• 제목/요약/키워드: neuroprotective effects

검색결과 601건 처리시간 0.033초

Protective Effect of Carnosine Against Zn-Mediated Toxicity in Cortical Neuronal Cells

  • Hue, Jin-Joo;Lee, Ah-Ram;Lee, Yea-Eun;Cho, Min-Hang;Lee, Ki-Nam;Nam, Sang-Yoon;Yun, Young-Won;Jeong, Jae-Hwang;Lee, Sang-Hwa;Lee, Beom-Jun
    • Toxicological Research
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    • 제23권1호
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    • pp.33-38
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    • 2007
  • Zinc is an endogenous transition metal that can be synaptically released during neuronal activity. However, zinc may contribute to the neuropathology associated with a variety of conditions. Carnosine expressed in glial cells can modulate the effects of zinc on neuronal excitability as a zinc chelator. We hypothesize that carnosine may protect against neurotoxicity of zinc in cortical neuronal cells. The cortical neuronal cells from newborn rats were prepared and exposed to zinc chloride and/or carnosine at various concentrations. Zinc at the doses of 0 to $500{\mu}M$ decreased neuronal cell viability in a dose-dependent manner. Additionally, at the concentrations of 100 and $200{\mu}M$, it significantly decreased cell viability in an exposed time-dependent manner (p < 0.05). Treatment with carnosine at the concentrations of 20 and $200{\mu}M$ significantly increased neuronal cell proliferation by approximately 14% and 20%, respectively, compared to the control (p < 0.05). At the concentrations of 100 and $200{\mu}M$ zinc, $20{\mu}M$ carnosine significantly increased the viability of neuronal cells by 18.3% and 12.1 %, and $200{\mu}M$ carnosine also increased it by 33.5% and 28.6%, respectively, compared to the normal control group (p < 0.01). These results suggest that carnosine at a physiologically relevant level may protect against zinc-mediated toxicity in neuronal cells as an endogenous neuroprotective agent.

대조환이 대뇌신경세포의 허혈성 손상에 미치는 영향 (Effects of Daejo-whan on the Ischemic Damage of Cerebral Neurons in Culture)

  • 박세홍;이광로;배선준;정상수;강세영;이상관;이성근;윤지원;성강경
    • 동의생리병리학회지
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    • 제17권6호
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    • pp.1500-1508
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    • 2003
  • This study was performed to clarify the neurotoxic mechanism of nerve cells damage by brain ischemia. The cytotoxic effect of ischemia was determined by XTT assay, NR assay, superoxide dismutase(SOD) activity, amount of malondialdehyde(MDA), lactate dehydrogenase(LDH) activity, protein synthesis and tumor necrosis factor(TNF)-α activities after cerebral neurons derived from mouse were exposed to ischemia for 1∼30 minutes. In addition, the protective effect of extract of Daejo-whan(DJW) on ischemia-induced neurotoxicity was examined in these cultures. 1. Ischemia decreased cell number and viability by XTT assay or NR assay when cultured cerebral neurons were exposed to 95% N2/5% CO₂ for 1∼20 minutes in these cultures. 2. Ischemia decreased SOD and protein syntheses, but it increased amount of MDA and, LDH and TNF-α activities in these cultures. 3. In the neuroprotective effect of DJW extracts on cerebral neurons damaged by ischemia, DJW extracts increased SOD activity and protein synthesis. While, it decreased amount of MDA and, LDH and TNF-α activities after cerebral neurons preincubated with herb extracts. It suggests that brain ischemia has neurotoxicity on cultured mouse cerebral neurons, and the herb extract such as DJW was very effective in blocking the neurotoxicity induced by ischemia in cultured mouse cerebral neurons.

Trimethyltin으로 유도된 기억장애 흰쥐에서 백삼의 신경보호효과 (The Neuroprotective Effect of White Ginseng (Panax ginseng C. A. Meyer) on the Trimethyltin (TMT)-Induced Memory Deficit Rats)

