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Dietary Components Consisting of Bioactive Molecules in the Prevention of Neurodegenerative Diseases
Alo, R., Fazzari, G., Zizza, M., Avolio, E., Di Vito, A., Bruno, R., Cuda, G., Barni, T., Canonaco, M.,
& Facciolo, R. M. (2021, June). Daidzein Pro-cognitive Effects Coincided with Changes of Brain Neurotensin1 Receptor and Interleukin-10 Expression Levels in Obese Hamsters. Neurotoxicity Research,
39(3), 645–657. doi:10.100712640-020-00328-4 PMID:33428179
Anastacio, J. R., Netto, C. A., Castro, C. C., Sanches, E. F., Ferreira, D. C., Noschang, C., Krolow, R.,
Dalmaz, C., & Pagnussat, A. (2014, July). Resveratrol treatment has neuroprotective effects and prevents
cognitive impairment after chronic cerebral hypoperfusion. Neurological Research, 36(7), 627–633. do
i:10.1179/1743132813Y.0000000293 PMID:24620966
Andres, S., Pevny, S., Ziegenhagen, R., Bakhiya, N., Schafer, B., Hirsch-Ernst, K. I., & Lampen, A. (2018,
January). Safety Aspects of the Use of Quercetin as a Dietary Supplement. Molecular Nutrition & Food
Research, 62(1), 1700447. Advance online publication. doi:10.1002/mnfr.201700447 PMID:29127724
Angelova, P. R., & Abramov, A. Y. (2018, March). Role of mitochondrial ROS in the brain: From physiology
to neurodegeneration. FEBS Letters, 592(5), 692–702. doi:10.1002/1873-3468.12964 PMID:29292494
Avraham, Y., Berry, E. M., Donskoy, M., Ahmad, W. A., Vorobiev, L., Albeck, A., & Mankuta, D. (2019,
May 17). Beta-carotene as a novel therapy for the treatment of “Autistic like behavior” in animal models
of Autism. Behavioural Brain Research, 364, 469–479. doi:10.1016/j.bbr.2017.09.041 PMID:28963040
Babaei, F., Mirzababaei, M., & Nassiri-Asl, M. (2018, September). Quercetin in Food: Possible Mechanisms of Its Effect on Memory. Journal of Food Science, 83(9), 2280–2287. doi:10.1111/1750-3841.14317
PMID:30103275
Bhagwat, S., Haytowitz, D. B., & Holden, J. M. (2014). USDA database for the flavonoid content of
selected foods, Release 3.1. US Department of Agriculture.
Bhia, M., Motallebi, M., Abadi, B., Zarepour, A., Pereira-Silva, M., Saremnejad, F., Santos, A. C., Zarrabi, A., Melero, A., Jafari, S. M., & Shakibaei, M. (2021, February 23). Naringenin Nano-Delivery
Systems and Their Therapeutic Applications. Pharmaceutics, 13(2), 291. Advance online publication.
doi:10.3390/pharmaceutics13020291 PMID:33672366
Bhullar, K. S., & Rupasinghe, H. P. (2013). Polyphenols: Multipotent therapeutic agents in neurodegenerative diseases. Oxidative Medicine and Cellular Longevity, 891748, 1–18. Advance online publication.
doi:10.1155/2013/891748 PMID:23840922
Bieschke, J., Russ, J., Friedrich, R. P., Ehrnhoefer, D. E., Wobst, H., Neugebauer, K., & Wanker, E. E.
(2010, April 27). EGCG remodels mature alpha-synuclein and amyloid-beta fibrils and reduces cellular
toxicity. Proceedings of the National Academy of Sciences of the United States of America, 107(17),
7710–7715. doi:10.1073/pnas.0910723107 PMID:20385841
Bivona, G., Gambino, C. M., Iacolino, G., & Ciaccio, M. (2019, September). Vitamin D and the nervous
system. Neurological Research, 41(9), 827–835. doi:10.1080/01616412.2019.1622872 PMID:31142227
88
EBSCOhost - printed on 2/13/2023 11:18 AM via . All use subject to https://www.ebsco.com/terms-of-use

Dietary Components Consisting of Bioactive Molecules in the Prevention of Neurodegenerative Diseases
Biyong, E. F., Alfos, S., Dumetz, F., Helbling, J. C., Aubert, A., Brossaud, J., Foury, A., Moisan, M.
P., Laye, S., Richard, E., Patterson, E., Murphy, K., Rea, K., Stanton, C., Schellekens, H., Cryan, J. F.,
Capuron, L., Pallet, V., & Ferreira, G. (2021, March). Dietary vitamin A supplementation prevents early
obesogenic diet-induced microbiota, neuronal and cognitive alterations. International Journal of Obesity,
45(3), 588–598. doi:10.103841366-020-00723-z PMID:33223517
Boespflug, E. L., Eliassen, J. C., Dudley, J. A., Shidler, M. D., Kalt, W., Summer, S. S., Stein, A. L.,
Stover, A. N., & Krikorian, R. (2018, May). Enhanced neural activation with blueberry supplementation in mild cognitive impairment. Nutritional Neuroscience, 21(4), 297–305. doi:10.1080/102841
5X.2017.1287833 PMID:28221821
Bohm, V., Lietz, G., Olmedilla-Alonso, B., Phelan, D., Reboul, E., Banati, D., Borel, P., Corte-Real, J.,
de Lera, A. R., Desmarchelier, C., Dulinska-Litewka, J., Landrier, J. F., Milisav, I., Nolan, J., Porrini,
M., Riso, P., Roob, J. M., Valanou, E., Wawrzyniak, A., ... Bohn, T. (2021, April 7). From carotenoid
intake to carotenoid blood and tissue concentrations - implications for dietary intake recommendations.
