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Year 2025, Volume: 8 Issue: 1, 30 - 41, 03.07.2025
https://doi.org/10.54994/emujpharmsci.1665477

Abstract

References

  • Abdel-Razek MA, Abdelwahab MF, Abdelmohsen UR, Hamed AN (2022). Pharmacological and phytochemical biodiversity of Corchorus olitorius. RSC Adv 12(54): 35103-35114.
  • Akram M, Nawaz A (2017). Effects of medicinal plants on alzheimer’s disease and memory deficits. Neural Regeneration Research 12(4): 660–670.
  • Anstey KJ, Burns R, von Sanden C, Luszcz MA (2008). Psychological well-being is an independent predictor of falling in an 8-year follow-up of older adults. J Gerontol B Psychol Sci 63B(4): 249–257.
  • Balakumbahan R, Rajamani K, Kumanan K (2010). Acorus calamus: An overview. J Med Plants Res 4(25): 2740-2745.
  • Barnes J, Anderson LA, Phillipson JD (2001). St John’s wort (Hypericum perforatum L.): A review of its chemistry, pharmacology and clinical properties. The Journal of pharmacy and pharmacology 53(5): 583–600.
  • Bhargava V. (2011). Medicinal uses and pharmacological properties of Crocus sativus Linn (Saffron). Int J Pharm and Pharm Sci 3(suppl 3): 22–26.
  • Bortoli PM, Alvesa C, Costa E, Vanina AP, Sofiattia JR, et al. (2018). Ilex paraguariensis: Potential antioxidant on aluminium toxicity, in an experimental model of Alzheimer’s disease’. J Inorg Biochem 181: 104–110. Bracesco N, Sanchez AG, Contreras V, Menini T, Gugliucci A (2011). Recent advances on Ilex paraguariensis research: Minireview. J Ethnopharmacol 136(3): 378–384.
  • Choi K T (2008). Botanical characteristics, pharmacological effects and medicinal components of Korean Panax ginseng C A Meyer. Acta Pharm Sinic 29(9): 1109–1118.
  • ChunYan S, Ming QianLiang M, Khalid R, Ting H, LuPing Q (2015). Salvia miltiorrhiza: traditional medicinal uses, chemistry, and pharmacology. Chin J Nat Med 13(3): 163-182.
  • Cuong TD,Hung TM, Han HY, Roh HS, Seok J-H, et al. (2019). Potent acetylcholinesterase inhibitory compounds from Myristica fragrans. Nat Prod Comm 9(4): 1934578X1400900.
  • Dastmalchi K, Dorman HJD, Vuorela H, Hiltunen R (2007). Plants as potential sources for drug development against Alzheimer’s Disease. International J Biomed Pharm Sci 1(2): 83–104.
  • Diamond BJ, Bailey MR (2013). Ginkgo biloba. Indications, mechanisms, and safety. Psychiat Clin N Am 36(1): 73–83.
  • Ferreira A, Rodrigues M, Fortuna A, Falca˜o A, Alves G (2016). Huperzine A from Huperzia serrata: a review of its sources, chemistry, pharmacology and toxicology. Phytochem Rev 15(1): 51–85.
  • Graeber MB, Kösel S, Grasbon-Frodl E, Möller HJ, Mehraein P (1998). Histopathology and APOE genotype of the first Alzheimer disease patient, Auguste D. Neurogenetics 1(3):223-228.
  • Hamidpour M, Hamidpour R, Hamidpour S, Shahlari M (2014). Chemistry, Pharmacology, and Medicinal Property of Sage (Salvia) to Prevent and Cure Illnesses such as Obesity, Diabetes, Depression, Dementia, Lupus, Autism, Heart Disease, and Cancer. J Tradit Complement Med 4(2): 82-8.
  • Hampel H, Mesulam MM, Cuello AC, Farlow MR, Giacobini E, et al. (2018). The cholinergic system in the pathophysiology and treatment of Alzheimer's disease. Brain: a journal of neurology 141(7): 1917–1933.
  • Hopper MW, Vogel FS (1976). The limbic system in Alzheimer's disease. A neuropathologic investigation. Am J Pathol 85(1): 1-20.
