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Central Serotonin Deficiency Impairs Recovery of Sensorimotor Abilities After Spinal Cord Injury in Rats. / Мусиенко, Павел Евгеньевич; Сысоев, Юрий Игоревич; Шкорбатова, Полина Юрьевна; Калинина, Дарья Сергеевна; Баженова, Елена Юрьевна; Гайнетдинов, Рауль Радикович.

в: International Journal of Medical Sciences, Том 26, № 6, 2761, 19.03.2025.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

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@article{e5513d4a95444f04a82a3114202ec31c,
title = "Central Serotonin Deficiency Impairs Recovery of Sensorimotor Abilities After Spinal Cord Injury in Rats",
abstract = "Spinal cord injury (SCI) affects millions of people worldwide. One of the main challenges of rehabilitation strategies is re-training and enhancing the plasticity of the spinal circuitry that was preserved or rebuilt after the injury. The serotonergic system appears to be crucial in these processes, since recent studies have reported the capability of serotonergic (5-HT) axons for axonal sprouting and regeneration in response to central nervous system (CNS) trauma or neurodegeneration. We took advantage of tryptophan hydroxylase 2 knockout (TPH2 KO) rats, lacking serotonin specifically in the brain and spinal cord, to study the role of the serotonergic system in the recovery of sensorimotor function after SCI. In the present work, we compared the rate of sensorimotor recovery of TPH2 KO and wild-type (WT) female rats after SCI (lateral hemisection at the T8 spinal level). SCI caused severe motor impairments in the ipsilateral left hindlimb, the most pronounced in the first week after the hemisection with gradual functional recovery during the following 3 weeks. The results demonstrate that TPH2 KO rats have less potential to recover motor functions since the degree of sensorimotor deficit in the tapered beam walking test (TBW) and ladder walking test (LW) was significantly higher in the TPH2 KO group in comparison to the WT animals in the 3rd and 4th weeks after SCI. The recovery dynamics of the hindlimb muscle tone and voluntary movements was in agreement with the restoration of motor performance in TBW and LW. Compound muscle action potential analysis in the gastrocnemius (GM) and tibialis (TA) muscles of both hindlimbs after electrical stimulation of the sciatic nerve or lumbar region (L5-L6) of the spinal cord indicated slower recovery of sensorimotor pathways in the TPH2 KO group versus their WT counterparts. In general, the observed results confirm the significance of central serotonergic mechanisms in the recovery of sensorimotor functions in rats and the relevance of the TPH2 KO rat model in studying the role of the 5-HT system in neurorehabilitation.",
keywords = "serotonin; TPH2; spinal cord injury; lateral hemisection; sensorimotor function; tapered beam walking test; ladder walking test; static rod; compound muscle action potential, Animals, Disease Models, Animal, Female, Rats, Recovery of Function, Serotonin/deficiency, Spinal Cord Injuries/physiopathology, Spinal Cord/metabolism, Tryptophan Hydroxylase/genetics, spinal cord injury, static rod, TPH2, compound muscle action potential, serotonin, sensorimotor function, lateral hemisection, tapered beam walking test, ladder walking test",
author = "Мусиенко, {Павел Евгеньевич} and Сысоев, {Юрий Игоревич} and Шкорбатова, {Полина Юрьевна} and Калинина, {Дарья Сергеевна} and Баженова, {Елена Юрьевна} and Гайнетдинов, {Рауль Радикович}",
year = "2025",
month = mar,
day = "19",
doi = "10.3390/ijms26062761",
language = "English",
volume = "26",
journal = "International Journal of Medical Sciences",
issn = "1449-1907",
publisher = "Ivyspring International Publisher",
number = "6",

}

RIS

TY - JOUR

T1 - Central Serotonin Deficiency Impairs Recovery of Sensorimotor Abilities After Spinal Cord Injury in Rats

