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Multimodal study of CHI3L1 inhibition and its effect on angiogenesis, migration, immune response and refractive index of cellular structures in glioblastoma.

Authors :
Rusak, Agnieszka
Buzalewicz, Igor
Mrozowska, Monika
Wiatrak, Benita
Haczkiewicz-Leśniak, Katarzyna
Olbromski, Mateusz
Kmiecik, Alicja
Krzyżak, Edward
Pietrowska, Aleksandra
Moskal, Jakub
Podhorska-Okołów, Marzenna
Podbielska, Halina
Dzięgiel, Piotr
Source :
Biomedicine & Pharmacotherapy. May2023, Vol. 161, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Glioblastoma is one of the most aggressive tumours with a poor response to treatment and a poor prognosis for patients. One of the proteins expressed in glioblastoma tissue is CHI3L1 (YKL-40), which is upregulated and known for its angiogenesis-supporting and pro-tumour immunomodulatory effects in a variety of cancers. In this paper we present the anti-angiogenic, anti-migratory and immunomodulatory effects of the compound G721–0282, an inhibitor of CHI3L1. The inhibitor-induced changes were investigated using conventional techniques as well as the novel label-free digital holographic tomography (DHT), a quantitative phase imaging technique that allows the reconstruction of the refractive index (RI), which is used as an image contrast for 3D visualisation of living cells. DHT allowed digital staining of individual cells and intercellular structures based only on their specific RI. Quantitative spatially resolved analysis of the RI data shows that the concentration of G721–0282 leads to significant changes in the density of cells and their intracellular structures (in particular the cytoplasm and nucleus), in the volume of lipid droplets and in protein concentrations. Studies in the U-87 MG glioblastoma cell line, THP-1 monocytes differentiated into macrophages, human microvascular endothelial cells (HMEC-1) and in the spheroid model of glioblastoma composed of U-87 MG, HMEC-1 and macrophages suggest that inhibition of CHI3L1 may have potential in the antitumour treatment of glioblastoma. In this paper, we also propose a spheroid model for in vitro studies that mimics this type of tumour. [Display omitted] • Multimodal study of CHI3L1 inhibition in glioblastoma cells. • CHI3L1 inhibition is mediated by changes in pSTAT-3 phosphorylation. • G721-0282 reduces angiogenesis, cell migration and deregulates cytokine balance. • Holotomography revealed changes in the cytoskeletal density of glioblastoma cells. • Label-free quantitative analysis of changes in intracellular protein concentration. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07533322
Volume :
161
Database :
Academic Search Index
Journal :
Biomedicine & Pharmacotherapy
Publication Type :
Academic Journal
Accession number :
162759912
Full Text :
https://doi.org/10.1016/j.biopha.2023.114520