  • Isolabella S, Cogoi L, López P, Anesini C, Ferraro G, et al. (2010). Study of the bioactive compounds variation during yerba mate (Ilex paraguariensis) processing. Food Chem 122(3): 695–699.
  • Izci Y, Cem Y Adresi Y (2015). Hipokampus: Yapısı ve Fonksiyonları, Türk Nöroşir Derg, 25(3), pp. 287–295.
  • LaPorte E, Sarris J, Stough C, Scholey A (2011). Neurocognitive effects of kava (Piper methysticum): a systematic review. Hum Psychopharmacol Clin Exp 26: 102–111.
  • Porres-Martínez M, González-Burgos E, Carretero ME, Gómez-Serranillos MP (2015). Protective properties of Salvia lavandulifolia Vahl. essential oil against oxidative stress-induced neuronal injury. Food Chem Toxicol 80: 154-162.
  • Monacelli AM, Cushman LA, Kavcic V, Duffy CJ (2003). Spatial disorientation in Alzheimer's disease: the remembrance of things passed. Neurology 61(11): 1491-1497.
  • Moradkhani H, Sargsyan E, Bibak H, Naseri B, Sadat-Hosseini M, et al. (2010). Melissa officinalis L., a valuable medicine plant: A review. J Med Plants Res 4(25): 2753–2759.
  • Nivinskiene O, Butkiene R, Mockute D (2003). Changes in the chemical composition of essential oil of Angelica archangelica L . roots during storage. Chemija 14(1): 52–56.
  • Rao RV, Descamps O, John V, Bredesen DE (2012). Ayurvedic medicinal plants for Alzheimer’s disease: a review. Alzheimer’s Res Ther 4(22): 2-9.
  • Rehman R, Akram M, Akhtar N, Jabeen Q, Saeed T, et al. (2011). Zingiber officinale Roscoe (Pharmacological Activity). J Med Plants Res 5(3): 344–348.
  • Sheppard O, Coleman M (2020). Alzheimer’s Disease: Etiology, Neuropathology and Pathogenesis, in Alzheimer’s Disease: Drug Discovery (Ed: Huang X), Exon Publications, Brisbane (AU), pp. 1-22.
  • Shakeri A, Sahebkar A, Javadi B (2016). Melissa officinalis L. - A review of its traditional uses, phytochemistry and pharmacology. J Ethnopharm 188: 204–228.
  • Shukla PK, Khanna VK, Ali MM, Maurya RR, Handa SS, et al. (2002). Protective effect of Acorus calamus against acrylamide induced neurotoxicity’. Phytother Res 16(3): 256–260.
  • Silva BA, Ferreres F, Malva JO, Dias ACP (2005). Phytochemical and antioxidant characterization of Hypericum perforatum alcoholic extracts. Food Chem 90(1-2): 157-167.
  • Sweeney MD, Sagare AP, Zlokovic BV (2018). Blood-brain barrier breakdown in Alzheimer disease and other neurodegenerative disorders, Nature reviews. Neurology 14(3): 133–150. Tildesley NTJ, Kennedy DO, Perry EK, Ballard CG, Savelev S, et al. (2003). Salvia lavandulaefolia (Spanish Sage) enhances memory in healthy young volunteers. Pharmacol Biochem Behav 75(3): 669–674.
  • Vellas B, Coley N, Ousset PJ, Berrut G, Dartigues JF, et al. (2012). Long-term use of standardised Ginkgo biloba extract for the prevention of Alzheimer’s disease (GuidAge): A randomised placebo-controlled trial. The Lancet Neurology 11(10): 851–859.
  • Wang B-Q (2010). Salvia miltiorrhiza: Chemical and pharmacological review of a medicinal plant. J Med Plants Res 4(25): 2813–2820.
  • Wolk D, Dickerson BC (2011). Fractionating verbal episodic memory in Alzheimer’s disease. NeuroImage 54(2): 1530–1539.
  • Wu TY, Chen CP, Jinn TR (2011). Traditional Chinese medicines and Alzheimer’s disease. TJOG 50(2): 131–135.
  • Xuan TD, Fukuta M, Wei AC, Elzaawely AA, Khanh TD, et al. (2008). Efficacy of extracting solvents to chemical components of kava (Piper methysticum) roots. J Nat Med 62(2):188–194.