AU - Мусиенко, Павел Евгеньевич

AU - Сысоев, Юрий Игоревич

AU - Шкорбатова, Полина Юрьевна

AU - Калинина, Дарья Сергеевна

AU - Баженова, Елена Юрьевна

AU - Гайнетдинов, Рауль Радикович

PY - 2025/3/19

Y1 - 2025/3/19

N2 - Spinal cord injury (SCI) affects millions of people worldwide. One of the main challenges of rehabilitation strategies is re-training and enhancing the plasticity of the spinal circuitry that was preserved or rebuilt after the injury. The serotonergic system appears to be crucial in these processes, since recent studies have reported the capability of serotonergic (5-HT) axons for axonal sprouting and regeneration in response to central nervous system (CNS) trauma or neurodegeneration. We took advantage of tryptophan hydroxylase 2 knockout (TPH2 KO) rats, lacking serotonin specifically in the brain and spinal cord, to study the role of the serotonergic system in the recovery of sensorimotor function after SCI. In the present work, we compared the rate of sensorimotor recovery of TPH2 KO and wild-type (WT) female rats after SCI (lateral hemisection at the T8 spinal level). SCI caused severe motor impairments in the ipsilateral left hindlimb, the most pronounced in the first week after the hemisection with gradual functional recovery during the following 3 weeks. The results demonstrate that TPH2 KO rats have less potential to recover motor functions since the degree of sensorimotor deficit in the tapered beam walking test (TBW) and ladder walking test (LW) was significantly higher in the TPH2 KO group in comparison to the WT animals in the 3rd and 4th weeks after SCI. The recovery dynamics of the hindlimb muscle tone and voluntary movements was in agreement with the restoration of motor performance in TBW and LW. Compound muscle action potential analysis in the gastrocnemius (GM) and tibialis (TA) muscles of both hindlimbs after electrical stimulation of the sciatic nerve or lumbar region (L5-L6) of the spinal cord indicated slower recovery of sensorimotor pathways in the TPH2 KO group versus their WT counterparts. In general, the observed results confirm the significance of central serotonergic mechanisms in the recovery of sensorimotor functions in rats and the relevance of the TPH2 KO rat model in studying the role of the 5-HT system in neurorehabilitation.

AB - Spinal cord injury (SCI) affects millions of people worldwide. One of the main challenges of rehabilitation strategies is re-training and enhancing the plasticity of the spinal circuitry that was preserved or rebuilt after the injury. The serotonergic system appears to be crucial in these processes, since recent studies have reported the capability of serotonergic (5-HT) axons for axonal sprouting and regeneration in response to central nervous system (CNS) trauma or neurodegeneration. We took advantage of tryptophan hydroxylase 2 knockout (TPH2 KO) rats, lacking serotonin specifically in the brain and spinal cord, to study the role of the serotonergic system in the recovery of sensorimotor function after SCI. In the present work, we compared the rate of sensorimotor recovery of TPH2 KO and wild-type (WT) female rats after SCI (lateral hemisection at the T8 spinal level). SCI caused severe motor impairments in the ipsilateral left hindlimb, the most pronounced in the first week after the hemisection with gradual functional recovery during the following 3 weeks. The results demonstrate that TPH2 KO rats have less potential to recover motor functions since the degree of sensorimotor deficit in the tapered beam walking test (TBW) and ladder walking test (LW) was significantly higher in the TPH2 KO group in comparison to the WT animals in the 3rd and 4th weeks after SCI. The recovery dynamics of the hindlimb muscle tone and voluntary movements was in agreement with the restoration of motor performance in TBW and LW. Compound muscle action potential analysis in the gastrocnemius (GM) and tibialis (TA) muscles of both hindlimbs after electrical stimulation of the sciatic nerve or lumbar region (L5-L6) of the spinal cord indicated slower recovery of sensorimotor pathways in the TPH2 KO group versus their WT counterparts. In general, the observed results confirm the significance of central serotonergic mechanisms in the recovery of sensorimotor functions in rats and the relevance of the TPH2 KO rat model in studying the role of the 5-HT system in neurorehabilitation.

KW - serotonin; TPH2; spinal cord injury; lateral hemisection; sensorimotor function; tapered beam walking test; ladder walking test; static rod; compound muscle action potential

KW - Animals

KW - Disease Models, Animal

KW - Female

KW - Rats

KW - Recovery of Function

KW - Serotonin/deficiency

KW - Spinal Cord Injuries/physiopathology

KW - Spinal Cord/metabolism

KW - Tryptophan Hydroxylase/genetics

KW - spinal cord injury

KW - static rod

KW - TPH2

KW - compound muscle action potential

KW - serotonin

KW - sensorimotor function

KW - lateral hemisection

KW - tapered beam walking test

KW - ladder walking test

UR - https://www.mendeley.com/catalogue/aab117ef-bcd6-3338-8a98-18d75fe4149c/

U2 - 10.3390/ijms26062761

DO - 10.3390/ijms26062761

M3 - Article

C2 - 40141402

VL - 26

JO - International Journal of Medical Sciences

JF - International Journal of Medical Sciences

SN - 1449-1907

IS - 6

M1 - 2761

ER -

ID: 137729281