Related Experiment Video
Updated: Mar 11, 2026

Tissue Preparation and Immunostaining of Mouse Sensory Nerve Fibers Innervating Skin and Limb Bones
Published on: January 26, 2012
Growth hormone regulates the sensitization of developing peripheral nociceptors during cutaneous inflammation
Xiaohua Liu1,2, Kathryn J Green1, Zachary K Ford1
1Department of Anesthesia, Division of Pain Management, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, USA.
Insights
Growth hormone (GH) reduces pain sensitivity in developing mice with skin inflammation. GH blocks nociceptor sensitization and hypersensitivity, potentially by regulating the insulin-like growth factor 1 receptor (IGFr1).
Area of Science:
- Neuroscience
- Developmental Biology
- Pain Research
Background:
- Cutaneous inflammation impacts primary afferent function and dorsal root ganglia (DRG) gene expression.
- Mechanisms of developmental pain hypersensitivity and peripheral afferent sensitization remain unclear.
- Growth hormone (GH) may play a role in pain modulation, but its effect on neonatal nociception is unknown.
Purpose of the Study:
- To investigate the role of GH in modulating sensory neuron function and hyperresponsiveness during postnatal skin inflammation.
- To determine if GH influences nociception and pain behaviors in young mice experiencing inflammation.
Main Methods:
- Utilized an ex vivo hairy skin-saphenous nerve-DRG-spinal cord preparation to study cutaneous afferent responses.
- Examined behavioral hypersensitivity (mechanical and thermal) in mice at postnatal days 7 (P7) and P14.
- Assessed the effects of exogenous GH administration and insulin-like growth factor 1 receptor (IGFr1) knockdown.
Main Results:
- Skin inflammation reduced GH levels in the affected hind paw skin at P7 and P14.
- Exogenous GH administration reversed mechanical and thermal hypersensitivity and altered nociceptor function.
- GH modulated IGFr1 transcriptional output in DRG neurons, and IGFr1 knockdown prevented inflammation-induced hypersensitivity.
Conclusions:
- GH plays a crucial role in blocking inflammation-induced nociceptor sensitization during postnatal development.
- GH treatment reduces pain-like behaviors by suppressing IGFr1 upregulation in DRG neurons.
- These findings suggest a potential therapeutic role for GH in managing inflammatory pain in neonates.
Abstract:
Cutaneous inflammation alters the function of primary afferents and gene expression in the affected dorsal root ganglia (DRG). However, specific mechanisms of injury-induced peripheral afferent sensitization and behavioral hypersensitivity during development are not fully understood. Recent studies in children suggest a potential role for growth hormone (GH) in pain modulation. Growth hormone modulates homeostasis and tissue repair after injury, but how GH affects nociception in neonates is not known. To determine whether GH played a role in modulating sensory neuron function and hyperresponsiveness during skin inflammation in young mice, we examined behavioral hypersensitivity and the response properties of cutaneous afferents using an ex vivo hairy skin-saphenous nerve-DRG-spinal cord preparation. Results show that inflammation of the hairy hind paw skin initiated at either postnatal day 7 (P7) or P14 reduced GH levels specifically in the affected skin. Furthermore, pretreatment of inflamed mice with exogenous GH reversed mechanical and thermal hypersensitivity in addition to altering nociceptor function. These effects may be mediated through an upregulation of insulin-like growth factor 1 receptor (IGFr1) as GH modulated the transcriptional output of IGFr1 in DRG neurons in vitro and in vivo. Afferent-selective knockdown of IGFr1 during inflammation also prevented the observed injury-induced alterations in cutaneous afferents and behavioral hypersensitivity similar to that after GH pretreatment. These results suggest that GH can block inflammation-induced nociceptor sensitization during postnatal development leading to reduced pain-like behaviors, possibly by suppressing the upregulation of IGFr1 within DRG.
Related Concept Videos
Nociception
Sensory Functions of the Skin
There are two main categories of receptors on the skin: capsulated and non-capsulated. The non-capsulated ones are mainly the pain receptors. The capsulated ones can be further categorized based on the...
Inflammatory Response
Inflammation can be triggered by various stimuli, such as impact, abrasion, chemical irritation, infections, and extreme hot or cold temperatures. These can damage cells and connective tissue fibers,...
Thermosensation
Hypersensitivities
Types of Hypersensitivities
Hypersensitivity reactions are categorized into four types: Type 1, Type 2, Type 3, and Type 4. Each type has a distinct mechanism...
GPCRs Regulate Adenylyl Cylase Activity

