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Larvae of the fruit fly are a powerful study case for understanding the neural circuits underlying behavior. Indeed, the numerical simplicity of the larval brain has permitted the reconstruction of its synaptic connectome, and genetic tools for manipulating single, identified neurons allow neural circuit function to be investigated with relative ease and precision. We focus on one of the most complex neurons in the brain of the larva (of either sex), the GABAergic anterior paired lateral neuron (APL). Using behavioral and connectomic analyses, optogenetics, Ca imaging, and pharmacology, we study how APL affects associative olfactory memory. We first provide a detailed account of the structure, regional polarity, connectivity, and metamorphic development of APL, and further confirm that optogenetic activation of APL has an inhibiting effect on its main targets, the mushroom body Kenyon cells. All these findings are consistent with the previously identified function of APL in the sparsening of sensory representations. To our surprise, however, we found that optogenetically activating APL can also have a strong rewarding effect. Specifically, APL activation together with odor presentation establishes an odor-specific, appetitive, associative short-term memory, whereas naive olfactory behavior remains unaffected. An acute, systemic inhibition of dopamine synthesis as well as an ablation of the dopaminergic pPAM neurons impair reward learning through APL activation. Our findings provide a study case of complex circuit function in a numerically simple brain, and suggest a previously unrecognized capacity of central-brain GABAergic neurons to engage in dopaminergic reinforcement. The single, identified giant anterior paired lateral (APL) neuron is one of the most complex neurons in the insect brain. It is GABAergic and contributes to the sparsening of neuronal activity in the mushroom body, the memory center of insects. We provide the most detailed account yet of the structure of APL in larval as a neurogenetically accessible study case. We further reveal that, contrary to expectations, the experimental activation of APL can exert a rewarding effect, likely via dopaminergic reward pathways. The present study both provides an example of unexpected circuit complexity in a numerically simple brain, and reports an unexpected effect of activity in central-brain GABAergic circuits.
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http://dx.doi.org/10.1523/JNEUROSCI.2310-22.2023 | DOI Listing |
Biom J
October 2025
Novella Clinical Full Service, IQVIA, Melbourne, Australia.
Phase I dose escalation trials in oncology generally aim to find the maximum tolerated dose. However, with the advent of molecular-targeted therapies and antibody drug conjugates, dose-limiting toxicities are less frequently observed, giving rise to the concept of optimal biological dose (OBD), which considers both efficacy and toxicity. The estimand framework presented in the addendum of the ICH E9(R1) guidelines strengthens the dialogue between different stakeholders by bringing in greater clarity in the clinical trial objectives and by providing alignment between the targeted estimand under consideration and the statistical analysis methods.
View Article and Find Full Text PDFWounds
August 2025
Solventum, Maplewood, MN, USA.
Background: Initially limited to inpatient use, negative pressure wound therapy (NPWT) is now frequently used in community settings. However, complexities in wound management step-down strategies in the United Kingdom, including regional variations in referral processes, lack of consensus on funding criteria, and limited availability of NPWT units, have led to extended hospital length of stay (LOS) for patients ready for discharge but still needing NPWT. Single-use NPWT (sNPWT) can serve as a bridge between hospital and community NPWT.
View Article and Find Full Text PDFNutr Clin Pract
September 2025
Centre for Health Services Research, University of Queensland, Brisbane, Queensland, Australia.
Theoretical approaches can help to plan, guide, and evaluate implementation projects that target real-world practice problems. This paper provides an overview of the integrated Promoting Action on Research Implementation in Health Services (i-PARIHS) framework and summarizes its use in nutrition and dietetics research and practice. A narrative summary of its use was compiled from the published literature based on citations from two key reference sources of the i-PARIHS framework.
View Article and Find Full Text PDFBMC Med Educ
September 2025
Medical Didactics and Education Research, DEMEDA, Faculty of Medicine, University of Augsburg, Augsburg, Germany.