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Experimentellt skapande av myofasciala triggerpunkter hos gnagare

Ramon Margalef, Marc Sisquella, Marc Bosque, Clara Romeu, Orlando Mayoral, Sonia Monterde, Mercedes Priego, Rafael Guerra-Perez, Nicolau Ortiz, Josep Tomás, Manel M Santafe
Nyckelinsikter
  1. 01En djurmodell för att skapa triggerpunkter
  2. 02Ökad nervsignalering framkallade triggerpunkts-kännetecken
  3. 03Kontraktionsknutor visade på bindvävsförändringar
  4. 04Observerade palpabla stråk och lokala "twitch"-svar

I denna djurstudie framkallade ökade nervsignaler till muskler framgångsrikt de karaktäristiska dragen hos myofasciella triggerpunkter, inklusive palpabla knutor.

Abstract

Myofascial pain syndrome is one of the most common forms of muscle pain. In this syndrome, pain is originated by the so-called trigger points, which consists of a set of palpable contraction knots in the muscle. It has been proposed that a high, spontaneous neurotransmission may be involved in the generation of these contraction knots. To confirm this hypothesis, we exposed mouse muscles to an anticholinesterasic agent to increase the neurotransmision in the synaptic cleft in two different conditions, in vivo and ex vivo experiments. Using intracellular recordings, a sharp increase in the spontaneous neurotransmission in the levator auris longus muscle and a lower increase in the diaphragm muscle could be seen. Likewise, electromyography recordings reveal an elevated endplate noise in gastrocnemius muscle of treated animals. These changes are associated with structural changes such as abundant neuromuscular contracted zones observed by rhodaminated α-bungarotoxin and the presence of abundant glycosaminoglycans around the contraction knots, as shown by Alcian PAS staining. In a second set of experiments, we aimed at demonstrating that the increases in the neurotransmission reproduced most of the clinical signs associated to a trigger point. We exposed rats to the anticholinesterase agent neostigmine, and 30 min afterward we observed the presence of palpable taut bands, the echocardiographic presence of contraction knots, and local twitch responses upon needle stimulation. In summary, we demonstrated that increased neurotransmission induced trigger points in both rats and mice, as evidenced by glycosaminoglycans around the contraction zones as a novel hallmark of this pathology. NEW & NOTEWORTHY In rodents, when neostigmine was injected subcutaneously, the neuromuscular neurotransmission increased, and several changes can be observed: an elevated endplate noise compared with normal endplate noise, as evidenced by electromyographyc recording; many muscular fibers with contraction knots (narrower sarcomeres and locally thickened muscle fiber) surrounded by infiltration of connective tissue like glycosaminoglycans molecules; and palpable taut bands and local twitch responses upon needle stimulation. Several of these signs are also observed in humans with muscle pain.

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APA
Ramon Margalef, Marc Sisquella, Marc Bosque, Clara Romeu, Orlando Mayoral, Sonia Monterde, Mercedes Priego, Rafael Guerra-Perez, Nicolau Ortiz, Josep Tomás, & Manel M Santafe (2019). Experimentellt skapande av myofasciala triggerpunkter hos gnagare. https://fasciaresearchdatabase.com/experimental-myofascial-trigger-point-creation-in-rodents/
MLA
Ramon Margalef, et al. "Experimentellt skapande av myofasciala triggerpunkter hos gnagare." 2019, https://fasciaresearchdatabase.com/experimental-myofascial-trigger-point-creation-in-rodents/.
Chicago
Ramon Margalef et al. 2019. "Experimentellt skapande av myofasciala triggerpunkter hos gnagare.". https://fasciaresearchdatabase.com/experimental-myofascial-trigger-point-creation-in-rodents/