Revi, M. (2020) Alzheimer’s disease therapeutic approaches. GeNeDis 2018: Genetics and Neurodegeneration.105–116.
Poddar, M. K., Banerjee, S., Chakraborty, A., & Dutta, D. (2021). Metabolic disorder in Alzheimer’s disease. Metabolic brain disease, 36, 781–813.
Numakawa, T., & Kajihara, R. (2023). Involvement of brain-derived neurotrophic factor signaling in the pathogenesis of stress-related brain diseases. Frontiers in Molecular Neuroscience, 16, 1247422.
Article CAS PubMed PubMed Central Google Scholar
Aran, K. R., Gupta, G., & Singh, S. (2023). Cladribine induces apoptosis, neuroinflammation, mitochondrial oxidative stress, tau phosphorylation and Aβ (1–42) pathway in the hippocampus: An in vivo approach. Journal of Chemical Neuroanatomy, 133, 102340.
Article CAS PubMed Google Scholar
Shao, S., Ye, X., Su, W., & Wang, Y. (2023). Curcumin alleviates Alzheimer’s disease by inhibiting inflammatory response, oxidative stress and activating the AMPK pathway. Journal of Chemical Neuroanatomy, 134, 102363.
Article CAS PubMed Google Scholar
Chen, Z.-R., Huang, J.-B., Yang, S.-L., & Hong, F.-F. (2022). Role of cholinergic signaling in Alzheimer’s disease. Molecules, 27(6), 1816.
Article CAS PubMed PubMed Central Google Scholar
Marucci, G., Buccioni, M., Dal Ben, D., Lambertucci, C., Volpini, R., & Amenta, F. (2021). Efficacy of acetylcholinesterase inhibitors in Alzheimer’s disease. Neuropharmacology, 190, 108352.
Article CAS PubMed Google Scholar
Al-Tawarah, N. M., Al-Dmour, R. H., Abu Hajleh, M. N., Khleifat, K. M., Alqaraleh, M., & Al-Saraireh, Y. M., et al. (2023). Rosmarinus officinalis and Mentha piperita oils supplementation enhances memory in a rat model of scopolamine-induced alzheimer’s disease-like condition. Nutrients, 15(6), 1547.
Article CAS PubMed PubMed Central Google Scholar
Ni, H., Liao, Y., Zhang, Y., Lu, H., Huang, Z., & Huang, F., et al. (2023). Levistilide A ameliorates neuroinflammation via inhibiting JAK2/STAT3 signaling for neuroprotection and cognitive improvement in scopolamine-induced Alzheimer’s disease mouse model. International Immunopharmacology, 124, 110783.
Article CAS PubMed Google Scholar
Gilardone, G., Longo, C., & Papagno, C. (2024). The role of working memory and short-term memory in sentence comprehension: A systematic review and meta-analysis in probable Alzheimer’s disease. Neuropsychology Review, 34(2), 530–547.
Kose, S., Kutlu, M. D., Kara, S., Polat, S., & Akillioglu, K. (2023). Investigation of the protective effect of long-term exercise on molecular pathways and behaviours in scopolamine induced alzheimer’s disease-like condition. Brain Research, 1814, 148429.
Article CAS PubMed Google Scholar
Ghasemi, S., Moradzadeh, M., Hosseini, M., Beheshti, F., & Sadeghnia, H. R. (2019). Beneficial effects of Urtica dioica on scopolamine-induced memory impairment in rats: protection against acetylcholinesterase activity and neuronal oxidative damage. Drug and chemical toxicology, 42(2), 167–175.
Article CAS PubMed Google Scholar
Kim, Y., Kim, J., He, M., Lee, A., & Cho, E. (2021). Apigenin ameliorates scopolamine-induced cognitive dysfunction and neuronal damage in mice. Molecules, 26(17), 5192.
Article CAS PubMed PubMed Central Google Scholar
Onasanwo, S. A., Adamaigbo, V. O., Adebayo, O. G., & Eleazer, S. E. (2021). Moringa oleifera-supplemented diet protect against cortico-hippocampal neuronal degeneration in scopolamine-induced spatial memory deficit in mice: role of oxido-inflammatory and cholinergic neurotransmission pathway. Metabolic Brain Disease, 36(8), 2445–2460.
Article CAS PubMed Google Scholar
Beheshti, F., Akbari, H. R., Baghcheghi, Y., Mansouritorghabeh, F., Mortazavi Sani, S. S., & Hosseini, M. (2021). Beneficial effects of angiotensin converting enzyme inhibition on scopolamine-induced learning and memory impairment in rats, the roles of brain-derived neurotrophic factor, nitric oxide and neuroinflammation. Clinical and Experimental Hypertension, 43(6), 505–515.
Article CAS PubMed Google Scholar
Thongbai, B., Rapior, S., Hyde, K. D., Wittstein, K., & Stadler, M. (2015). Hericium erinaceus, an amazing medicinal mushroom. Mycological Progress, 14, 1–23.
