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Characterisation of cold-selective lamina I spinal projection neurons in the mouse.

Aimi N Razlan | Wenhui Ma | Allen C Dickie | Erika Polgar | Anna G McFarlane | Mansi Yadav | Andrew H Cooper | Douglas Strathdee | Masahiko Watanabe | Andrew M Bell | Andrew J Todd | Junichi Hachisuka
eLife | 2026

Skin cooling is detected by primary afferents that express the Trpm8 channel, but how this information is conveyed to the brain remains poorly understood. We have previously identified a population of lamina I projection neurons belonging to the anterolateral system (ALS) that receive numerous contacts from Trpm8-expressing primary afferents. Here, using a semi-intact somatosensory preparation, we provide evidence that these cells correspond to the cold-selective ALS neurons identified in previous physiological studies. We also confirm the presence of synapses from Trpm8 afferents onto these cells at the ultrastructural level and with optogenetics. Based on our previous transcriptomic findings, we identify calbindin as a molecular marker, and show that this can be used to target the cold-selective ALS neurons for anterograde tracing studies. We provide evidence that they project to brain regions that have been implicated in thermosensation: the rostralmost part of the lateral parabrachial area, the caudal part of the periaqueductal grey matter, and the posterior triangular and ventral posterolateral nuclei of the thalamus. Our findings provide important insights into the organisation of neuronal circuits that underlie thermoregulation and the perception of cold stimuli applied to the skin.

Pubmed ID: 42126073

Antibodies used in this publication

Associated grants

  • Agency: Wellcome Trust, United Kingdom
    Id: 10.35802/219433
  • Agency: Medical Research Council, United Kingdom
    Id: MR/V033638/1
  • Agency: Wellcome Trust, United Kingdom
    Id: 10.35802/304005

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This is a list of tools and resources that we have found mentioned in this publication.


Welcome Trust (tool)

RRID:SCR_001852

The Wellcome Trust is the largest charity in the UK. We fund innovative biomedical research, in the UK and internationally, spending over 600 million each year to support the brightest scientists with the best ideas. The Wellcome Trust is an independent charity funding research to improve human and animal health. Established in 1936 and with an endowment of around 13 billion, it is the UK's largest non-governmental source of funds for biomedical research. What we do We spend over 600 million every year both in the UK and internationally achieving our mission. Funding We support many different kinds of research and activities with the ultimate aim of protecting and improving human and animal health. This support is not restricted to UK researchers - we devote significant funding to international research too. Biomedical science Our biomedical science funding enables the investigation of health and disease in humans and animals. This includes funding for scientists, clinicians and veterinarians at different career stages. Technology transfer Our technology transfer funding supports the development of innovative, early-stage projects with potential medical applications. Medical humanities Our medical humanities funding supports research into biomedical ethics and the history of medicine. Public engagement Our public engagement funding promotes interest, excitement and debate around science and society. Capital funding Our capital funding is for large-scale construction or refurbishment projects in the UK that support science, public engagement, medical history, or the activities of learned societies. Strategic awards Our Strategic Awards provide flexible funding that adds value to excellent research groups. Managing a grant This area contains information and resources to help you manage a grant once it has been awarded, from the grant-start certificate to the end-of-grant report and beyond. Education Resources Teaching and education Resources to help promote contemporary science in the curriculum and to enable young people to engage with biomedical science. Tree of Life Darwin200 Big Picture Science Learning Centres Scientific animations Creative Encounters Courses and conferences Trust-run conferences, courses and workshops for scientists, historians, ethicists, social scientists, teachers, healthcare professionals and policymakers, held in the UK and overseas. Advanced Courses Scientific conferences Conference centres Retreats History of medicine Biomedical ethics Biomedical resources Tools, databases and information to support different areas of biomedical research, including genomics, post-genomics and developmental biology. Animal research Genomics Model organisms Microorganisms Post-genomics Tissues Researcher support Support and advice for all kinds of engagement activities to help you communicate your work in the most effective and rewarding way possible. About researcher support National opportunities Regional opportunities Highlights Publications Browse a wealth of publications covering all aspects of the work we fund. Wellcome Trust websites Explore a range of sites covering key biomedical topics and our public engagement activities.

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SciPy (tool)

RRID:SCR_008058

A Python-based environment of open-source software for mathematics, science, and engineering. The core packages of SciPy include: NumPy, a base N-dimensional array package; SciPy Library, a fundamental library for scientific computing; and IPython, an enhanced interactive console.

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Medical Research Council (tool)

RRID:SCR_011018

The Medical Research Council is a publicly-funded organization dedicated to improving human health. We support research across the entire spectrum of medical sciences, in universities and hospitals, in our own units, centers and institutes in the UK, and in our units in Africa.

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Inkscape (tool)

RRID:SCR_014479

A vector graphics software which runs on Windows, Mac OS X and GNU/Linux. It can import and export various file formats, including SVG, AI, EPS, PDF, PS and PNG. Features include object creation, object manipulation, color editing, and text editing.

