demonstrate that CIC deficiency at the beginning of T cell development endows peripheral CD4+ T cells with enhanced T cell activation and proliferative capability.

Result Analysis
Print
Save
E-mail