Li I., Lee L.-Y., Tzeng T.-T., Chen W.-P., Chen Y.-P., Shiao Y.-J., et al. (2018). Neurohealth properties of Hericium erinaceus mycelia enriched with erinacines. Behavioural Neurology; 2018.
Hong, S. M., Yoon, D. H., Lee, M. K., Lee, J. K. & Kim, S. Y. (2022). A Mixture of Ginkgo biloba L. Leaf and Hericium erinaceus (Bull.) Pers. fruit extract attenuates scopolamine-induced memory impairments in mice. Oxidative Medicine and Cellular Longevity, 2022(1), 9973678
PubMed PubMed Central Google Scholar
Roda, E., Priori, E. C., Ratto, D., De Luca, F., Di Iorio, C., & Angelone, P., et al. (2021). Neuroprotective metabolites of Hericium erinaceus promote neuro-healthy aging. International Journal of Molecular Sciences, 22(12), 6379.
Article CAS PubMed PubMed Central Google Scholar
Martínez-Mármol, R., Chai, Y., Khan, Z., Kim, S. B., Hong, S. M., & Gormal, R. S., et al. (2020). Hericerin derivatives from Hericium erinaceus exert BDNF-like neurotrophic activity in central hippocampal neurons and enhance memory. bioRxiv, 2020, 271676.
Schwartz, A. G. (2022). Dehydroepiandrosterone, cancer, and aging. Aging and Disease, 13(2), 423.
Article PubMed PubMed Central Google Scholar
Aly, H., Metwally, F., & Ahmed, H. (2011). Neuroprotective effects of dehydroepiandrosterone (DHEA) in rat model of Alzheimer’s disease. Acta Biochimica Polonica, 58(4), 513–520.
Article CAS PubMed Google Scholar
Tang, J., Chen, L.-R., & Chen, K.-H. (2021). The utilization of dehydroepiandrosterone as a sexual hormone precursor in premenopausal and postmenopausal women: an overview. Pharmaceuticals, 15(1), 46.
Article PubMed PubMed Central Google Scholar
Nenezic, N., Kostic, S., Strac, D. S., Grunauer, M., Nenezic, D., & Radosavljevic, M., et al. (2023). Dehydroepiandrosterone (DHEA): Pharmacological effects and potential therapeutic application. Mini Reviews in Medicinal Chemistry, 23(8), 941–952.
Article CAS PubMed Google Scholar
Yi, Z., Shao-Long, Y., Ai-Hong, W., Zhi-Chun, S., Ya-Fen, Z., & Ye-Ting, X., et al. (2015). Protective Effect of Ethanol Extracts of Hericium erinaceus on Alloxan‐Induced Diabetic Neuropathic Pain in Rats. Evidence‐Based Complementary and. Alternative Medicine, 2015(1), 595480.
Hazekawa, M., Kataoka, A., Hayakawa, K., Uchimasu, T., Furuta, R., & Irie, K., et al. (2010). Neuroprotective effect of repeated treatment with Hericium erinaceum in mice subjected to middle cerebral artery occlusion. Journal of Health Science, 56(3), 296–303.
Babanzadeh, R., Vafaei, S. Y., Moghadam, D. A., Komaki, A., Mohammadi, M. (2024) Quercetin-loaded nanoemulsions prevent Scopolamine-induced neurotoxicity in male rats. Physiology & Behavior,114494.
Makhdoomi, S., Mahboobian, M. M., Haddadi, R., Komaki, A., & Mohammadi, M. (2022). Silibinin-loaded nanostructured lipid carriers (NLCs) ameliorated cognitive deficits and oxidative damages in aluminum chloride-induced neurotoxicity in male mice. Toxicology, 477, 153260.
Article CAS PubMed Google Scholar
Habibpour, N., Moghaddam, A. H., khanjani Jelodar, S., & Valizadegan, F. (2024). Protective effects of hops (Humulus lupulus L.) extract on analgesic activity and oxidative stress markers in the brain of rats with carrageenan-induced paw edema. South African Journal of Botany, 169, 336–340.
Gohari-Piran, M., Omidifar, N., Mohammadi, M., & Nili-Ahmadabadi, A. (2022). Phlebotomy-induced iron deficiency attenuates the pulmonary toxicity of paraquat in mice. Pesticide Biochemistry and Physiology, 188, 105278.
Article CAS PubMed Google Scholar
Moradkhani, S., Rezaei-Dehghanzadeh, T., & Nili-Ahmadabadi, A. (2020). Rosa persica hydroalcoholic extract improves cadmium-hepatotoxicity by modulating oxidative damage and tumor necrosis factor-alpha status. Environmental Science and Pollution Research, 27, 31259–31268.
Article CAS PubMed Google Scholar
Shangari, N., & O’Brien, P. J. (2006). Catalase activity assays. Current protocols in toxicology, 27(1), 7 1-7. 16.
Kim, S. B., Ryu, H. Y., Nam, W., Lee, S. M., Jang, M. R., & Kwak, Y. G., et al. (2023). The Neuroprotective Effects of Dendropanax morbifera Water Extract on Scopolamine-Induced Memory Impairment in Mice. International Journal of Molecular Sciences, 24(22), 16444.
Comments (0)