[3]
Bak T. What wires together dies together: Verbs, actions and neurodegeneration in motor neuron disease. Cortex 2012; 48(7): 936-44.
[5]
Sonne J, Reddy V, Beato MR. Neuroanatomy, Substantia Nigra. Treasure Island, (FL): StatPearls Publishing 2019.
[6]
Beaulieu J-M, Gainetdinov RR. The physiology, signaling, and pharmacology of dopamine receptors. Pharmacol Rev 2011; 63(1): 182-217.
[9]
Shyur LF, Lau ASY. Recent Trends in Medicinal Plants Research Cambridge, Massachussetts: Academic Press 2012.
[11]
Agarwal P, Alok S, Fatima A, Singh PP. Herbal remedies for neurodegenerative disorder (Alzheimer’s disease): A review. Int J Pharm Sci Res 2013; 4(9): 3328-40.
[13]
Sharma KK, Sangraula H, Das BP, Badyal DK, Dadhich AP. Cytochrome P450 and drug interactions. Indian J Pharmacol 2002; 34(5): 289-91.
[23]
Jayaprakasam B, Padmanabhan K, Nair MG. Withanamides in Withania somnifera fruit protect PC-12 cells from β-amyloid responsible for Alzheimer’s disease. Phytother Res 2010; 24(6): 859-63.
[24]
Bhattachajya SK. Kalkunte, Satyan S, Ghosal S. Antioxidant activity of glycowithano lides from Withania somnifera. IBdian J Exp Biol 1997; 35: 236-9.
[30]
Brooks NA, Wilcox G, Walker KZ, Ashton JF, Cox MB, Stojanovska L. Beneficial effects of Lepidium meyenii (Maca) on psychological symptoms and measures of sexual dysfunction in postmenopausal women are not related to estrogen or androgen content. Menopause J North Am Menopause Soc 2008; 15(6): 1157-62.
[32]
Guo SS, Gao XF, Gu YR, et al. Preservation of cognitive function by Lepidium meyenii (Maca) is associated with improvement of mito-chondrial activity and upregulation of autophagy-related proteins in middle-aged mouse cortex. Evidence-based Complement Altern Med 2016; 2016: 4394261.
[33]
Kartika B, Muralidharan P, Rahman H. Herbal treatment of parkinsonism a review Int J Pharm Sci Rev Res 2010; 5(3): 034.
[34]
Manivasagam T, Venkatachalam S, Seppan P, et al. Withania somnifera root extract improves catecholamines and physiological abnor-malities seen in a Parkinson’s disease model mouse. Artic J Ethnopharmacol 2009; 125: 369-73.
[35]
Kasture S, Pontis S, Pinna A, et al. Assessment of symptomatic and neuroprotective efficacy of Mucuna pruriens seed extract in rodent model of Parkinson’s disease. Neurotox Res 2009; 1592: 111-22.
[44]
Ren W, Qiao Z, Wang H, Zhu L, Zhang L. Flavonoids: promising anticancer agents. Med Res Rev 2003; 23(4): 519-34.
[47]
Wanwimolruk S, Phopin K, Prachayasittikul V. Cytochrome P450 enzyme mediated herbal drug interactions (Part 2). EXCLI J 2014; 13: 869-96.
[49]
Choudhary S, Kumar P, Malik J. Plants and phytochemicals for Huntington’s disease. Pharmacogn Rev 2013; 7(14): 81-91.
[50]
Calabrese C, Gregory WL, Leo M, Kraemer D, Bone K, Oken B. Effects of a standardized bacopa monnieri extract on cognitive perfor-mance, anxiety, and depression in the elderly: a randomized, double-blind, placebo-controlled trial. J Altern Complement Med 2008; 14(6): 707.
[62]
Costa S, Diogenes V, Silva A, Souza C, et al. Impact of plant-derived flavonoids on neurodegenerative diseases. Neurotox Res 2016; 30: 41-52.
[64]
Larit F, Elokely KM, Chaurasiya ND, et al. Inhibition of human monoamine oxidase A and B by flavonoids isolated from 1 two Algerian medicinal plants 2 3 Farida Larit. Phytomedicine 2018; 40: 27-36.
[72]
Carmona V, Martín-Aragón S, Goldberg J, Schubert D, Bermejo-Bescós P. Several targets involved in Alzheimer’s disease amyloidogene-sis are affected by morin and isoquercitrin 2018; 23(8): 575-90.
[73]
Jenner P. Oxidative stress in Parkinson’s disease. Ann Neurol 2003; 53 (Suppl. 3): S26-38.
[77]
Akinmoladun AC, Akinrinola BL, Olaleye MT, Farombi EO. Kolaviron, a garcinia kola biflavonoid complex, protects against ische-mia/reperfusion injury: Pertinent mechanistic insights from biochemical and physical evaluations in rat brain. Neurochem Res 2015; 40(4): 777-87.
[80]
Angélica Maria S-G, Edison O, Gloria Patricia C-G. Linalool reverses neuropathological and behavioral impairments in old triple transgen-ic Alzheimer’s mice. Neuropharmacology 2016; 102: 111-20.
[85]
Vina D, Serra S, Lamela M, Delogu GL. Herbal natural products as a source of monoamine oxidase inhibitors: A review. Curr Top Med Chem 2012; 12(20): 2131-44.
[86]
Carradori S, Petzer JP. Novel monoamine oxidase inhibitors: A patent review (2012-2014). Expert Opin Ther Pat 2015; 25(1): 91-110.
[90]
Prachayasittikul V, Prachayasittikul S, Ruchirawat S, Prachayasittikul V. 8-hydroxyquinolines: A review of their metal chelating proper-ties and medicinal applications. Drug Des Devel Ther 2013; 7: 1157-78.
[93]
Golchin L, Shabani M, Harandi S, Razavinasab M. Pistachio supplementation attenuates motor and cognition impairments induced by cisplatin or vincristine in rats. Adv Biomed Res 2015; 4(1): 92.
[94]
Pak-Hashemi M, Hassanipour M, Mohammadinasab M, et al. A study of the effects of Pista ciavera (pistachio) seed oil on working memory as well as spatial learning and memory. Pist Heal J 2019; 1(3): 1-7.
[95]
Uddin MS, Al Mamun A, Hossain MS, et al. Neuroprotective effect of Phyllanthus acidus L. on learning and memory impairment in sco-polamine-induced animal model of dementia and oxidative stress: Natural wonder for regulating the development and progression of Alz-heimer’s disease. Adv Alzheimer Dis 2016; 5(2): 53-72.
[96]
Zool TJ. Türkoğlu S, Çelik S, Keser S, Türkoğlu İ, Yilmaz Ö. The effect of Pistacia terebinthus extract on lipid peroxidation, glutathione, protein, and some enzyme activities in tissues of rats undergoing oxidative stress. Turk J Zool 2017; 41: 82-8.