WT Injury rats were more sensitive to pain than WT Sham at all postoperative time points, validating the pain model. Injured SARM1 KO rats only...
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[title] => Inhibition of SARM1 Reduces Neuropathic Pain in a Spared Nerve Injury Rodent Mod
[paragraph] => Inhibition of SARM1 Reduces Neuropathic Pain in a Spared Nerve Injury Rodent Model
[content] => Authors
Christopher G. Herbosa, Ronald Perez, Alexandra Jaeger, Christopher J. Dy, David M. Brogan
Lab
Journal
Muscle & Nerve
Abstract
WT Injury rats were more sensitive to pain than WT Sham at all postoperative time points, validating the pain model. Injured SARM1 KO rats only demonstrated a difference in mechanical or cold nociception from KO Sham at Week 3. Injured KO rats demonstrated a clear trend of decreased sensitivity compared to WT Injury nociception, reaching significance at Week 4 (p= 0.044). Injured KO rats showed attenuated sensitivity to cold allodynia relative to WT at Week 2 (p= 0.019). IHC revealed decreased macrophages in spared sural nerves of injured KO animals at 2 and 4 weeks, and the proximal portion of tibial/peroneal nerves at Week 2.
Keywords/Topics
inflammation; macrophages; nerve injury; neuropathic pain; SARM1
BIOSEB Instruments Used:
Electronic Von Frey - Wireless (BIO-EVF-WRS),Electronic Von Frey 5 with embedded camera (BIO-EVF5)
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[description_short] => A quick solution to determine the mechanical sensitivity threshold in rodents (mice and rats). Now wireless, to be free from annoying cables!
This precise and easy-to-use electronic instrument is a must-have reference for your research in analgesia, nociception, neuro-pathologies and post-operative pain.


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[description_short] => As an electronic version of the classical Von Frey Filaments esthesiometer (or aesthesiometer), the latest evolution of Bioseb's Electronic Von Frey instrument for determining the mechanical sensitivity threshold in rodents (rats and mice) is a must-have instrument for your reseach on hyperalgesia and allodynia. By measuring and recording the force at which the animal exhibits a paw withdrawal reflex, pathologies related to sensory response and hyper- or hypo-aesthesia can be studied.
The EVF5 includes an embedded camera inside the stimulator handle and a new, dedicated software revolutionizing the experimental process.


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