Area of research
Molecular Biology · Cellular and Molecular Neuroscience
Research interest
Research interests include Ion channel regulation and function, Neuroscience and Neuropharmacology Research, Pain Mechanisms and Treatments, and RNA Research and Splicing.
A bioluminescent activity dependent platform, BLADe, for converting intracellular activity to photoreceptor activation
CaBLAM: a high-contrast bioluminescent Ca2+ indicator derived from an engineered Oplophorus gracilirostris luciferase
Control of Synaptic Communication through Molecularly Engineered Bioluminescence Light Emission and Sensing
<i>Trpv1</i> -dependent <i>Cacna1b</i> gene inactivation reveals cell-specific functions of Ca <sub>V</sub> 2.2 channels <i>in vivo</i>
Efficient opto- and chemogenetic control in a single molecule driven by FRET-modified bioluminescence
Engineering luminopsins with improved coupling efficiencies
Interleukin-1α links peripheral CaV2.2 channel activation to rapid adaptive increases in heat sensitivity in skin
Peripheral Ca <sub>V</sub> 2.2 Channels in the Skin Regulate Prolonged Heat Hypersensitivity during Neuroinflammation
Peripheral Ca <sub>V</sub> 2.2 channels in skin regulate prolonged heat hypersensitivity during neuroinflammation
CaBLAM! A high-contrast bioluminescent Ca <sup>2+</sup> indicator derived from an engineered <i>Oplophorus gracilirostris</i> luciferase
Up-regulation of cholesterol synthesis pathways and limited neurodegeneration in a knock-in <i>Sod1</i> mutant mouse model of ALS
A New Highly Efficient Molecule for Both Optogenetic and Chemogenetic Control Driven by FRET Amplification of BioLuminescence
A Bioluminescent Activity Dependent Platform, BLADe, for Converting Intracellular Activity to Photoreceptor Activation
Engineering luminopsins with improved coupling efficiencies
Towards a Brighter Constellation: Multi-Organ Neuroimaging of Neural and Vascular Dynamics in the Spinal Cord and Brain
ω-Phonetoxins inhibit voltage-gated calcium Ca <sub>V</sub> 2.2 ion channel splice isoforms of dorsal root ganglia
Interleukin-1α links peripheral Ca <sub>V</sub> 2.2 channel activation to rapid adaptive increases in heat sensitivity in skin
Selective control of synaptically-connected circuit elements by all-optical synapses
Analysing an allelic series of rare missense variants of <i>CACNA1I</i> in a Swedish schizophrenia cohort
Heat But Not Mechanical Hypersensitivity Depends on Voltage-Gated Ca<sub>V</sub>2.2 Calcium Channel Activity in Peripheral Axon Terminals Innervating Skin
Bioluminescent optogenetic (BL-OG) activation of neurons during mouse postnatal brain development
Selective Control of Synaptically-Connected Circuit Elements by All-Optical Synapses
Developing biolight-based molecular technologies for simultaneous mapping, imaging, and controlling neural activity
Cell-specific exon methylation and CTCF binding in neurons regulate calcium ion channel splicing and function
Framework for advancing rigorous research
Epigenetic control of ion channel expression and cell-specific splicing in nociceptors: Chronic pain mechanisms and potential therapeutic targets
Miniaturized Devices for Bioluminescence Imaging in Freely Behaving Animals
Miniaturized Devices for Bioluminescence Imaging in Freely Behaving Animals
Peripheral voltage-gated calcium channels in skin are essential for transient neurogenic thermal hyperalgesia in mice
Author response: Cell-specific exon methylation and CTCF binding in neurons regulate calcium ion channel splicing and function