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Study on the Alleviation Effect and Its Mechanism of Nervonic Acid on Movement Disorder of Model Mice with Parkinson's Disease / 中国药房
China Pharmacy ; (12): 2648-2651, 2017.
Article in Chinese | WPRIM | ID: wpr-620735
ABSTRACT

OBJECTIVE:

To study the alleviation effect of nervonic acid on movement disorder of model mice with Parkinson's disease(PD).

METHODS:

Mice were randomly divided into blank control group(normal suline),model group(normal saline), Levodopa and benserazide hydrochloride tablet group (positive control,calculated by L-dopamine 120 mg/kg),nervonic acid low-dose,medium-dose,high-dose groups(20.0,40.0,80.0 mg/kg),10 in each group. Except for blank control group,mice in other groups were inducced for PD models. After modeling,mice were intragastrically given relevant medicines,once a day,for 14 d. After the last administration,behavioral changes of mice in each group were observed. HPLC was conducted to detect dopa-mine(DA)and its metabolites dihydroxybenzoic acid(DOPAC),homovanillic acid(HVA)concentrations in the striatum of mice.

RESULTS:

Compared with blank control group,climbing time was extended in model group,drum time was shortened,spontane-ous movement times was decreased,and DA,DOPAC,HVA contents in the striatum were reduced (P<0.05). Compared with model group,climbing time was shortened in Levodopa and benserazide hydrochlo ride tablet group,nervonic acid dose groups, drum time was extended,and DA,DOPAC,HVA contents in the striatum were increased(P<0.05);and spontaneous movement times was increased in Levodopa and benserazide hydrochloride tablet group,and nervonic acid high-dose group(P<0.05). CON-CLUSIONSNervonic acid can effectively improve symptoms of movement dysfunction of model mice with PD. The mechanism may associate with increasing DA content in the striatum.

Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: China Pharmacy Year: 2017 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: China Pharmacy Year: 2017 Type: Article