189 results found
    1. Cancer Biology
    2. Cell Biology

    mitoBKCa is functionally expressed in murine and human breast cancer cells and potentially contributes to metabolic reprogramming

    Helmut Bischof, Selina Maier ... Robert Lukowski
    A novel role of the mitochondrial BKCa channel involves the metabolic reprogramming of breast cancer cells, facilitating their unrestricted proliferation and O2-independence, which is also of potential clinical relevance.
    1. Cell Biology
    2. Neuroscience

    The LRRK2 G2019S mutation alters astrocyte-to-neuron communication via extracellular vesicles and induces neuron atrophy in a human iPSC-derived model of Parkinson’s disease

    Aurelie de Rus Jacquet, Jenna L Tancredi ... Erin K O'Shea
    Extracellular vesicles are proposed as novel, non-cell-autonomous mediators of neuronal atrophy in Parkinson's disease.
    1. Cancer Biology
    2. Immunology and Inflammation

    Chromosomal instability induced in cancer can enhance macrophage-initiated immune responses that include anti-tumor IgG

    Brandon H Hayes, Mai Wang ... Dennis E Discher
    Chromosomal instability induced in solid tumors can combine with macrophages that are made highly phagocytic to thereby initiate elimination of and immunity against poorly immunogenic tumors in immunocompetent mice.
    1. Computational and Systems Biology
    2. Cancer Biology

    Comparison of Tug-of-War Models Assuming Moran versus Branching Process Population Dynamics

    Khanh N. Dinh, Monika K. Kurpas, Marek Kimmel
    Not revised
    Reviewed Preprint v1
    • Valuable
    • Incomplete
    • Inadequate
    1. Computational and Systems Biology

    Applying causal discovery to single-cell analyses using CausalCell

    Yujian Wen, Jielong Huang ... Hao Zhu
    Based on benchmarking various methods and analyzing multiple real scRNA-seq datasets, a computational platform/workflow and a set of tips for best practices are developed for analyzing causal interactions or relationships in single cells.
    1. Cancer Biology

    The T cell receptor β chain repertoire of tumor infiltrating lymphocytes improves neoantigen prediction and prioritization

    Thi Mong Quynh Pham, Thanh Nhan Nguyen ... Le Son Tran
    The integration of pHLA binding and pHLA-TCR analysis effectively improves the precision of insilico neoantigen prioritization, potentially enhancing personalized immunotherapies for colorectal cancer.
    1. Computational and Systems Biology
    2. Developmental Biology

    Motion sensing superpixels (MOSES) is a systematic computational framework to quantify and discover cellular motion phenotypes

    Felix Y Zhou, Carlos Ruiz-Puig ... Xin Lu
    A new computational framework provides a flexible and general approach for single and collective biological motion characterisation and phenotyping ideally suited for high-throughput timelapse screens.
    1. Cell Biology
    2. Cancer Biology

    miR-142 regulates the tumorigenicity of human breast cancer stem cells through the canonical WNT signaling pathway

    Taichi Isobe, Shigeo Hisamori ... Yohei Shimono
    Insights into the roles and mechanisms of two of the miRNAs upregulated in human breast cancer stem cells in at least some breast cancers are presented.
    1. Computational and Systems Biology
    2. Neuroscience

    Robust, fast and accurate mapping of diffusional mean kurtosis

    Megan E Farquhar, Qianqian Yang, Viktor Vegh
    Mean kurtosis brain maps, derived from a sub-diffusion model with a novel clinically feasible two-diffusion-time acquisition, exhibit superior tissue contrast compared to the traditional diffusional kurtosis imaging (DKI).
    1. Cancer Biology

    Tsc2 disruption in mesenchymal progenitors results in tumors with vascular anomalies overexpressing Lgals3

    Peter J Klover, Rajesh L Thangapazham ... Thomas N Darling
    Tsc2 inactivation in mouse mesenchymal progenitors produced tumors with vascular anomalies reminiscent of human angiomyolipomas, and a gene expression signature in Tsc2-deficient tissues which included Lgals3, as a novel potential biomarker for TSC1/2 loss.

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