Co-culture of Glutamatergic Neurons and Pediatric High-Grade Glioma Cells Into Microfluidic Devices to Assess Electrical Interactions

被引:5
|
作者
Fuchs, Quentin [1 ]
Batut, Aurelie [2 ]
Gleyzes, Melanie [2 ]
Rontard, Jessica [2 ]
Miny, Louise [2 ]
Libralato, Margot [2 ]
Vieira, Janaina [2 ]
Debis, Delphine [2 ]
Larramendy, Florian [2 ]
Honegger, Thibault [2 ]
Messe, Melissa [1 ]
Pierrevelcin, Marina [1 ]
Lhermitte, Benoit [1 ,3 ]
Dontenwill, Monique [1 ]
Entz-Werle, Natacha [1 ,4 ]
机构
[1] UMR CNRS 7021, Lab Bioimaging & Pathol, Team Tumoral Signaling & Therapeut Targets, Paris, France
[2] NETRI, Toulouse, France
[3] Univ Hosp Strasbourg, Pathol Dept, Ctr Ressources Biol, Strasbourg, France
[4] Univ Hosp Strasbourg, Pediat Oncohematol Unit, Strasbourg, France
来源
关键词
D O I
10.3791/62748
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Pediatric high-grade gliomas (pHGG) represent childhood and adolescent brain cancers that carry a rapid dismal prognosis. Since there is a need to overcome the resistance to current treatments and find a new way of cure, modeling the disease as close as possible in an in vitro setting to test new drugs and therapeutic procedures is highly demanding. Studying their fundamental pathobiological processes, including glutamatergic neuron hyperexcitability, will be a real advance in understanding interactions between the environmental brain and pHGG cells. Therefore, to recreate neurons/pHGG cell interactions, this work shows the development of a functional in vitro model co-culturing human-induced Pluripotent Stem (hiPS)-derived cortical glutamatergic neurons pHGG cells into compartmentalized microfluidic devices and a process to record their electrophysiological modifications. The first step was to differentiate and characterize human glutamatergic neurons. Secondly, the cells were cultured in microfluidic devices with pHGG derived cell lines. Brain microenvironment and neuronal activity were then included in this model to analyze the electrical impact of pHGG cells on these micro-environmental neurons. Electrophysiological recordings are coupled using multielectrode arrays (MEA) to these microfluidic devices to mimic physiological conditions and to record the electrical activity of the entire neural network. A significant increase in neuron excitability was underlined in the presence of tumor cells.
引用
收藏
页数:15
相关论文
共 30 条
  • [21] Pediatric and Adult High-Grade Glioma Stem Cell Culture Models Are Permissive to Lytic Infection with Parvovirus H-1
    Josupeit, Rafael
    Bender, Sebastian
    Kern, Sonja
    Leuchs, Barbara
    Hielscher, Thomas
    Herold-Mende, Christel
    Schlehofer, Joerg R.
    Dinsart, Christiane
    Witt, Olaf
    Rommelaere, Jean
    Lacroix, Jeannine
    VIRUSES-BASEL, 2016, 8 (05):
  • [22] Targeting the IGF-Axis in Cultured Pediatric High-Grade Glioma Cells Inhibits Cell Cycle Progression and Survival
    Chen, Yinhsuan Michely
    Leibovitch, Matthew
    Zeinieh, Michele
    Jabado, Nada
    Brodt, Pnina
    PHARMACEUTICALS, 2023, 16 (02)
  • [23] METABOLIC INTERACTIONS BETWEEN TREATMENT-RESISTANT SLOW-CYCLING CELLS AND THE IMMUNE SYSTEM IN HIGH-GRADE GLIOMA
    Sayour, Elias
    Yang, Changlin
    Tian, Guimei
    Grippin, Adam
    Dajac, Mariana
    Nazareth, Brian
    Andrews, Michael
    Karachi, Aida
    Mendez-Gomez, Hector
    Stover, Brian
    Moore, Ginger
    Flores-Toro, Joseph
    Divita, Bayli
    Kresak, Jesse
    Rahman, Maryam
    Flores, Catherine
    Huang, Jianping
    Harrison, Jeffrey
    Mitchell, Duane
    Deleyrolle, Loic
    NEURO-ONCOLOGY, 2019, 21 : 253 - 254
  • [24] NK cells demonstrate robust cytotoxicity against ovarian high-grade serous carcinoma in 2D and 3D co-culture models
    Yang, Deyi
    Ennis, Darren P.
