miR-7a alleviates the maintenance of neuropathic pain through regulation of neuronal excitability

miR-7a облегчает поддержание нейропатической боли посредством регуляции возбудимости нейронов
Takashi Shimada, Noriko Miyake, Fumihito Saitow, Hidenori Suzuki, Atsushi Sakai, Koichi Miyake
2013-07-16

dorsal root ganglionmiR-7aneuronal excitabilityneuropathic painvoltage-gated sodium channel β2 subunit
Neuronal damage in the somatosensory system causes intractable chronic neuropathic pain. Plastic changes in sensory neuron excitability are considered the cellular basis of persistent pain. Non-coding microRNAs modulate specific gene translation to impact on diverse cellular functions and their dysregulation causes various diseases. However, their significance in adult neuronal functions and disorders is still poorly understood. Here, we show that miR-7a is a key functional RNA sustaining the late phase of neuropathic pain through regulation of neuronal excitability in rats. In the late phase of neuropathic pain, microarray analysis identified miR-7a as the most robustly decreased microRNA in the injured dorsal root ganglion. Moreover, local induction of miR-7a, using an adeno-associated virus vector, in sensory neurons of injured dorsal root ganglion, suppressed established neuropathic pain. In contrast, miR-7a overexpression had no effect on acute physiological or inflammatory pain. Furthermore, miR-7a downregulation was sufficient to cause pain-related behaviours in intact rats. miR-7a targeted the β2 subunit of the voltage-gated sodium channel, and decreased miR-7a associated with neuropathic pain caused increased β2 subunit protein expression, independent of messenger RNA levels. Consistently, miR-7a overexpression in primary sensory neurons of injured dorsal root ganglion suppressed increased β2 subunit expression and normalized long-lasting hyperexcitability of nociceptive neurons. These findings demonstrate miR-7a downregulation is causally involved in maintenance of neuropathic pain through regulation of neuronal excitability, and miR-7a replenishment offers a novel therapeutic strategy specific for chronic neuropathic pain.
1
Adeno-associated virus-mediated local induction of miR-7a in injured sensory neurons suppressed established neuropathic pain but did not affect acute physiological or inflammatory pain.
2
Restoring miR-7a normalized β2 subunit expression and neuronal excitability, supporting miR-7a replenishment as a chronic neuropathic pain-specific therapeutic strategy.
3
miR-7a downregulation alone induced pain-related behaviors in otherwise intact rats, indicating a causal role in neuropathic pain maintenance.
4
miR-7a targets the β2 subunit of voltage-gated sodium channels post-transcriptionally; its loss increased β2 protein expression and sustained nociceptive-neuron hyperexcitability.
5
miR-7a was the most robustly decreased microRNA in injured dorsal root ganglia during the late phase of neuropathic pain.

miR-7a in sensory neurons of the injured dorsal root ganglion in rats with chronic neuropathic pain

The role of miR-7a downregulation and replenishment in regulating voltage-gated sodium channel β2-subunit expression, nociceptive neuronal hyperexcitability, and maintenance of chronic neuropathic pain

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2013-07-16
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Takashi Shimada
Noriko Miyake
Fumihito Saitow
Hidenori Suzuki
Atsushi Sakai
Koichi Miyake
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