Skip to main content
Kent Academic Repository

Increased MCL1 dependency leads to new applications of BH3-mimetics in drug-resistant neuroblastoma

Jacob, Maureen, Wiedemann, Sara, Brücher, Daniela, Pieper, Nadja M, Birkhold, Moni, Särchen, Vinzenz, Jeroch, Jan, Demes, Melanie C, Gretser, Steffen, Braun, Yannick, and others. (2023) Increased MCL1 dependency leads to new applications of BH3-mimetics in drug-resistant neuroblastoma. British journal of cancer, 129 (10). pp. 1667-1678. ISSN 0007-0920. E-ISSN 1532-1827. (doi:10.1038/s41416-023-02430-8) (KAR id:103087)

Abstract

Neuroblastoma is a paediatric cancer that is characterised by poor prognosis for chemoresistant disease, highlighting the need for better treatment options. Here, we asked whether BH3-mimetics inhibiting BCL2 proteins may eliminate chemoresistant neuroblastoma cells. We utilised cisplatin-adapted neuroblastoma cell lines as well as patient tissues before and after relapse to study alterations of BCL2 proteins upon chemoresistance. In a direct comparison of cisplatin-resistant cells we identified a prominent loss of sensitivity to BCL2/BCL-X inhibitors that is associated with an increase in MCL1 dependency and high expression of MCL1 in patient tumour tissues. Screening of FDA-approved anti-cancer drugs in chemoresistant cells identified therapeutics that may be beneficial in combination with the clinically tested BH3-mimetic ABT263, but no synergistic drug interactions with the selective MCL1 inhibitor S63845. Further exploration of potential treatment options for chemoresistant neuroblastoma identified immunotherapy based on NK cells as highly promising, since NK cells are able to efficiently kill both parental and chemoresistant cells. These data highlight that the application of BH3-mimetics may differ between first line treatment and relapsed disease. Combination of NK cell-based immunotherapy with BH3-mimetics may further increase killing of chemoresistant neuroblastoma, outlining a new treatment strategy for relapsed neuroblastoma. [Abstract copyright: © 2023. The Author(s).]

Item Type: Article
DOI/Identification number: 10.1038/s41416-023-02430-8
Subjects: Q Science
Divisions: Divisions > Division of Natural Sciences > Biosciences
SWORD Depositor: JISC Publications Router
Depositing User: JISC Publications Router
Date Deposited: 08 Nov 2023 14:09 UTC
Last Modified: 11 Apr 2024 11:11 UTC
Resource URI: https://kar.kent.ac.uk/id/eprint/103087 (The current URI for this page, for reference purposes)

University of Kent Author Information

  • Depositors only (login required):

Total unique views for this document in KAR since July 2020. For more details click on the image.