Nutrition Reviews, 79(5), 544–573. doi:10.1093/nutrit/nuaa008 PMID:32766681
Bourdel-Marchasson, I., Lapre, E., Laksir, H., & Puget, E. (2010, June). Insulin resistance, diabetes and
cognitive function: Consequences for preventative strategies. Diabetes & Metabolism, 36(3), 173–181.
doi:10.1016/j.diabet.2010.03.001 PMID:20472485
Bournival, J., Quessy, P., & Martinoli, M. G. (2009, December). Protective effects of resveratrol and
quercetin against MPP+ -induced oxidative stress act by modulating markers of apoptotic death in
dopaminergic neurons. Cellular and Molecular Neurobiology, 29(8), 1169–1180. doi:10.100710571009-9411-5 PMID:19466539
Boyina, H. K., Geethakhrishnan, S. L., Panuganti, S., Gangarapu, K., Devarakonda, K. P., Bakshi, V., &
Guggilla, S. R. (2020). In Silico and In Vivo Studies on Quercetin as Potential Anti-Parkinson Agent.
Advances in Experimental Medicine and Biology, 1195, 1–11. doi:10.1007/978-3-030-32633-3_1
PMID:32468451
Braidy, N., Behzad, S., Habtemariam, S., Ahmed, T., Daglia, M., Nabavi, S. M., Sobarzo-Sanchez, E.,
& Nabavi, S. F. (2017). Neuroprotective Effects of Citrus Fruit-Derived Flavonoids, Nobiletin and Tangeretin in Alzheimer’s and Parkinson’s Disease. CNS & Neurological Disorders - Drug Targets, 16(4),
387–397. doi:10.2174/1871527316666170328113309 PMID:28474543
Bureau, G., Longpre, F., & Martinoli, M. G. (2008, February 1). Resveratrol and quercetin, two natural
polyphenols, reduce apoptotic neuronal cell death induced by neuroinflammation. Journal of Neurosci-
ence Research, 86(2), 403–410. doi:10.1002/jnr.21503 PMID:17929310
Calderon-Ospina, C. A., Nava-Mesa, M. O., & Paez-Hurtado, A. M. (2020). Update on Safety Profiles
of Vitamins B1, B6, and B12: A Narrative Review. Therapeutics and Clinical Risk Management, 16,
1275–1288. doi:10.2147/TCRM.S274122 PMID:33376337
Capiralla, H., Vingtdeux, V., Zhao, H., Sankowski, R., Al-Abed, Y., Davies, P., & Marambaud, P. (2012,
February). Resveratrol mitigates lipopolysaccharide- and Abeta-mediated microglial inflammation by
inhibiting the TLR4/NF-kappaB/STAT signaling cascade. Journal of Neurochemistry, 120(3), 461–472.
doi:10.1111/j.1471-4159.2011.07594.x PMID:22118570
EBSCOhost - printed on 2/13/2023 11:18 AM via . All use subject to https://www.ebsco.com/terms-of-use
89

Dietary Components Consisting of Bioactive Molecules in the Prevention of Neurodegenerative Diseases
Chakrabarti, S., Guha, S., & Majumder, K. (2018, November 12). Food-Derived Bioactive Peptides in
Human Health: Challenges and Opportunities. Nutrients, 10(11), 1738. Advance online publication.
doi:10.3390/nu10111738 PMID:30424533
Charron, C. S., Clevidence, B. A., Britz, S. J., & Novotny, J. A. (2007, June 27). effect of dose size on
bioavailability of acylated and nonacylated anthocyanins from red cabbage (Brassica oleracea L. Var.
capitata). Journal of Agricultural and Food Chemistry, 55(13), 5354–5362. doi:10.1021/jf0710736
PMID:17542615
Charron, C. S., Kurilich, A. C., Clevidence, B. A., Simon, P. W., Harrison, D. J., Britz, S. J., Baer, D.
J., & Novotny, J. A. (2009, February 25). Bioavailability of anthocyanins from purple carrot juice: Effects of acylation and plant matrix. Journal of Agricultural and Food Chemistry, 57(4), 1226–1230.
doi:10.1021/jf802988s PMID:19166298
Chauhan, B., Kumar, G., Kalam, N., & Ansari, S. H. (2013, January). Current concepts and prospects
of herbal nutraceutical: A review. Journal of Advanced Pharmaceutical Technology & Research, 4(1),
4–8. doi:10.4103/2231-4040.107494 PMID:23662276
Chen, P., Li, L., Gao, Y., Xie, Z., Zhang, Y., Pan, Z., Tu, Y., Wang, H., Han, Q., Hu, X., & Xin, X. (2019,
June 30). beta-carotene provides neuro protection after experimental traumatic brain injury via the Nrf2ARE pathway. Journal of Integrative Neuroscience, 18(2), 153–161. doi:10.31083/j.jin.2019.02.120
PMID:31321956
Chen, X. Y., Zhou, J., Luo, L. P., Han, B., Li, F., Chen, J. Y., Zhu, Y. F., Chen, W., & Yu, X. P. (2015). Black
Rice Anthocyanins Suppress Metastasis of Breast Cancer Cells by Targeting RAS/RAF/MAPK Pathway.