  • 이승은;심인섭;김금숙;임성빈;박현정;심현수;예민숙;김승유
    • 한국약용작물학회지
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    • 제19권6호
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    • pp.456-463
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    • 2011
  • The present study examined the effects of Korean white ginseng (WG, Panax ginseng C. A. Meyer) on the learning and memory function and the neural activity in rats with trimethyltin (TMT)-induced memory deficits. The rats were administered with saline or WG (WG 100 or 300 mg/kg, p.o.) daily for 21 days. The cognitive improving efficacy of WG on the amnesic rats, which was induced by TMT, was investigated by assessing the Morris water maze test and by performing immunohistochemistries on choline acetyltransferase (ChAT), acetylcholinesterase (AchE), cAMP responsive element binding protein (CREB) and brain derived neurotrophic factor (BDNF). The rats treated with TMT injection (control group) showed impaired learning and memory of the tasks, but the rats treated with TMT injection and WG administration produced significant improvement of the escape latency to find the platform in the Morris water maze at the 2nd and 4th days compared to that of the control group. In the retention test, the WG 100 and WG 300 groups showed significantly increased crossing number around the platform compared to that of the control group (p < 0.001). Consistently with the behavioral data, result of immunohistochemistry analysis showed that WG 100 mg/kg significantly alleviated the loss of BDNF-ir neurons in the hippocampus compared to that of the control group (p < 0.01). Also, treatment with WG has a trend to be increased the cholinergic neurons in the hippocampal CA1 and CA3 areas as compared to that of the control group. These results suggest that WG may be useful for improving the cognitive function via regulation of neurotrophic activity.

MPTP 유발 파킨슨병 동물 모델에 대한 봉독약침의 신경보호 효과 및 항염증 효과 (Neuroprotective and Anti-inflammatory Effects of Bee Venom Acupuncture on MPTP-induced Mouse)

  • 박원;김재규;김종인;최도영;고형균
    • Journal of Acupuncture Research
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    • 제27권3호
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    • pp.105-116
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    • 2010
  • 목적 : 이 연구는 MPTP 유발 파킨슨병 동물 모델에서 봉독약침의 신경보호 효과 및 항염증 효과를 확인하기 위해 시행되었다. 방법 : C57BL/6 mice에 신경독소인 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine(MPTP)를 하루에 2시간 간격으로 MPTP-HCl(20mg/kg per dose)을 4번 복강 내 주입하여 중뇌 흑질의 도파민 신경세포를 파괴한 파킨슨병 동물 모델을 유발하였다. 실험군은 MPTP군, MPTP 현종 BVA군, MPTP 곡지 BVA군, MPTP 신수 BVA군의 4군으로 하였다. 마지막 MPTP 투여 2시간 후에 1차로 봉독약침을 시술하고, 그 후 48시간 간격으로 총 5차 연속 시술하였다. 봉독약침액의 농도는 0.2mg/Kg으로 하였고, 경혈은 양측 현종($GB_{39}$), 곡지($LI_{11}$), 신수($BL_{23}$)를 사용했고, 주입량은 각 경혈당 양측으로 각 $20{\mu\ell}$씩 주입하였다. 항염증작용을 알아보기 위해 TH, MAC-1, iNOS HSP70을, 세포사멸에 대한 신경세포의 보호효과를 알아보기 위해 caspase-3을 면역조직화학법을 사용하여 실시하였다. 결과 : 실험 결과 MPTP 유발 파킨슨병 동물 모델에서 현종 곡지 신수혈에 대한 봉독약침은 TH-Immunoreactivity neuron의 감소와 microglial activation을 억제하였다. 봉독약침군 모두 효과를 보였으나 그 중 현종과 신수혈에서 특히 억제작용이 컸다. MAC-1에서는 현종혈이 억제작용이 컸다. HSP70-IR neuron은 곡지에서 유의한 억제작용을 보였으나, iNOS neuron은 모든 군에서 유의한 차이를 보이지 않았다. 또한 세포사멸억제여부 실험에서 봉독약침은 모두 억제작용을 보였으나 특히 곡지자침군에서 caspase-3 발현을 유의하게 억제하였다. 결론 : 이러한 결과는 봉독약침이 MPTP 투여로 인한 중뇌 흑질의 염증에 의한 도파민 신경세포 손상을, 염증을 억제함으로써 항염 효과를 나타냄을 알 수 있으며, 신경세포를 보호하는 활성이 있음을 보여줌과 동시에 세포사멸을 억제하는 활성이 있다고 사료된다.

