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Precision medicine is starting to incorporate functional assays to evaluate anticancer agents on patient-isolated tissues or cells to select for the most effective. Among these new technologies, dynamic BH3 profiling (DBP) has emerged and extensively been used to predict treatment efficacy in different types of cancer. DBP uses synthetic BH3 peptides to measure early apoptotic events ('priming') and anticipate therapy-induced cell death leading to tumor elimination. This predictive functional assay presents multiple advantages but a critical limitation: the cell number requirement, that limits drug screening on patient samples, especially in solid tumors. To solve this problem, we developed an innovative microfluidic-based DBP (µDBP) device that overcomes tissue limitations on primary samples. We used microfluidic chips to generate a gradient of BIM BH3 peptide, compared it with the standard flow cytometry based DBP, and tested different anticancer treatments. We first examined this new technology's predictive capacity using gastrointestinal stromal tumor (GIST) cell lines, by comparing imatinib sensitive and resistant cells, and we could detect differences in apoptotic priming and anticipate cytotoxicity. We then validated µDBP on a refractory GIST patient sample and identified that the combination of dactolisib and venetoclax increased apoptotic priming. In summary, this new technology could represent an important advance for precision medicine by providing a fast, easy-to-use and scalable microfluidic device to perform DBP in situ as a routine assay to identify the best treatment for cancer patients.
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http://dx.doi.org/10.1038/s41698-022-00333-0 | DOI Listing |
Cell Death Differ
August 2025
Cell and Developmental Biology, The Centre for Cell and Molecular Dynamics, Faculty of Life Sciences,, University College London, London, UK.
We used CRISPR-Cas-mediated modification of the genomic loci for C. elegans genes ced-9 Bcl-2, ced-4 Apaf1 and ced-3 Caspase to add the coding sequence for the mNeonGreen (mNG) fluorescent protein to the endogenous open reading frames. In each case, the addition of mNG caused little or no apparent alteration of gene function.
View Article and Find Full Text PDFCancer Treat Res Commun
September 2025
Department of Neurosurgery, Nasser Institute for Research and Treatment, Cairo, Egypt; Department of Neurosurgery, Faculty of Medicine, Misr University for Science and Technology, Giza, Egypt.
Cancer cells often survive treatment by blocking the natural process of cell death, allowing them to return and grow again. The BCL-2 protein family plays a central role in this process, controlling whether a cell lives or dies. Among its members, the BH3-only proteins initiate the apoptotic cascade in response to cellular stress.
View Article and Find Full Text PDFJ Phys Chem Lett
July 2025
Department of Chemistry, National Tsing Hua University, Hsinchu 300-044, Taiwan.
The canonical LQTD motif (residues 56-59) has long been regarded as the sole "address tag" that directs Caspase-8 to cleave the pro-apoptotic protein Bid at D59. Here we overturn this view, showing that Bid's previously uncharted 42-residue "disordered" loop furnishes a second layer of control that can either accelerate or block cleavage. Alanine scanning, MD simulations, DEER spectroscopy, and AlphaFold reveal two physical modules in this loop: an electrostatic clamp formed by E53-D54-E55 that secures the substrate upstream of LQTD, and an entropic flexibility switch at S61-Q62 that modulates catalysis.
View Article and Find Full Text PDFBiomed Pharmacother
July 2025
Department of Molecular Biology of Cancer, Medical University of Lodz, 6/8 Mazowiecka Street, Lodz 92-215, Poland. Electronic address:
Melanoma remains a global health challenge. While targeted therapy with BRAF/MEK inhibitors largely improved the survival and quality of life for advanced melanoma patients, most of them progress due to acquired resistance. Dynamic heterogeneity and phenotypic plasticity of resistant melanoma prompted us to use parthenolide, an agent with an assorted bioactivity profile in combination with agents targeting enhanced pro-survival capacity of resistant melanoma cells.
View Article and Find Full Text PDFTheranostics
May 2025
Institute of Human Genetics, UMR CNRS-Univ. Montpellier, 9002 Montpellier, France.
In the era of precision medicine, there is a growing need for rapid reliable functional assays capable of predicting treatment efficacy. One drug class that may particularly benefit from such assays is BH3 mimetics. These small molecules antagonize anti-apoptotic proteins such as BCL-2, MCL-1, or BCL-XL, on which cancer cells depend for their survival.
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