scholarly journals 1265P Combined detection of tumor markers and ctDNA in cerebrospinal fluid: A good strategy in diagnosis of leptomeningeal metastases

2021 ◽  
Vol 32 ◽  
pp. S990
Author(s):  
Y. Wang ◽  
R. Tao
2020 ◽  
Vol 22 (Supplement_2) ◽  
pp. ii225-ii226
Author(s):  
Vahan Martirosian ◽  
Krutika Deshpande ◽  
Hao Zhou ◽  
Keyue Shen ◽  
Vazgen Stepanosyan ◽  
...  

Abstract Medulloblastoma (MB) is a malignant pediatric brain tumor. Studies have shown heterogeneous cells amongst the tumor bulk which mirror normal neural cells in various neurodevelopmental stages. To discern exploited mechanisms promoting MB leptomeningeal disease, we drew conclusions from developmental neurobiology. In normal differentiation, the metabolic phenotype in proliferating neural progenitor cells evolves from a glycolysis-dependent to an oxidative phosphorylation-reliant energetic profile in quiescent differentiated neurons. Cancer cells mirror this evolution, which also grants them the capability to utilize alternative nutrients in the microenvironment as an energy source. Considering metastatic cells are typically in a dormant state and primarily utilize oxidative phosphorylation, we hypothesized metastatic MB cells emulate a quiescent neuron-like cellular profile to survive in the cerebrospinal fluid and form leptomeningeal metastases. To examine this, we query the expression of GABA catabolic enzyme GABA transaminase (ABAT) in MB. GABA is found in the cerebellar and leptomeningeal microenvironments, and is utilized by metastatic cancer cells in the CNS as an energy source. We correlate an increase in ABAT expression with neurodevelopment and show heterogeneous expression of this protein in primary MB tumors. MB cells with increased expression of ABAT were slower-dividing, expressed a genetic and metabolic phenotype reminiscent of quiescent neuron-like cells, and had increased capability to metabolize GABA. Conversely, lower expression of ABAT was associated with an increased proliferation rate and correlated with a progenitor-like cellular profile. Transplantation of MB cells into the leptomeningeal compartment decreased proliferative capacity and enhanced ABAT expression. Xenograft models showed MB cells with ABAT knockdown had increased growth in the cerebellar microenvironment. Conversely, MB cells with ABAT overexpression transplanted into the cerebrospinal fluid formed leptomeningeal metastases whereas ABAT knockdown cells could not. These results suggest ABAT expression in MB cells can be modulated by the tumor microenvironment and is required to form leptomeningeal metastases.


2015 ◽  
Vol 18 (6) ◽  
pp. 855-862 ◽  
Author(s):  
Bojana Milojkovic Kerklaan ◽  
Dick Pluim ◽  
Mijke Bol ◽  
Ingrid Hofland ◽  
Johan Westerga ◽  
...  

Author(s):  
Marc C. Chamberlain ◽  
Stephanie E. Combs ◽  
Soichiro Shibui

Carcinomatous meningitis or meningeal carcinomatosis is a term that defines leptomeningeal metastases arising as a result of metastases from systemic solid cancers. Similarly, lymphomatous and leukaemic meningitis result from cerebrospinal fluid dissemination of lymphoma or leukaemia. All three entities are commonly referred to as neoplastic meningitis or leptomeningeal metastases due to involvement of both the cerebrospinal fluid compartment as well as the leptomeninges comprised of the pia and arachnoid. Treatment options are limited for these neurological complications and outcomes are generally poor. New therapeutic strategies are desperately needed as more cancer patients survive longer and are at increased risk for neoplastic meningitis.


2017 ◽  
Vol 19 (suppl_6) ◽  
pp. vi41-vi41
Author(s):  
Mark van Bussel ◽  
Dick Pluim ◽  
Bojana Milojkovic-Kerklaan ◽  
Daan van den Broek ◽  
Jos Beijnen ◽  
...  

2011 ◽  
Vol 29 (15_suppl) ◽  
pp. 2075-2075
Author(s):  
S. Salingue ◽  
M. Girot ◽  
I. Rodrigues ◽  
S. Taillibert ◽  
N. Kotecki ◽  
...  

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