허혈성 척수 손상의 동물실험모델에서 Trimetazidine의 척수 보호효과 (Protective Effects of Trimetazidine in a Rabbit Model of Transient Spinal Cord Ischemia)

  • 장운하;최주원;김미혜;오태윤;한진수;김종성;이수윤
    • Journal of Chest Surgery
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    • 제35권4호
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    • pp.255-260
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    • 2002
  • 배경: 흉부 및 흉복부 대동맥 수술시에 발생하는 척수의 허혈성 손상에 의한 신경학적 합병증은 발병 전의 예측이 어려울 뿐만 아니라 중증의 장애를 남기게 된다. 본 연구에서는 허혈성 심근 질환 치료에 쓰이고 있는 Trimetazidine(이하 TMZ)의 척수의 허혈성 손상에 대한 보호 효과를 동물실험모델에서 실험하였다. 대상 및 방법: 다 자란 New-Zealand White Rabbits 33마리를 대조군(Group 1, N-17)과 실험군(Group 2, N=16)으로 나누어 실험하였다. 수술은 대조군에서는 전신마취 후 정중개복하여 좌측 신동맥 기시 직하부위에서 복부대동맥을 혈관 점자로 30분간 폐쇄하여 척수 허혈을 유발하였으며, 실험군에서는 TMZ 3mg/kg을 대동맥 겸자전 투여하였다. 수술 2시간 후, 24시간 후, 48시간 후에 Modified Talrov scale에 의한 운동능력을 평가하였으며 술 후 48시간에 요천추부 척수를 적출하여 조직검사를 시행하였다. 결과: 대조군과 실험군에서 각각 7 마리(17마리 중 10마리 사망)와 11마리(16마리 중 5마리 사망)가 실험 종료가지 생존하여 척수 조직을 채취하였다. Modified Talrov scale은 대조군과 실험군에서 각각 수술 2시간 후 1.13 $\pm$ 1.25와 3.20 $\pm$ 0.77, 24시간 후 1.45 $\pm$ 1.57와 3.50 $\pm$ 0.76, 48시간 후 1.86 $\pm$ 1.86와 3.91 $\pm$ 0.30이었다(p$\leq$0.05). 척수의 조직학적 검사에서는 신경학적 결손이 큰 대조군(Group 1)의 척수조직에서 허혈성 손상이 더 심하게 일어난 것이 관찰되었다. 결론: TMZ은 동물실험에서 척수의 일과성 허혈성 손상에 대하여 통계적으로 유의한 척수 보호효과를 나타내었다.

Neuronal injury in AIDS dementia: Potential treatment with NMDA open-channel blockers and nitric oxide-related species

  • Lipton, Stuart A.
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1996년도 춘계학술대회
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    • pp.19-29
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    • 1996
  • The neurological manifestations of AIDS include dementia, encountered even in the absence of opportunistic superinfection or malignancy. The AIDS Dementia Complex appears to be associated with several neuropathological abnormalities, including astrogliosis and neuronal injury or loss. How can HIV-1 result in neuronal damage if neurons themselves are only rarely, if ever, infected by the vitus\ulcorner In vitro experiments from several different laboratiories have lent support to the existence of HIV- and immune-related toxins. In one recently defined pathway to neuronal injury, HIV-infected macrophages/microglia as well as macrophages activated by HIV-1 envelope protein gp120 appear to secrete excitants/neurotoxins. These substances may include arachidonic acid, platelet-activating factor, free radicals (NO - and O$_2$), glutamate, quinolinate, cysteine, cytokines (TNF-${\alpha}$, IL1-B, IL-6), and as yet unidentified factors emanating from stimulated macrophages and possibly reactive astrocytes. A final common pathway for newonal suscepubility appears to be operative, similar to that observed in stroke, trauma, epilepsy, and several neurodegenerative diseases, including Huntington's disease, Parkinson's disease, and amyotrophic lateral sclerosis. This mechanism involves excessive activation of N-methyl-D-aspartate (NMDA) receptor-operated channels, with resultant excessive influx of Ca$\^$2+/ leading to neuronal damage, and thus offers hope for future pharmacological intervention. This chapter reviews two clinically-tolerated NMDA antagonists, memantine and nitroglycerin; (ⅰ) Memantine is an open-channel blocker of the NMDA-associated ion channel and a close congener of the anti-viral and anti-parkinsonian drug amantadine. Memantine blocks the effects of escalating levels of excitotoxins to a greater degree than lower (piysiological) levels of these excitatory amino acids, thus sparing to some extent normal neuronal function. (ⅱ) Niuoglycerin acts at a redox modulatory site of the NMDA receptor/complex to downregulate its activity. The neuroprotective action of nitroglycerin at this site is mediated by n chemical species related to nitric oxide, but in a higher oxidation state, resulting in transfer of an NO group to a critical cysteine on the NMDA receptor. Because of the clinical safety of these drugs, they have the potential for trials in humans. As the structural basis for redox modulation is further elucidated, it may become possible to design even better redox reactive reagents of chinical value. To this end, redox modulatory sites of NMDA receptors have begun to be characterized at a molecular level using site-directed mutagenesis of recombinant subunits (NMDAR1, NMDAR2A-D). Two types of redox modulation can be distinguished. The first type gives rise to a persistent change in the functional activity of the receptor, and we have identified two cysteine residues on the NMDARI subunit (#744 and #798) that are responsible for this action. A second site, presumably also a cysteine(s) because <1 mM N-ethylmaleimide can block its effect in native neurons, underlies the other, more transient redox action. It appears to be at this, as yet unidentified, site on the NMDA receptor that the NO group acts, at least in recombinant receptors.