BioMed Research International, 414250, 1–11. Advance online publication. doi:10.1155/2015/414250
PMID:26649302
Cheng, D., Kong, H., Pang, W., Yang, H., Lu, H., Huang, C., & Jiang, Y. (2016, December). B vitamin
supplementation improves cognitive function in the middle aged and elderly with hyperhomocysteinemia.
Nutritional Neuroscience, 19(10), 461–466. doi:10.1179/1476830514Y.0000000136 PMID:24938711
Cholerton, B., Baker, L. D., & Craft, S. (2011, December). Insulin resistance and pathological brain
ageing. Diabetic Medicine, 28(12), 1463–1475. doi:10.1111/j.1464-5491.2011.03464.x PMID:21974744
Cox, C. J., Choudhry, F., Peacey, E., Perkinton, M. S., Richardson, J. C., Howlett, D. R., Lichtenthaler,
S. F., Francis, P. T., & Williams, R. J. (2015, January). Dietary (-)-epicatechin as a potent inhibitor of
betagamma-secretase amyloid precursor protein processing. Neurobiology of Aging, 36(1), 178–187.
doi:10.1016/j.neurobiolaging.2014.07.032 PMID:25316600
DeLegge, M. H., & Smoke, A. (2008, February). Neurodegeneration and inflammation. Nutrition in
Clinical Practice, 23(1), 35–41. doi:10.1177/011542650802300135 PMID:18203962
Di Meo, F., Margarucci, S., Galderisi, U., Crispi, S., & Peluso, G. (2019, October 11). Curcumin, Gut
Microbiota, and Neuroprotection. Nutrients, 11(10), 2426. Advance online publication. doi:10.3390/
nu11102426 PMID:31614630
90
EBSCOhost - printed on 2/13/2023 11:18 AM via . All use subject to https://www.ebsco.com/terms-of-use

Dietary Components Consisting of Bioactive Molecules in the Prevention of Neurodegenerative Diseases
Di Meo, S., Reed, T. T., Venditti, P., & Victor, V. M. (2016). Harmful and Beneficial Role of ROS. Oxidative
Medicine and Cellular Longevity, 7909186, 1–3. Advance online publication. doi:10.1155/2016/7909186
PMID:27818723
Dobrzynska, M., Napierala, M., & Florek, E. (2020, September 2). Flavonoid Nanoparticles: A Promising Approach for Cancer Therapy. Biomolecules, 10(9), 1268. Advance online publication. doi:10.3390/
biom10091268 PMID:32887473
Douaud, G., Refsum, H., de Jager, C. A., Jacoby, R., Nichols, T. E., Smith, S. M., & Smith, A. D. (2013,
June 4). Preventing Alzheimer’s disease-related gray matter atrophy by B-vitamin treatment. Proceedings
of the National Academy of Sciences of the United States of America, 110(23), 9523–9528. doi:10.1073/
pnas.1301816110 PMID:23690582
Duncan, A. M., Phipps, W. R., & Kurzer, M. S. (2003, June). Phyto-oestrogens. Best Practice & Re-
search. Clinical Endocrinology & Metabolism, 17(2), 253–271. doi:10.1016/S1521-690X(02)00103-3
PMID:12787551
El Soury, M., Fornasari, B. E., Carta, G., Zen, F., Haastert-Talini, K., & Ronchi, G. (2021, July 10). The
Role of Dietary Nutrients in Peripheral Nerve Regeneration. International Journal of Molecular Sciences,
22(14), 7417. Advance online publication. doi:10.3390/ijms22147417 PMID:34299037
Erro, R., Brigo, F., Tamburin, S., Zamboni, M., Antonini, A., & Tinazzi, M. (2018, January). Nutritional
habits, risk, and progression of Parkinson disease. Journal of Neurology, 265(1), 12–23. doi:10.100700415-
017-8639-0 PMID:29018983
Faria, A., Meireles, M., Fernandes, I., Santos-Buelga, C., Gonzalez-Manzano, S., Duenas, M., de Freitas,
V., Mateus, N., & Calhau, C. (2014, April 15). Flavonoid metabolites transport across a human BBB
model. Food Chemistry, 149, 190–196. doi:10.1016/j.foodchem.2013.10.095 PMID:24295694
Farina, N., Llewellyn, D., Isaac, M., & Tabet, N. (2017, April 18). Vitamin E for Alzheimer’s dementia and mild cognitive impairment. Cochrane Database of Systematic Reviews, 4(4), CD002854.
doi:10.1002/14651858.CD002854.pub5 PMID:28418065
Farooqui, A. A. (2018). Ischemic and traumatic brain and spinal cord injuries mechanisms and potential
therapies. Elsevier/Academic Press.