Use of Medicinal Plants in Alzheimer’s Disease

Year 2025, Volume: 8 Issue: 1, 30 - 41, 03.07.2025
https://doi.org/10.54994/emujpharmsci.1665477

Abstract

Alzheimer’s disease (AD) is a chronic and progressively worsening condition that is primarily characterized by the loss of synapses and neurons in various regions of the brain, particularly in the hippocampus. The prevalence of Alzheimer's disease has increased due to the growing elderly population. The disease is triggered by a combination of molecular, genetic, and other risk factors. Key molecular contributors include amyloid-beta plaque accumulation and the hyperphosphorylation of tau proteins. These pathological changes lead to significant brain alterations, such as atherosclerotic changes, neurofibrillary tangles, neuritic plaques, synaptic and neuronal loss, granulovacuolar degeneration, and cholinergic cell loss. Therefore, the primary approach in AD treatment focuses on inhibiting amyloid-beta accumulation and tau protein hyperphosphorylation. Additionally, stimulation of the cholinergic system is considered a key therapeutic strategy. In the present study, 18 medicinal plants were reviewed based on their potential effects on AD. These plants are valuable drug candidates with various pharmacological properties, including antiplatelet, antioxidant, antidepressant, inhibition of amyloid-beta accumulation, cholinergic system stimulation, and neuroprotective effects, all of which are crucial in AD management. Due to the limited understanding of the disease’s exact causes, phytotherapy is currently used only to decelerate the progression of the disease or provide preventive benefits rather than as a definitive cure.

