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Pacharinsak, C.

Publications and source records attributed to Pacharinsak, C..

3 recordsLinked to original sources

Noninvasive Diagnostic Ultrasound-Guided Focused Ultrasound Enables Selective, Reversible Inhibition of Peripheral Nociceptive Fibers and Prevents Acute Pain

BackgroundAcute postoperative pain remains a major clinical therapeutic challenge. Current peripheral nerve blockade (PNB) techniques are effective for some patients but are limited by invasiveness, short duration, reliance on highly trained providers, and off-target motor and sensory effects. Focused ultrasound (FUS) is a novel neuromodulatory technology with the potential to achieve noninvasive, selective, reversible, and prolonged inhibition of peripheral nociceptive fibers to prevent and treat acute pain. We hypothesized that noninvasive transcutaneous targeting of the rat sciatic nerve using co-aligned diagnostic ultrasound (dUS) and FUS transducers could produce selective and reversible inhibition of nociceptive pain behaviors while preserving motor and non-nociceptive sensory functions. MethodsIn an in vivo rat hindpaw incisional (HPI) pain model, using a novel, transcutaneous dUS-guided FUS system, the sciatic nerve was located with dUS, and FUS energy was applied to it just prior to hindpaw incision. FUS parameters were iteratively adjusted to achieve reversible, selective inhibition of nociceptive behaviors without changing motor and non-pain sensory behaviors. Animals were randomized into six groups: No Intervention (Control), HPI Only (Disease Control), Sham FUS, FUS Only, FUS+HPI (Intervention), and LA+HPI (Positive Control). Primary outcomes were changes in nociceptive sensory functions, assessed by thermal and mechanical sensitivity. Secondary outcomes were changes in non-nociceptive sensory and motor functions, assessed by hindpaw flexion and extension reflexes. ResultsCompared with the HPI Only group, the FUS+HPI group demonstrated (1) significant attenuation of hindpaw thermal hypersensitivity from day 0 - week 5.0 and week 8.0 - 16.0 (p < 0.05-0.001); (2) significant attenuation of mechanical hypersensitivity from day 0 until week 4.0 (p < 0.05-0.001); (3) no significant attenuation of flexion; and (4) no significant attenuation of extension. ConclusionsTranscutaneous dUS-guided FUS enables selective, reversible inhibition of A{delta} and C nociceptive fiber mediated behaviors while sparing A motor and A{beta} sensory behaviors. FUS-induced PNB prevented both acute and persistent pain behaviors. These findings support FUS as a promising noninvasive peripheral nerve blockade strategy for acute pain management.

neuroscience↗

Etomidate as an Effective Alternative Method of Euthanizing Adult Zebrafish (Danio Rerio)

We assessed the efficacy of etomidate in euthanizing adult zebrafish. The aims of this study were to investigate: 1) the efficacy of 2 concentrations and 2) the effects at 2 densities. Aim 1-Fish (n=10 fish/group) were immersed in either 6 mg/L (Eto-6) or 10 mg/L (Eto-10) etomidate. Aim 2- either 5 or 10 fish were immersed in Eto-6. Tanks were video recorded and scored by two blinded observers. The parameters monitored included: 1) loss of righting reflex (LORR); 2) undulation cessation; 3) cessation of operculation (COO); and 4) loss of startle reflex. After the 30 minute immersion, fish were transferred to recovery tanks and monitored once every 5 minutes for 60 minutes. Results - Aim 1, the time to undulation cessation, COO, and loss of startle reflex was significantly shorter in the Eto-10 group and there was no difference in LORR. Aim 2, the time to LORR and undulation cessation was significantly shorter in the 5 fish/L group and there was no significant difference in time to COO or loss of startle reflex. No aversive behaviors were noted and fish in all groups were effectively euthanized by 30 minutes. This study indicates that Eto-6 or Eto-10 effectively euthanizes adult zebrafish.

animal behavior and cognition↗

High Shear Stress Reduces ERG Causing Endothelial-Mesenchymal Transition and Pulmonary Arterial Hypertension

Pathological high shear stress (HSS, 100 dyn/cm2) is generated in distal pulmonary arteries (PA) (100-500 m) in congenital heart defects and in progressive PA hypertension (PAH) with inward remodeling and luminal narrowing. Human PA endothelial cells (PAEC) were subjected to HSS versus physiologic laminar shear stress (LSS, 15 dyn/cm2). Endothelial-mesenchymal transition (EndMT), a feature of PAH not previously attributed to HSS, was observed. H3K27ac peaks containing motifs for an ETS-family transcription factor (ERG) were reduced, as was ERG-Kruppel-like factors (KLF)2/4 interaction and ERG expression. Reducing ERG by siRNA in PAEC during LSS caused EndMT; transfection of ERG in PAEC under HSS prevented EndMT. An aorto-caval shunt was preformed in mice to induce HSS and progressive PAH. Elevated PA pressure, EndMT and vascular remodeling were reduced by an adeno-associated vector that selectively replenished ERG in PAEC. Agents maintaining ERG in PAEC should overcome the adverse effect of HSS on progressive PAH.

cell biology↗