Fraga, C. G., Croft, K. D., Kennedy, D. O., & Tomas-Barberan, F. A. (2019, February 20). The effects
of polyphenols and other bioactives on human health. Food & Function, 10(2), 514–528. doi:10.1039/
C8FO01997E PMID:30746536
Friese, M. A., Schattling, B., & Fugger, L. (2014, April). Mechanisms of neurodegeneration and axonal
dysfunction in multiple sclerosis. Nature Reviews. Neurology, 10(4), 225–238. doi:10.1038/nrneu-
rol.2014.37 PMID:24638138
Fu, C., Zheng, Y., Zhu, J., Chen, B., Lin, W., Lin, K., Zhu, J., Chen, S., Li, P., Fu, X., & Lin, Z. (2020).
Lycopene Exerts Neuroprotective Effects After Hypoxic-Ischemic Brain Injury in Neonatal Rats via the
Nuclear Factor Erythroid-2 Related Factor 2/Nuclear Factor-kappa-Gene Binding Pathway. Frontiers in
Pharmacology, 11, 585898. doi:10.3389/fphar.2020.585898 PMID:33390957
EBSCOhost - printed on 2/13/2023 11:18 AM via . All use subject to https://www.ebsco.com/terms-of-use
91

Dietary Components Consisting of Bioactive Molecules in the Prevention of Neurodegenerative Diseases
Galasso, C., Orefice, I., Pellone, P., Cirino, P., Miele, R., Ianora, A., Brunet, C., & Sansone, C. (2018,
July 24). On the Neuroprotective Role of Astaxanthin: New Perspectives? Marine Drugs, 16(8), 247.
Advance online publication. doi:10.3390/md16080247 PMID:30042358
Goodfellow, M. J., Borcar, A., Proctor, J. L., Greco, T., Rosenthal, R. E., & Fiskum, G. (2020, June).
Transcriptional activation of antioxidant gene expression by Nrf2 protects against mitochondrial dysfunction and neuronal death associated with acute and chronic neurodegeneration. Experimental Neurology,
328, 113247. doi:10.1016/j.expneurol.2020.113247 PMID:32061629
Gorzkiewicz, J., Bartosz, G., & Sadowska-Bartosz, I. (2021, May 16). The Potential Effects of Phytoestrogens: The Role in Neuroprotection. Molecules (Basel, Switzerland), 26(10), 2954. Advance online
publication. doi:10.3390/molecules26102954 PMID:34065647
Granzotto, A., & Zatta, P. (2011). Resveratrol acts not through anti-aggregative pathways but mainly via
its scavenging properties against Abeta and Abeta-metal complexes toxicity. PLoS One, 6(6), e21565.
doi:10.1371/journal.pone.0021565 PMID:21738712
Gu, Y., Chen, X., Fu, S., Liu, W., Wang, Q., Liu, K. J., & Shen, J. (2021). Astragali Radix Isoflavones
Synergistically Alleviate Cerebral Ischemia and Reperfusion Injury Via Activating Estrogen ReceptorPI3K-Akt Signaling Pathway. Frontiers in Pharmacology, 12, 533028. doi:10.3389/fphar.2021.533028
PMID:33692686
Hajizadeh Moghaddam, A., Ahmadnia, H., Jelodar, S. K., & Ranjbar, M. (2020, June). Hesperetin
nanoparticles attenuate anxiogenic-like behavior and cerebral oxidative stress through the upregulation
of antioxidant enzyme expression in experimental dementia of Alzheimer’s type. Neurological Research,
42(6), 477–486. doi:10.1080/01616412.2020.1747716 PMID:32252616
Hamaguchi, T., Ono, K., & Yamada, M. (2006, July). Anti-amyloidogenic therapies: Strategies for prevention and treatment of Alzheimer’s disease. Cellular and Molecular Life Sciences, 63(13), 1538–1552.
doi:10.100700018-005-5599-9 PMID:16804637
Higuera-Ciapara, I., Felix-Valenzuela, L., & Goycoolea, F. M. (2006). Astaxanthin: A review of
its chemistry and applications. Critical Reviews in Food Science and Nutrition, 46(2), 185–196.
doi:10.1080/10408690590957188 PMID:16431409
Hira, S., Saleem, U., Anwar, F., Sohail, M. F., Raza, Z., & Ahmad, B. (2019, September 2). beta-Carotene: A Natural Compound Improves Cognitive Impairment and Oxidative Stress in a Mouse Model
of Streptozotocin-Induced Alzheimer’s Disease. Biomolecules, 9(9), 441. Advance online publication.
doi:10.3390/biom9090441 PMID:31480727
Hui, C., Bin, Y., Xiaoping, Y., Long, Y., Chunye, C., Mantian, M., & Wenhua, L. (2010). Anticancer
activities of an anthocyanin-rich extract from black rice against breast cancer cells in vitro and in vivo.
Nutrition and Cancer, 62(8), 1128–1136. doi:10.1080/01635581.2010.494821 PMID:21058201
Hurtado, O., Ballesteros, I., Cuartero, M. I., Moraga, A., Pradillo, J. M., Ramirez-Franco, J., BartolomeMartin, D., Pascual, D., Torres, M., Sanchez-Prieto, J., Salom, J. B., Lizasoain, I., & Moro, M. A. (2012,
July). Daidzein has neuroprotective effects through ligand-binding-independent PPARgamma activation.