References

  • Abdel-Razek MA, Abdelwahab MF, Abdelmohsen UR, Hamed AN (2022). Pharmacological and phytochemical biodiversity of Corchorus olitorius. RSC Adv 12(54): 35103-35114.
  • Akram M, Nawaz A (2017). Effects of medicinal plants on alzheimer’s disease and memory deficits. Neural Regeneration Research 12(4): 660–670.
  • Anstey KJ, Burns R, von Sanden C, Luszcz MA (2008). Psychological well-being is an independent predictor of falling in an 8-year follow-up of older adults. J Gerontol B Psychol Sci 63B(4): 249–257.
  • Balakumbahan R, Rajamani K, Kumanan K (2010). Acorus calamus: An overview. J Med Plants Res 4(25): 2740-2745.
  • Barnes J, Anderson LA, Phillipson JD (2001). St John’s wort (Hypericum perforatum L.): A review of its chemistry, pharmacology and clinical properties. The Journal of pharmacy and pharmacology 53(5): 583–600.
  • Bhargava V. (2011). Medicinal uses and pharmacological properties of Crocus sativus Linn (Saffron). Int J Pharm and Pharm Sci 3(suppl 3): 22–26.
  • Bortoli PM, Alvesa C, Costa E, Vanina AP, Sofiattia JR, et al. (2018). Ilex paraguariensis: Potential antioxidant on aluminium toxicity, in an experimental model of Alzheimer’s disease’. J Inorg Biochem 181: 104–110. Bracesco N, Sanchez AG, Contreras V, Menini T, Gugliucci A (2011). Recent advances on Ilex paraguariensis research: Minireview. J Ethnopharmacol 136(3): 378–384.
  • Choi K T (2008). Botanical characteristics, pharmacological effects and medicinal components of Korean Panax ginseng C A Meyer. Acta Pharm Sinic 29(9): 1109–1118.
  • ChunYan S, Ming QianLiang M, Khalid R, Ting H, LuPing Q (2015). Salvia miltiorrhiza: traditional medicinal uses, chemistry, and pharmacology. Chin J Nat Med 13(3): 163-182.
  • Cuong TD,Hung TM, Han HY, Roh HS, Seok J-H, et al. (2019). Potent acetylcholinesterase inhibitory compounds from Myristica fragrans. Nat Prod Comm 9(4): 1934578X1400900.
  • Dastmalchi K, Dorman HJD, Vuorela H, Hiltunen R (2007). Plants as potential sources for drug development against Alzheimer’s Disease. International J Biomed Pharm Sci 1(2): 83–104.
  • Diamond BJ, Bailey MR (2013). Ginkgo biloba. Indications, mechanisms, and safety. Psychiat Clin N Am 36(1): 73–83.
  • Ferreira A, Rodrigues M, Fortuna A, Falca˜o A, Alves G (2016). Huperzine A from Huperzia serrata: a review of its sources, chemistry, pharmacology and toxicology. Phytochem Rev 15(1): 51–85.
  • Graeber MB, Kösel S, Grasbon-Frodl E, Möller HJ, Mehraein P (1998). Histopathology and APOE genotype of the first Alzheimer disease patient, Auguste D. Neurogenetics 1(3):223-228.
  • Hamidpour M, Hamidpour R, Hamidpour S, Shahlari M (2014). Chemistry, Pharmacology, and Medicinal Property of Sage (Salvia) to Prevent and Cure Illnesses such as Obesity, Diabetes, Depression, Dementia, Lupus, Autism, Heart Disease, and Cancer. J Tradit Complement Med 4(2): 82-8.
  • Hampel H, Mesulam MM, Cuello AC, Farlow MR, Giacobini E, et al. (2018). The cholinergic system in the pathophysiology and treatment of Alzheimer's disease. Brain: a journal of neurology 141(7): 1917–1933.
  • Hopper MW, Vogel FS (1976). The limbic system in Alzheimer's disease. A neuropathologic investigation. Am J Pathol 85(1): 1-20.
  • Isolabella S, Cogoi L, López P, Anesini C, Ferraro G, et al. (2010). Study of the bioactive compounds variation during yerba mate (Ilex paraguariensis) processing. Food Chem 122(3): 695–699.
  • Izci Y, Cem Y Adresi Y (2015). Hipokampus: Yapısı ve Fonksiyonları, Türk Nöroşir Derg, 25(3), pp. 287–295.
  • LaPorte E, Sarris J, Stough C, Scholey A (2011). Neurocognitive effects of kava (Piper methysticum): a systematic review. Hum Psychopharmacol Clin Exp 26: 102–111.
  • Porres-Martínez M, González-Burgos E, Carretero ME, Gómez-Serranillos MP (2015). Protective properties of Salvia lavandulifolia Vahl. essential oil against oxidative stress-induced neuronal injury. Food Chem Toxicol 80: 154-162.
  • Monacelli AM, Cushman LA, Kavcic V, Duffy CJ (2003). Spatial disorientation in Alzheimer's disease: the remembrance of things passed. Neurology 61(11): 1491-1497.
  • Moradkhani H, Sargsyan E, Bibak H, Naseri B, Sadat-Hosseini M, et al. (2010). Melissa officinalis L., a valuable medicine plant: A review. J Med Plants Res 4(25): 2753–2759.
  • Nivinskiene O, Butkiene R, Mockute D (2003). Changes in the chemical composition of essential oil of Angelica archangelica L . roots during storage. Chemija 14(1): 52–56.
  • Rao RV, Descamps O, John V, Bredesen DE (2012). Ayurvedic medicinal plants for Alzheimer’s disease: a review. Alzheimer’s Res Ther 4(22): 2-9.
  • Rehman R, Akram M, Akhtar N, Jabeen Q, Saeed T, et al. (2011). Zingiber officinale Roscoe (Pharmacological Activity). J Med Plants Res 5(3): 344–348.
  • Sheppard O, Coleman M (2020). Alzheimer’s Disease: Etiology, Neuropathology and Pathogenesis, in Alzheimer’s Disease: Drug Discovery (Ed: Huang X), Exon Publications, Brisbane (AU), pp. 1-22.
  • Shakeri A, Sahebkar A, Javadi B (2016). Melissa officinalis L. - A review of its traditional uses, phytochemistry and pharmacology. J Ethnopharm 188: 204–228.
  • Shukla PK, Khanna VK, Ali MM, Maurya RR, Handa SS, et al. (2002). Protective effect of Acorus calamus against acrylamide induced neurotoxicity’. Phytother Res 16(3): 256–260.
  • Silva BA, Ferreres F, Malva JO, Dias ACP (2005). Phytochemical and antioxidant characterization of Hypericum perforatum alcoholic extracts. Food Chem 90(1-2): 157-167.
  • Sweeney MD, Sagare AP, Zlokovic BV (2018). Blood-brain barrier breakdown in Alzheimer disease and other neurodegenerative disorders, Nature reviews. Neurology 14(3): 133–150. Tildesley NTJ, Kennedy DO, Perry EK, Ballard CG, Savelev S, et al. (2003). Salvia lavandulaefolia (Spanish Sage) enhances memory in healthy young volunteers. Pharmacol Biochem Behav 75(3): 669–674.
  • Vellas B, Coley N, Ousset PJ, Berrut G, Dartigues JF, et al. (2012). Long-term use of standardised Ginkgo biloba extract for the prevention of Alzheimer’s disease (GuidAge): A randomised placebo-controlled trial. The Lancet Neurology 11(10): 851–859.
  • Wang B-Q (2010). Salvia miltiorrhiza: Chemical and pharmacological review of a medicinal plant. J Med Plants Res 4(25): 2813–2820.
  • Wolk D, Dickerson BC (2011). Fractionating verbal episodic memory in Alzheimer’s disease. NeuroImage 54(2): 1530–1539.
  • Wu TY, Chen CP, Jinn TR (2011). Traditional Chinese medicines and Alzheimer’s disease. TJOG 50(2): 131–135.
  • Xuan TD, Fukuta M, Wei AC, Elzaawely AA, Khanh TD, et al. (2008). Efficacy of extracting solvents to chemical components of kava (Piper methysticum) roots. J Nat Med 62(2):188–194.
There are 36 citations in total.

