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Rapid, quantitative methods for characterizing the biological activities of kinase inhibitors in complex human cell systems could allow the biological consequences of differential target selectivity to be monitored early in development, improving the selection of drug candidates. We have previously shown that Biologically Multiplexed Activity Profiling (BioMAP) permits rapid characterization of drug function based on statistical analysis of protein expression data sets from complex primary human cellbased models of disease biology. Here, using four such model systems containing primary human endothelial cells and peripheral blood mononuclear cells in which multiple signaling pathways relevant to inflammation and immune responses are simultaneously activated, we demonstrate that BioMAP analysis can detect and distinguish a wide range of inhibitors directed against different kinase targets. Using a panel of p38 mitogen-activated protein kinase antagonists as a test set, we show further that related compounds can be distinguished by unique features of the biological responses they induce in complex systems, and can be classified according to their induction of shared (on-target) and secondary activities. Statistical comparisons of quantitative BioMAP profiles and analysis of profile features allow correlation of induced biological effects with chemical structure and mapping of biological responses to chemical series or substituents on a common scaffold. Integration of automated BioMAP analysis for prioritization of hits and for structure-activity relationship studies may improve and accelerate the design and selection of optimal therapeutic candidates.
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http://dx.doi.org/10.1089/adt.2004.2.431 | DOI Listing |
Life (Basel)
July 2025
Imaging Department, Gustave Roussy Cancer Campus, Université Paris-Saclay, 94805 Villejuif, France.
Background: Pathological complete response (pCR) serves as a prognostic surrogate endpoint for long-term clinical outcomes in breast cancer patients receiving neoadjuvant systemic therapy (NAST). This study aims to develop and evaluate machine learning-based biomarkers for predicting pCR and recurrence-free survival (RFS).
Methods: This retrospective monocentric study included 235 women (mean age 46 ± 11 years) with non-metastatic breast cancer treated with NAST.
BMJ Open
August 2025
St. John's Institute of Dermatology, Guy's & St. Thomas' NHS Foundation Trust and King's College London, London, UK
Background: Palmoplantar pustulosis (PPP) is a rare, debilitating inflammatory skin disease involving painful pustules on the palms and soles. Janus kinase (JAK) inhibitors target pathways relevant to PPP disease biology but also confer a risk of major adverse cardiovascular events and malignancy in certain 'at risk' individuals; this includes those with PPP given prevalent smoking and cardiovascular risk factors in the PPP population. The feasibility of JAK inhibitor therapy for PPP requires assessment prior to a randomised controlled trial evaluation of drug efficacy and safety for this indication.
View Article and Find Full Text PDFBiol Methods Protoc
July 2025
Departamento & Instituto de Psiquiatria, Faculdade de Medicina FMUSP, Universidade de Sao Paulo, Sao Paulo 05403010, Brazil.
We aimed to develop and validate a standardized, qualitative-quantitative protocol for digital IHC analysis to assess neurodevelopmental biomarkers in placental tissue. Placental tissues from 60 births were obtained from the Western Region Birth Cohort (ROC), and IHC staining was performed using Novolink Polymer System. The primary antibody against 11βHSD2 protein was used for protocol development, and ANXA1 was employed for validation.
View Article and Find Full Text PDFBiol Methods Protoc
August 2025
Department of Radiobiology, Military Faculty of Medicine, University of Defence, Třebešská 1575, Hradec Králové, 500 02, Czech Republic.
The dicentric chromosome assay is a well-established biodosimetric method used to assess absorbed ionizing radiation doses by detecting dicentric chromosomal aberrations. Here, we present a detailed, reproducible protocol for applying the dicentric chromosome assay for evaluation of radioprotective agents, including novel piperazine derivatives compared with amifostine and its active metabolite WR-1065. The protocol covers all key steps-blood sample preparation, irradiation, lymphocyte culture, metaphase preparation, and scoring of dicentric chromosomes.
View Article and Find Full Text PDFBiol Methods Protoc
July 2025
Institute of Evolution in Africa (IDEA), Rice University and Archaeological and Paleontological Museum of the Community of Madrid, 28010, Spain.
Taphonomic research aims at reconstructing processes affecting the preservation and modification of paleobiological entities. Recent critiques of the reliability of deep learning (DL) for taphonomic analysis of bone surface modifications (BSMs), such as that presented by Courtenay . based on a selection of earlier published studies, have raised concerns about the efficacy of the method.
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