Neurochemistry International, 61(1), 119–127. doi:10.1016/j.neuint.2012.04.007 PMID:22521773
92
EBSCOhost - printed on 2/13/2023 11:18 AM via . All use subject to https://www.ebsco.com/terms-of-use

Dietary Components Consisting of Bioactive Molecules in the Prevention of Neurodegenerative Diseases
Jiang, T., Wang, X. Q., Ding, C., & Du, X. L. (2017, November). Genistein attenuates isoflurane-induced
neurotoxicity and improves impaired spatial learning and memory by regulating cAMP/CREB and BDNFTrkB-PI3K/Akt signaling. The Korean Journal of Physiology & Pharmacology; Official Journal of the
Korean Physiological Society and the Korean Society of Pharmacology, 21(6), 579–589. doi:10.4196/
kjpp.2017.21.6.579 PMID:29200900
Jiang, T., Xu, S., Shen, Y., Xu, Y., & Li, Y. (2021). Genistein Attenuates Isoflurane-Induced Neuroinflammation by Inhibiting TLR4-Mediated Microglial-Polarization in vivo and in vitro. Journal of
Inflammation Research, 14, 2587–2600. doi:10.2147/JIR.S304336 PMID:34168482
Kempuraj, D., Thangavel, R., Kempuraj, D. D., Ahmed, M. E., Selvakumar, G. P., Raikwar, S. P., Zaheer,
S. A., Iyer, S. S., Govindarajan, R., Chandrasekaran, P. N., & Zaheer, A. (2021, March). Neuroprotective
effects of flavone luteolin in neuroinflammation and neurotrauma. BioFactors (Oxford, England), 47(2),
190–197. doi:10.1002/biof.1687 PMID:33098588
Khan, M. S., Ali, T., Kim, M. W., Jo, M. H., Jo, M. G., Badshah, H., & Kim, M. O. (2016, November). Anthocyanins protect against LPS-induced oxidative stress-mediated neuroinflammation and
neurodegeneration in the adult mouse cortex. Neurochemistry International, 100, 1–10. doi:10.1016/j.
neuint.2016.08.005 PMID:27522965
Lafarga, T., Fernandez-Sevilla, J. M., Gonzalez-Lopez, C., & Acien-Fernandez, F. G. (2020, November). Spirulina for the food and functional food industries. Food Research International, 137, 109356.
doi:10.1016/j.foodres.2020.109356 PMID:33233059
Lephart, E. D., West, T. W., Weber, K. S., Rhees, R. W., Setchell, K. D., Adlercreutz, H., & Lund, T. D.
(2002, January-February). Neurobehavioral effects of dietary soy phytoestrogens. Neurotoxicology and
Teratology, 24(1), 5–16. doi:10.1016/S0892-0362(01)00197-0 PMID:11836067
Lh, A., & Ahluwalia, N. (1997). Improving Iron Status Through Diet The Application of Knowledge
Concerning Dietary Iron Bioavailability in Human Populations. Academic Press.
Li, L., Li, W. J., Zheng, X. R., Liu, Q. L., Du, Q., Lai, Y. J., & Liu, S. Q. (2022, January 29). Eriodictyol
ameliorates cognitive dysfunction in APP/PS1 mice by inhibiting ferroptosis via vitamin D receptormediated Nrf2 activation. Molecular Medicine (Cambridge, Mass.), 28(1), 11. doi:10.118610020-022-
00442-3 PMID:35093024
Li, W. H., Cheng, X., Yang, Y. L., Liu, M., Zhang, S. S., Wang, Y. H., & Du, G. H. (2019, November
1). Kaempferol attenuates neuroinflammation and blood brain barrier dysfunction to improve neurological deficits in cerebral ischemia/reperfusion rats. Brain Research, 1722, 146361. doi:10.1016/j.
brainres.2019.146361 PMID:31377105
Liu, Y., Liang, X., Zou, Y., Peng, Y., McClements, D. J., & Hu, K. (2020, May 1). Resveratrol-loaded
biopolymer core-shell nanoparticles: Bioavailability and anti-inflammatory effects. Food & Function,
11(5), 4014–4025. doi:10.1039/D0FO00195C PMID:32322856
Lu, T., Pan, Y., Kao, S. Y., Li, C., Kohane, I., Chan, J., & Yankner, B. A. (2004, June 24). Gene regulation
and DNA damage in the ageing human brain. Nature, 429(6994), 883–891. doi:10.1038/nature02661
PMID:15190254
EBSCOhost - printed on 2/13/2023 11:18 AM via . All use subject to https://www.ebsco.com/terms-of-use
93

Dietary Components Consisting of Bioactive Molecules in the Prevention of Neurodegenerative Diseases
Mandel, S. A., Amit, T., Weinreb, O., Reznichenko, L., & Youdim, M. B. (2008, Winter). Simultaneous
manipulation of multiple brain targets by green tea catechins: A potential neuroprotective strategy for
Alzheimer and Parkinson diseases. CNS Neuroscience & Therapeutics, 14(4), 352–365. doi:10.1111/
j.1755-5949.2008.00060.x PMID:19040558
Manolescu, B. N., Oprea, E., Mititelu, M., Ruta, L. L., & Farcasanu, I. C. (2019, June 28). Dietary Anthocyanins and Stroke: A Review of Pharmacokinetic and Pharmacodynamic Studies. Nutrients, 11(7),
1479. Advance online publication. doi:10.3390/nu11071479 PMID:31261786
Marques, C., Fernandes, I., Meireles, M., Faria, A., Spencer, J. P. E., Mateus, N., & Calhau, C. (2018,
July 27). Gut microbiota modulation accounts for the neuroprotective properties of anthocyanins. Sci-
entific Reports, 8(1), 11341. doi:10.103841598-018-29744-5 PMID:30054537
May, J. M. (2012). Vitamin C transport and its role in the central nervous system. Sub-Cellular Bio-
chemistry, 56, 85–103. doi:10.1007/978-94-007-2199-9_6 PMID:22116696
McGhie, T. K., & Walton, M. C. (2007, June). The bioavailability and absorption of anthocyanins:
Towards a better understanding. Molecular Nutrition & Food Research, 51(6), 702–713. doi:10.1002/
mnfr.200700092 PMID:17533653
Md, S., Alhakamy, N. A., Aldawsari, H. M., & Asfour, H. Z. (2019, October 15). Neuroprotective and
Antioxidant Effect of Naringenin-Loaded Nanoparticles for Nose-to-Brain Delivery. Brain Sciences,
9(10), 275. Advance online publication. doi:10.3390/brainsci9100275 PMID:31618942
Milisav, I., Ribaric, S., & Poljsak, B. (2018). Antioxidant Vitamins and Ageing. Sub-Cellular Biochem-
istry, 90, 1–23. doi:10.1007/978-981-13-2835-0_1 PMID:30779004
Mittler, R. (2017, January). ROS Are Good. Trends in Plant Science, 22(1), 11–19. doi:10.1016/j.
