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Shiu, F. H.

Publications and source records attributed to Shiu, F. H..

2 recordsLinked to original sources

WNK-SPAK/OSR1 signaling pathway facilitates ictal activity via reduced neuronal chloride extrusion rate

Seizures upregulate Na+-K+-2Cl- (NKCC1)-mediated Cl- influx and downregulate K+-Cl- (KCC2)-mediated Cl- efflux via the WNK-SPAK/OSR1 kinases, leading to cytoplasmic chloride ([Cl-]i) accumulation, reduced GABAergic inhibition and anticonvulsant failure. Early studies found that inhibiting WNK-kinase reduced baseline [Cl-]i (ECl) and seizures via increased KCC2 activity. However, increased KCC2 activity alone should not affect ECl whose determinants are more complex. We determined the net effects of WNK-SPAK/OSR1 pathway inhibitor WNK463 on ECl and [Cl-]i transients during spontaneous ictal-like discharges (ILDs). We found that WNK463 reduced interictal [Cl-]i but did not change baseline [Cl-]i measured in the presence of TTX. WNK463 enhanced neuronal Cl- extrusion during and after ILDs, before abolishing ILDs. Pharmacological inhibition and targeted siRNA silencing demonstrated that the anti-ictal effects of WNK463 involved both NKCC1 and KCC2. Our data support a mechanism whereby mutual NKCC1 inhibition and KCC2 activation via the WNK-SPAK/OSR1 pathway exert powerful anti-ictal effects by facilitating [Cl-]i extrusion during ILDs.

neuroscience↗

Chronic activation of dopaminergic neurons via bioluminescence-optogenetics provides neuroprotection in a rodent model of Parkinson's disease

Previous studies in human patients and rodent models of Parkinsons disease (PD) have established neuroprotection of dopaminergic (DA) neurons in substantia nigra pars compacta (SNC) by physical exercise, but the precise origin of this neuroprotective effect has yet to be elucidated. In this study, we tested a hypothesis that enhanced activity of DA neurons in SNC results in neuroprotection using the unilateral 6-hydroxydopamine (6-OHDA) injection model in mice. To increase activity of DA neurons chronically and specifically, we injected an adeno-associated viral vector carrying a step-function luminopsin (SFL) - a fusion protein of light-emitting Gaussia luciferase and light-sensing step-function channelrhodopsin 2 - into SNC ipsilateral to 6-OHDA using the pan-neuronal human synapsin I promoter or the Cre-lox system in transgenic mice expressing the recombinase under control of the tyrosine hydroxylase (TH) promoter. Upon application of SFL substrate, coelenterazine (CTZ), the luciferase moiety of luminopsin emits bioluminescence which in turn activate the opsin moiety. Daily injection of CTZ for 4 weeks ameliorated a stereotypical behavior, namely ipsiversive rotations, induced by unilateral 6-OHDA. In addition, postmortem immunohistochemistry against TH revealed less severe neurodegeneration of DA neurons compared to vehicle-injected control animals. Furthermore, when mice were pretreated with ANA-12, a selective antagonist for tropomyosin receptor kinase B (TrkB), the behavioral improvement and neuroprotective effect were diminished. These results suggest that increased neuronal activity of DA neurons provides neuroprotection against 6-OHDA injury and alleviates its symptoms through the brain-derived neurotrophic factor-TrkB pathway.

neuroscience↗