    Mahalingam, Preethika
    Burr, Joanna
    Brady, Hugh J. M.
    McNeish, Iain A.
    CANCER IMMUNOLOGY RESEARCH, 2025, 13 (02)
  • [25] Autologous patient-derived organoid-immune cell co-culture platform for therapeutics discovery in high-grade endometrial cancer
    Chung, Charlie
    Nizam, Aaron
    Yueh, Brian
    Subhash, Santhilal
    Frimer, Marina
    Goldberg, Gary L.
    Beyaz, Semir
    CLINICAL CANCER RESEARCH, 2024, 30 (05)
  • [26] Autologous patient-derived organoid-immune cell co-culture platform for therapeutic discovery in high-grade endometrial cancer
    Chung, Charlie
    Nizam, Aaron
    Yueh, Brian
    Subhash, Santhilal
    Eskiocak, Onur
    Frimer, Marina
    Goldberg, Gary L.
    Beyaz, Semir
    CANCER RESEARCH, 2023, 83 (07)
  • [27] RADIATION-DERIVED TREATMENT-RESISTANT PDX AND CELL CULTURE MODELS RECAPITULATE THE CHARACTERISTICS OF MATCHED PRIMARY/RECURRENT PEDIATRIC HIGH-GRADE GLIOMA
    Knox, Aaron J.
    Flannery, Patrick
    Zukosky, Anjali
    DeSisto, John
    Sanford, Bridget
    van Court, Benjamin
    Donson, Andrew
    Lemma, Rakeb
    Chatwin, Hannah
    Karam, Sana D.
    Vibhakar, Rajeev
    Jones, Ken
    Green, Adam L.
    NEURO-ONCOLOGY, 2020, 22 : 417 - 417
  • [28] Isolation and characterization of immune cells from the tumor microenvironment of genetically engineered pediatric high-grade glioma models using the sleeping beauty transposon system
    Garcia-Fabiani, Maria Belen
    Comba, Andrea
    Kadiyala, Padma
    Haase, Santiago
    Nunez, Felipe Javier
    Altshuler, David
    Lowenstein, Pedro Ricardo
    Castro, Maria Graciela
    TUMOR IMMUNOLOGY AND IMMUNOTHERAPY - CELLULAR METHODS, PT B, 2020, 632 : 369 - 388
  • [29] Peripheral Blood CD8+ CD28+ T Cells as an Independent Predictor of Treatment Response and Survival After Concurrent Chemoradiotherapy in Pediatric High-Grade Glioma Patients
    Wang, Shuo
    Mu, Xiaofeng
    Wang, Xiaoli
    Chen, Li
    Lu, Changyu
    Song, Linan
    CLINICAL MEDICINE INSIGHTS-ONCOLOGY, 2024, 18
  • [30] H2A.Z histone variants facilitate HDACi-dependent removal of H3.3K27M mutant protein in pediatric high-grade glioma cells
    Leszczynska, Katarzyna B.
    Freitas-Huhtamaki, Amanda
    Jayaprakash, Chinchu
    Dzwigonska, Monika
    Vitorino, Francisca N. L.
    Horth, Cynthia
    Wojnicki, Kamil
    Gielniewski, Bartlomiej
    Szadkowska, Paulina
    Kaza, Beata
    Nazarian, Javad
    Ciolkowski, Maciej K.
    Trubicka, Joanna
    Grajkowska, Wieslawa
    Garcia, Benjamin A.
    Majewski, Jacek
    Kaminska, Bozena
    Mieczkowski, Jakub
    CELL REPORTS, 2024, 43 (02):