tplants.2016.08.002 PMID:27666517
Muhammad, T., Ikram, M., Ullah, R., Rehman, S. U., & Kim, M. O. (2019, March 17). Hesperetin, a
Citrus Flavonoid, Attenuates LPS-Induced Neuroinflammation, Apoptosis and Memory Impairments by
Modulating TLR4/NF-kappaB Signaling. Nutrients, 11(3), 648. Advance online publication. doi:10.3390/
nu11030648 PMID:30884890
Naeem, K., Tariq Al Kury, L., Nasar, F., Alattar, A., Alshaman, R., Shah, F. A., Khan, A. U., & Li, S.
(2021). Natural Dietary Supplement, Carvacrol, Alleviates LPS-Induced Oxidative Stress, Neurodegeneration, and Depressive-Like Behaviors via the Nrf2/HO-1 Pathway. Journal of Inflammation Research,
14, 1313–1329. doi:10.2147/JIR.S294413 PMID:33854358
Nagai, T., & Inoue, R. (2004). Preparation and the functional properties of water extract and alkaline
extract of royal jelly. Food Chemistry, 84(2), 181–186. doi:10.1016/S0308-8146(03)00198-5
Nam, N. H. (2006, August). Naturally occurring NF-kappaB inhibitors. Mini-Reviews in Medicinal
Chemistry, 6(8), 945–951. doi:10.2174/138955706777934937 PMID:16918500
94
EBSCOhost - printed on 2/13/2023 11:18 AM via . All use subject to https://www.ebsco.com/terms-of-use

Dietary Components Consisting of Bioactive Molecules in the Prevention of Neurodegenerative Diseases
Nogueira, G. F., Oliveira, R. A., Velasco, J. I., & Fakhouri, F. M. (2020, October 28). Methods of
Incorporating Plant-Derived Bioactive Compounds into Films Made with Agro-Based Polymers for
Application as Food Packaging: A Brief Review. Polymers, 12(11), 2518. Advance online publication.
doi:10.3390/polym12112518 PMID:33126759
Ottaviani, J. I., Britten, A., Lucarelli, D., Luben, R., Mulligan, A. A., Lentjes, M. A., Fong, R., Gray,
N., Grace, P. B., Mawson, D. H., Tym, A., Wierzbicki, A., Forouhi, N. G., Khaw, K. T., Schroeter, H.,
& Kuhnle, G. G. C. (2020, October 21). Biomarker-estimated flavan-3-ol intake is associated with
lower blood pressure in cross-sectional analysis in EPIC Norfolk. Scientific Reports, 10(1), 17964.
doi:10.103841598-020-74863-7 PMID:33087825
Ozawa, Y., Sasaki, M., Takahashi, N., Kamoshita, M., Miyake, S., & Tsubota, K. (2012). Neuroprotective effects of lutein in the retina. Current Pharmaceutical Design, 18(1), 51–56.
doi:10.2174/138161212798919101 PMID:22211688
Pandey, K. B., & Rizvi, S. I. (2009, November-December). Plant polyphenols as dietary antioxidants
in human health and disease. Oxidative Medicine and Cellular Longevity, 2(5), 270–278. doi:10.4161/
oxim.2.5.9498 PMID:20716914
Parent, M., Chitturi, J., Santhakumar, V., Hyder, F., Sanganahalli, B. G., & Kannurpatti, S. S. (2020,
April 1). Kaempferol Treatment after Traumatic Brain Injury during Early Development Mitigates Brain
Parenchymal Microstructure and Neural Functional Connectivity Deterioration at Adolescence. Journal
of Neurotrauma, 37(7), 966–974. doi:10.1089/neu.2019.6486 PMID:31830867
Park, H. A., Hayden, M. M., Bannerman, S., Jansen, J., & Crowe-White, K. M. (2020, July 29). AntiApoptotic Effects of Carotenoids in Neurodegeneration. Molecules (Basel, Switzerland), 25(15), 3453.