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Modulation of the Expression of the GABAA Receptor β1 and β3 Subunits by Pretreatment with Quercetin in the KA Model of Epilepsy in Mice -The Effect of Quercetin on GABAA Receptor Beta Subunits-

  • Moghbelinejad, Sahar;Rashvand, Zahra;Khodabandehloo, Fatemeh;Mohammadi, Ghazaleh;Nassiri-Asl, Marjan
    • 대한약침학회지
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    • 제19권2호
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    • pp.163-166
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    • 2016
  • Objectives: Quercetin is a flavonoid and an important dietary constituent of fruits and vegetables. In recent years, several pharmacological activities of quercetin, such as its neuroprotective activity and, more specifically, its anti-convulsant effects in animal models of epilepsy, have been reported. This study evaluated the role of quercetin pretreatment on gene expression of ${\gamma}$-amino butyric acid type A ($GABA_A$) receptor beta subunits in kainic acid (KA)-induced seizures in mice. Methods: The animals were divided into four groups: one saline group, one group in which seizures were induced by using KA (10 mg/kg) without quercetin pretreatment and two groups pretreated with quercetin (50 and 100 mg/kg) prior to seizures being induced by using KA. Next, the messenger ribonucleic acid (mRNA) levels of the $GABA_A$ receptor ${\beta}$ subunits in the hippocampus of each animal were assessed at 2 hours and 7 days after KA administration. Quantitative real-time polymerase chain reaction (RT-PCR) assay was used to detect mRNA content in hippocampal tissues. Results: Pretreatments with quercetin at doses of 50 and 100 mg/kg prevented significant increases in the mRNA levels of the ${\beta}_1$ and the ${\beta}_3$ subunits of the $GABA_A$ receptor at 2 hours after KA injection. Pretreatment with quercetin (100 mg/kg) significantly inhibited ${\beta}_1$ and ${\beta}_3$ gene expression in the hippocampus at 7 days after KA injection. But, this inhibitory effect of quercetin at 50 mg/kg on the mRNA levels of the ${\beta}_3$ subunit of the $GABA_A$ receptor was not observed at 7 days after KA administration. Conclusion: These results suggest that quercetin (100 mg/kg) modulates the expression of the $GABA_A$ receptor ${\beta}_1$ and ${\beta}_3$ subunits in the KA model of epilepsy, most likely to prevent compensatory responses. This may be related to the narrow therapeutic dose range for the anticonvulsant activities of quercetin.

Astaxanthin Inhibits $H_2O_2$-Mediated Apoptotic Cell Death in Mouse Neural Progenitor Cells via Modulation of P38 and MEK Signaling Pathways

  • Kim, Jeong-Hwan;Choi, Woo-Bong;Lee, Jong-Hwan;Jeon, Sung-Jong;Choi, Yung-Hyun;Kim, Byung-Woo;Chang, Hyo-Ihl;Nam, Soo-Wan
    • Journal of Microbiology and Biotechnology
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    • 제19권11호
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    • pp.1355-1363
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    • 2009
  • In the present study, the neuroprotective effects of astaxanthin on $H_2O_2$-mediated apoptotic cell death, using cultured mouse neural progenitor cells (mNPCs), were investigated. To cause apoptotic cell death, mNPCs were pretreated with astaxanthin for 8 h and followed by treatment of 0.3 mM $H_2O_2$. Pretreatment of mNPCs with astaxanthin significantly inhibited $H_2O_2$-mediated apoptosis and induced cell growth in a dose-dependent manner. In Western blot analysis, astaxanthin-pretreated cells showed the activation of p-Akt, p-MEK, p-ERK, and Bcl-2, and the reduction of p-P38, p-SAPK/JNK, Bax, p-GSK3b, cytochrome c, caspase-3, and PARP. Because $H_2O_2$ triggers caspases activation, this study examined whether astaxanthin can inhibit caspases activation in $H_2O_2$-treated mNPCs. After $H_2O_2$ treatment, caspases activities were prominently increased, but astaxanthin pretreatment significantly inhibited $H_2O_2$-mediated caspases activation. Astaxanthin pretreatment also significantly recovered the ATP production ability of $H_2O_2$-treated cells. These findings indicate that astaxanthin inhibits $H_2O_2$-mediated apoptotic features in mNPCs. Inhibition assays with SB203580 ($10\;{\mu}M$, a specific inhibitor of p38) and PD98059 ($10\;{\mu}M$, a specific inhibitor of MEK) clearly showed that astaxanthin can inhibit $H_2O_2$-mediated apoptotic death via modulation of p38 and MEK signaling pathways.

