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  1. Episode 71: December 2020

    In this episode, we hear about exercise and cancer, mental health in academia, sea slugs, anti-nausea drugs and how the brain remembers unpleasant tastes.
  2. A syringe injecting a clear liquid into the Earth

    Episode 56: April 2019

    In this episode, we hear about multipartite viruses, brain maps of people without hands, measles vaccinations, reproducible science, and how to spot premature babies.
  3. Episode 37: March 2017

    In this episode we hear about helping people with paralysis to communicate, how exposing mice to nicotine can affect their sons, scaffold-building parasites, the origins of handedness and plain-language summaries of research.
  4. Episode 50: October 2018

    In this special episode, we discuss how tiny microbes in the gut – the microbiome – can have a huge impact on the lives of animals.
  5. April 2014

    Episode 11: April 2014

    In this episode we hear about neuropathic pain, gene therapy, insulin production, aging in worms, and how flatworms grow new body parts.
    1. Chromosomes and Gene Expression
    2. Cell Biology

    Aging, Geroscience and Longevity: A Special Issue

    Edited by Matt Kaeberlein et al.
    eLife is pleased to present a Special Issue to highlight recent advances in the mechanistic understanding of aging and interventions that extend longevity.
  6. Episode 76: October 2021

    In this episode, we hear about the ways that junk food affects monkeys, grey hair, empathetic rats, using smart phones to fight COVID-19, and how the slave trade spread disease.
    1. Developmental Biology
    2. Neuroscience

    Robo2 regulates synaptic oxytocin content by affecting actin dynamics

    Savani Anbalagan et al.
    Real-time monitoring of oxytocin-loaded vesicles and synaptic actin dynamics in zebrafish reveal that Slit3-Robo2-Cdc42 signalling maintains steady-state levels of mature oxytocin neuropeptide readily primed to be secreted upon physiological demand.
    1. Cell Biology
    2. Developmental Biology

    Protein phosphatase 1 activity controls a balance between collective and single cell modes of migration

    Yujun Chen et al.
    Protein phosphatase 1 activity promotes cohesive collective cell migration by restricting actomyosin contractility to the periphery of the collective and maintaining proper cadherin–catenin complex protein levels at cell–cell junctions.
    1. Biochemistry and Chemical Biology
    2. Cell Biology

    Regulating G protein-coupled receptors by topological inversion

    Bray Denard et al.
    Multiple biochemical assays show that the topology of CCR5 and possibly other GPCRs may be inverted by ceramide or other sphingolipids through the process of regulated alternative translocation.