Advance online publication. doi:10.3390/molecules25153453 PMID:32751250
Passamonti, S., Vrhovsek, U., Vanzo, A., & Mattivi, F. (2003, June 5). The stomach as a site for anthocyanins absorption from food. FEBS Letters, 544(1-3), 210–213. doi:10.1016/S0014-5793(03)00504-0
PMID:12782318
Perry, G., Cash, A. D., & Smith, M. A. (2002). Alzheimer Disease and Oxidative Stress. Journal of
Biomedicine & Biotechnology, 2(3), 120–123. doi:10.1155/S1110724302203010 PMID:12488575
Pervin, M., Unno, K., Takagaki, A., Isemura, M., & Nakamura, Y. (2019, July 25). Function of Green
Tea Catechins in the Brain: Epigallocatechin Gallate and its Metabolites. International Journal of Mo-
lecular Sciences, 20(15), 3630. Advance online publication. doi:10.3390/ijms20153630 PMID:31349535
Pluta, R., Januszewski, S., & Czuczwar, S. J. (2021, January 24). Myricetin as a Promising Molecule
for the Treatment of Post-Ischemic Brain Neurodegeneration. Nutrients, 13(2), 342. Advance online
publication. doi:10.3390/nu13020342 PMID:33498897
Poulose, S. M., Fisher, D. R., Larson, J., Bielinski, D. F., Rimando, A. M., Carey, A. N., Schauss, A. G., &
Shukitt-Hale, B. (2012, February 1). Anthocyanin-rich acai (Euterpe oleracea Mart.) fruit pulp fractions
attenuate inflammatory stress signaling in mouse brain BV-2 microglial cells. Journal of Agricultural
and Food Chemistry, 60(4), 1084–1093. doi:10.1021/jf203989k PMID:22224493
EBSCOhost - printed on 2/13/2023 11:18 AM via . All use subject to https://www.ebsco.com/terms-of-use
95

Dietary Components Consisting of Bioactive Molecules in the Prevention of Neurodegenerative Diseases
Qu, M., Zhou, Z., Chen, C., Li, M., Pei, L., Chu, F., Yang, J., Wang, Y., Li, L., Liu, C., Zhang, L., Zhang,
G., Yu, Z., & Wang, D. (2011, December). Lycopene protects against trimethyltin-induced neurotoxicity in primary cultured rat hippocampal neurons by inhibiting the mitochondrial apoptotic pathway.
Neurochemistry International, 59(8), 1095–1103. doi:10.1016/j.neuint.2011.10.005 PMID:22032970
Rahimifard, M., Maqbool, F., Moeini-Nodeh, S., Niaz, K., Abdollahi, M., Braidy, N., Nabavi, S. M., &
Nabavi, S. F. (2017, July). Targeting the TLR4 signaling pathway by polyphenols: A novel therapeutic
strategy for neuroinflammation. Ageing Research Reviews, 36, 11–19. doi:10.1016/j.arr.2017.02.004
PMID:28235660
Ramalingum, N., & Mahomoodally, M. F. (2014). The therapeutic potential of medicinal foods. Advances
in Pharmacological Sciences, 354264, 1–18. Advance online publication. doi:10.1155/2014/354264
PMID:24822061
Ramirez-Salazar, S. A., Herren, C., McCartney, J., & Ortiz Garcia, J. G. (2021, September 29). Dietary Insights in Neurological Diseases. Current Neurology and Neuroscience Reports, 21(10), 55.
doi:10.100711910-021-01143-w PMID:34586517
Rashno, M., Ghaderi, S., Nesari, A., Khorsandi, L., Farbood, Y., & Sarkaki, A. (2020, June). Chrysin
attenuates traumatic brain injury-induced recognition memory decline, and anxiety/depression-like
behaviors in rats: Insights into underlying mechanisms. Psychopharmacology, 237(6), 1607–1619.
doi:10.100700213-020-05482-3 PMID:32088834
Ravera, A., Carubelli, V., Sciatti, E., Bonadei, I., Gorga, E., Cani, D., Vizzardi, E., Metra, M., & Lombardi,
C. (2016, June 14). Nutrition and Cardiovascular Disease: Finding the Perfect Recipe for Cardiovascular
Health. Nutrients, 8(6), 363. Advance online publication. doi:10.3390/nu8060363 PMID:27314382
Rebas, E., Rzajew, J., Radzik, T., & Zylinska, L. (2020). Neuroprotective Polyphenols: A Modulatory
Action on Neurotransmitter Pathways. Current Neuropharmacology, 18(5), 431–445. doi:10.2174/157
0159X18666200106155127 PMID:31903883
Rendeiro, C., Rhodes, J. S., & Spencer, J. P. (2015, October). The mechanisms of action of flavonoids
in the brain: Direct versus indirect effects. Neurochemistry International, 89, 126–139. doi:10.1016/j.
neuint.2015.08.002 PMID:26260546
Rezai-Zadeh, K., Ehrhart, J., Bai, Y., Sanberg, P. R., Bickford, P., Tan, J., & Shytle, R. D. (2008, September 25). Apigenin and luteolin modulate microglial activation via inhibition of STAT1-induced CD40
expression. Journal of Neuroinflammation, 5(1), 41. doi:10.1186/1742-2094-5-41 PMID:18817573
Rice-Evans, C. A., & Miller, N. J. (1996, August). Antioxidant activities of flavonoids as bioactive components of food. Biochemical Society Transactions, 24(3), 790–795. doi:10.1042/bst0240790 PMID:8878849
Rumsey, S. C., & Levine, M. (1998). Absorption, transport, and disposition of ascorbic acid in humans.