α-Asarone Ameliorates Memory Deficit in Lipopolysaccharide-Treated Mice via Suppression of Pro-Inflammatory Cytokines and Microglial Activation

  • Shin, Jung-Won;Cheong, Young-Jin;Koo, Yong-Mo;Kim, Sooyong;Noh, Chung-Ku;Son, Young-Ha;Kang, Chulhun;Sohn, Nak-Won
    • Biomolecules & Therapeutics
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    • 제22권1호
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    • pp.17-26
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    • 2014
  • ${\alpha}$-Asarone exhibits a number of pharmacological actions including neuroprotective, anti-oxidative, anticonvulsive, and cognitive enhancing action. The present study investigated the effects of ${\alpha}$-asarone on pro-inflammatory cytokines mRNA, microglial activation, and neuronal damage in the hippocampus and on learning and memory deficits in systemic lipopolysaccharide (LPS)-treated C57BL/6 mice. Varying doses of ${\alpha}$-asarone was orally administered (7.5, 15, or 30 mg/kg) once a day for 3 days before the LPS (3 mg/kg) injection. ${\alpha}$-Asarone significantly reduced TNF-${\alpha}$ and IL-$1{\beta}$ mRNA at 4 and 24 hours after the LPS injection at dose of 30 mg/kg. At 24 hours after the LPS injection, the loss of CA1 neurons, the increase of TUNEL-labeled cells, and the up-regulation of BACE1 expression in the hippocampus were attenuated by 30 mg/kg of ${\alpha}$-asarone treatment. ${\alpha}$-Asarone significantly reduced Iba1 protein expression in the hippocampal tissue at a dose of 30 mg/kg. ${\alpha}$-Asarone did not reduce the number of Iba1-expressing microglia on immunohistochemistry but the average cell size and percentage areas of Iba1-expressing microglia in the hippocampus were significantly decreased by 30 mg/kg of ${\alpha}$-asarone treatment. In the Morris water maze test, ${\alpha}$-asarone significantly prolonged the swimming time spent in the target and peri-target zones. ${\alpha}$-Asarone also significantly increased the number of target heading and memory score in the Morris water maze. The results suggest that inhibition of pro-inflammatory cytokines and microglial activation in the hippocampus by ${\alpha}$-asarone may be one of the mechanisms for the ${\alpha}$-asarone-mediated ameliorating effect on memory deficits.

Valproic Acid Regulates α-Synuclein Expression through JNK Pathway in Rat Primary Astrocytes

  • Kim, Jung Nam;Kim, Min Kyeong;Cho, Kyu Suk;Choi, Chang Soon;Park, Seung Hwa;Yang, Sung-Il;Joo, So Hyun;Park, Jin Hee;Bahn, Geonho;Shin, Chan Young;Lee, He-Jin;Han, Seol-Heui;Kwon, Kyoung Ja
    • Biomolecules & Therapeutics
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    • 제21권3호
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    • pp.222-228
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    • 2013
  • Although the role of ${\alpha}$-synuclein aggregation on Parkinson's disease is relatively well known, the physiological role and the regulatory mechanism governing the expression of ${\alpha}$-synuclein are unclear yet. We recently reported that ${\alpha}$-synuclein is expressed and secreted from cultured astrocytes. In this study, we investigated the effect of valproic acid (VPA), which has been suggested to provide neuroprotection by increasing ${\alpha}$-synuclein in neuron, on ${\alpha}$-synuclein expression in rat primary astrocytes. VPA concentration-dependently increased the protein expression level of ${\alpha}$-synuclein in cultured rat primary astrocytes with concomitant increase in mRNA expression level. Likewise, the level of secreted ${\alpha}$-synuclein was also increased by VPA. VPA increased the phosphorylation of Erk1/2 and JNK and pretreatment of a JNK inhibitor SP600125 prevented the VPA-induced increase in ${\alpha}$-synuclein. Whether the increased ${\alpha}$-synuclein in astrocytes is involved in the reported neuroprotective effects of VPA awaits further investigation.