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Anti-NeuN (antibody)

RRID:AB_2619988

This polyclonal targets NeuN

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GFP (green fluorescent protein) antibody (antibody)

RRID:AB_2491093

This polyclonal targets green fluorescent protein (YP_002302326)

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VGluT3 (vesicular glutamate transporte-3) antibody (antibody)

RRID:AB_2571856

This polyclonal targets mouse VGluT3, 522-588 aa (AF510321)

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Anti-Cholera Toxin B Subunit (antibody)

RRID:AB_10013220

This polyclonal targets Cholera toxin B Subunit

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Anti-GFP antibody (antibody)

RRID:AB_300798

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Calbindin D-28k (antibody)

RRID:AB_10000340

This polyclonal targets Calbindin D-28k

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Anti-TRPV1 (antibody)

RRID:AB_2864792

This polyclonal targets TRPV1

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Homer1 antibody (antibody)

RRID:AB_2631104

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STOCK Gt(ROSA)26Sortm1.2(CAG-EGFP)Fsh/Mmjax (organism)

RRID:MMRRC_032038-JAX

Mus musculus with name STOCK Gt(ROSA)26Sortm1.2(CAG-EGFP)Fsh/Mmjax from MMRRC.

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Neurolucida (software resource)

RRID:SCR_001775

Neurolucida is advanced scientific software for brain mapping, neuron reconstruction, anatomical mapping, and morphometry. Since its debut more than 20 years ago, Neurolucida has continued to evolve and has become the worldwide gold-standard for neuron reconstruction and 3D mapping. Neurolucida has the flexibility to handle data in many formats: using live images from digital or video cameras; stored image sets from confocal microscopes, electron microscopes, and scanning tomographic sources, or through the microscope oculars using the patented LucividTM. Neurolucida controls a motorized XYZ stage for integrated navigation through tissue sections, allowing for sophisticated analysis from many fields-of-view. Neurolucidas Serial Section Manager integrates unlimited sections into a single data file, maintaining each section in aligned 3D space for full quantitative analysis. Neurolucidas neuron tracing capabilities include 3D measurement and reconstruction of branching processes. Neurolucida also features sophisticated tools for mapping delineate and map anatomical regions for detailed morphometric analyses. Neurolucida uses advanced computer-controlled microscopy techniques to obtain accurate results and speed your work. Plug-in modules are available for confocal and MRI analysis, 3D solid modeling, and virtual slide creation. The user-friendly interface gives you rapid results, allowing you to acquire data and capture the full 3D extent of neurons and brain regions. You can reconstruct neurons or create 3D serial reconstructions directly from slides or acquired images, and Neurolucida offers full microscope control for brightfield, fluorescent, and confocal microscopes. Its added compatibility with 64-bit Microsoft Vista enables reconstructions with even larger images, image stacks, and virtual slides. Adding the Solid Modeling Module allows you to rotate and view your reconstructions in real time. Neurolucida is available in two separate versions Standard and Workstation. The Standard version enables control of microscope hardware, whereas the Workstation version is used for offline analysis away from the microscope. Neurolucida provides quantitative analysis with results presented in graphical or spreadsheet format exportable to Microsoft Excel. Overall, features include: - Tracing Neurons - Anatomical Mapping - Image Processing and Analysis Features - Editing - Morphometric Analysis - Hardware Integration - Cell Analysis - Visualization Features Sponsors: Neurolucida is supported by MBF Bioscience.

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B6;129S-Calb1tm2.1(cre)Hze/J (organism)

RRID:IMSR_JAX:028532

Mus musculus with name B6;129S-Calb1tm2.1(cre)Hze/J from IMSR.

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B6.Cg-Gt(ROSA)26Sortm9(CAG-tdTomato)Hze/J (organism)

RRID:IMSR_JAX:007909

Mus musculus with name B6.Cg-Gt(ROSA)26Sortm9(CAG-tdTomato)Hze/J from IMSR.

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Black Zen software (software resource)

RRID:SCR_018163

Software used to analyze images obtained from microscope. ZEN Black is software Zeiss uses to run their laser-based instruments.

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pClamp (software resource)

RRID:SCR_011323

Software suite for electrophysiology data acquisition and analysis by Molecular Devices. Used for the control and recording of voltage clamp, current clamp, and patch clamp experiments. The software suite consists of Clampex 11 Software for data acquisition, AxoScope 11 Software for background recording, Clampfit 11 Software for data analysis, and optional Clampfit Advanced Analysis Module for sophisticated and streamlined analysis.

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Neurolucida Explorer (software resource)

RRID:SCR_017348

Companion analytical software for Neurolucida and Neurolucida 360, designed to perform extensive morphometric analysis on neuron reconstructions, serial section reconstructions, and brain maps.

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GraphPad Prism (software resource)

RRID:SCR_002798

Statistical analysis software that combines scientific graphing, comprehensive curve fitting (nonlinear regression), understandable statistics, and data organization. Designed for biological research applications in pharmacology, physiology, and other biological fields for data analysis, hypothesis testing, and modeling.

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