The Journal of Nutritional Biochemistry, 9(3), 116–130. doi:10.1016/S0955-2863(98)00002-3
Sanz, C. M., Hanaire, H., Vellas, B. J., Sinclair, A. J., Andrieu, S., & Group, R. F. S. (2012, April).
Diabetes mellitus as a modulator of functional impairment and decline in Alzheimer’s disease. The Real.
FR cohort. Diabetic Medicine, 29(4), 541–548. doi:10.1111/j.1464-5491.2011.03445.x PMID:21913970
96
EBSCOhost - printed on 2/13/2023 11:18 AM via . All use subject to https://www.ebsco.com/terms-of-use

Dietary Components Consisting of Bioactive Molecules in the Prevention of Neurodegenerative Diseases
Sarkar, F. H., & Li, Y. (2003). Soy isoflavones and cancer prevention. Cancer Investigation, 21(5),
744–757. doi:10.1081/CNV-120023773 PMID:14628433
. Scalbert, A., & Williamson, G. (2000, Aug). Dietary intake and bioavailability of polyphenols. J Nutr,
130(8S Suppl), 2073S-2085S. doi:10.1093/jn/130.8.2073S
Scholey, A., Downey, L. A., Ciorciari, J., Pipingas, A., Nolidin, K., Finn, M., Wines, M., Catchlove, S.,
Terrens, A., Barlow, E., Gordon, L., & Stough, C. (2012, April). Acute neurocognitive effects of epigallocatechin gallate (EGCG). Appetite, 58(2), 767–770. doi:10.1016/j.appet.2011.11.016 PMID:22127270
Selvakumarasamy, S., Rengaraju, B., Arumugam, S. A., & Kulathooran, R. (2021, 2021/12/01/). Costus
pictus–transition from a medicinal plant to functional food: A review. Future Foods, 4, 100068.
Sharman, M. J., Verdile, G., Kirubakaran, S., & Münch, G. (2019). Inflammation in Alzheimer’s Disease,
and Prevention with Antioxidants and Phenolic Compounds – What Are the Most Promising Candidates?
In Neurodegeneration and Alzheimer’s Disease (pp. 233-266). Academic Press.
Siddiqui, M. A., Akhter, J., Aarzoo, J., Bashir, D., Manzoor, S., Rastogi, S., Arora, I., Aggarwal, N. B.,
& Samim, M. (2021, Dec). Resveratrol loaded nanoparticles attenuate cognitive impairment and inflammatory markers in PTZ-induced kindled mice. Int Immunopharmacol, 101(Pt A), 108287. doi:10.1016/j.
intimp.2021.108287
Singh-Mallah, G., Nair, S., Sandberg, M., Mallard, C., & Hagberg, H. (2019, September 20). The Role of
Mitochondrial and Endoplasmic Reticulum Reactive Oxygen Species Production in Models of Perinatal
Brain Injury. Antioxidants & Redox Signaling, 31(9), 643–663. doi:10.1089/ars.2019.7779 PMID:30957515
Spencer, J. L., Waters, E. M., Romeo, R. D., Wood, G. E., Milner, T. A., & McEwen, B. S. (2008, May).
Uncovering the mechanisms of estrogen effects on hippocampal function. Frontiers in Neuroendocrinol-
ogy, 29(2), 219–237. doi:10.1016/j.yfrne.2007.08.006 PMID:18078984
Spencer, J. P. (2010, October). The impact of fruit flavonoids on memory and cognition. British Journal
of Nutrition, 104(S3, Suppl 3), S40–S47. doi:10.1017/S0007114510003934 PMID:20955649
Sriraksa, N., Wattanathorn, J., Muchimapura, S., Tiamkao, S., Brown, K., & Chaisiwamongkol, K.
(2012). Cognitive-enhancing effect of quercetin in a rat model of Parkinson’s disease induced by 6-hydroxydopamine. Evidence-Based Complementary and Alternative Medicine, 823206, 1–9. Advance
online publication. doi:10.1155/2012/823206 PMID:21792372
Stacchiotti, A., & Corsetti, G. (2020). Natural Compounds and Autophagy: Allies Against Neurodegeneration. Frontiers in Cell and Developmental Biology, 8, 555409. doi:10.3389/fcell.2020.555409
PMID:33072744
Strachan, M. W., Reynolds, R. M., Marioni, R. E., & Price, J. F. (2011, February). Cognitive function,
dementia and type 2 diabetes mellitus in the elderly. Nature Reviews. Endocrinology, 7(2), 108–114.
doi:10.1038/nrendo.2010.228 PMID:21263438
Stutz, H., Bresgen, N., & Eckl, P. M. (2015, May). Analytical tools for the analysis of beta-carotene and
its degradation products. Free Radical Research, 49(5), 650–680. doi:10.3109/10715762.2015.102253
9 PMID:25867077
EBSCOhost - printed on 2/13/2023 11:18 AM via . All use subject to https://www.ebsco.com/terms-of-use
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