Details

Primary Language English
Subjects Pharmaceutical Sciences
Journal Section Review
Authors

Müberra Koşar

Asya Tekbıyık

Publication Date July 3, 2025
Submission Date April 25, 2025
Acceptance Date June 18, 2025
Published in Issue Year 2025 Volume: 8 Issue: 1

Cite

APA Koşar, M., & Tekbıyık, A. (2025). Use of Medicinal Plants in Alzheimer’s Disease. EMU Journal of Pharmaceutical Sciences, 8(1), 30-41. https://doi.org/10.54994/emujpharmsci.1665477
AMA Koşar M, Tekbıyık A. Use of Medicinal Plants in Alzheimer’s Disease. EMUJPharmSci. July 2025;8(1):30-41. doi:10.54994/emujpharmsci.1665477
Chicago Koşar, Müberra, and Asya Tekbıyık. “Use of Medicinal Plants in Alzheimer’s Disease”. EMU Journal of Pharmaceutical Sciences 8, no. 1 (July 2025): 30-41. https://doi.org/10.54994/emujpharmsci.1665477.
EndNote Koşar M, Tekbıyık A (July 1, 2025) Use of Medicinal Plants in Alzheimer’s Disease. EMU Journal of Pharmaceutical Sciences 8 1 30–41.
IEEE M. Koşar and A. Tekbıyık, “Use of Medicinal Plants in Alzheimer’s Disease”, EMUJPharmSci, vol. 8, no. 1, pp. 30–41, 2025, doi: 10.54994/emujpharmsci.1665477.
ISNAD Koşar, Müberra - Tekbıyık, Asya. “Use of Medicinal Plants in Alzheimer’s Disease”. EMU Journal of Pharmaceutical Sciences 8/1 (July2025), 30-41. https://doi.org/10.54994/emujpharmsci.1665477.
JAMA Koşar M, Tekbıyık A. Use of Medicinal Plants in Alzheimer’s Disease. EMUJPharmSci. 2025;8:30–41.
MLA Koşar, Müberra and Asya Tekbıyık. “Use of Medicinal Plants in Alzheimer’s Disease”. EMU Journal of Pharmaceutical Sciences, vol. 8, no. 1, 2025, pp. 30-41, doi:10.54994/emujpharmsci.1665477.
Vancouver Koşar M, Tekbıyık A. Use of Medicinal Plants in Alzheimer’s Disease. EMUJPharmSci. 2025;8(1):30-41.