| Literature DB >> 30964049 |
Prajakta Deshpande1, Neha Gogia1, Amit Singh2.
Abstract
Alzheimer's disease (hereafter AD) is a progressive neurodegenerative disorder that affects the central nervous system. There are multiple factors that cause AD, viz., accumulation of extracellular Amyloid-beta 42 plaques, intracellular hyper-phosphorylated Tau tangles, generation of reactive oxygen species due to mitochondrial dysfunction and genetic mutations. The plaques and tau tangles trigger aberrant signaling, which eventually cause cell death of the neurons. As a result, there is shrinkage of brain, cognitive defects, behavioral and psychological problems. To date, there is no direct cure for AD. Thus, scientists have been testing various strategies like screening for the small inhibitor molecule library or natural products that may block or prevent onset of AD. Historically, natural products have been used in many cultures for the treatment of various diseases. The research on natural products have gained importance as the active compounds extracted from them have medicinal values with reduced side effects, and they are bioavailable. The natural products may target the proteins or members of signaling pathways that get altered in specific diseases. Many natural products are being tested in various animal model systems for their role as a potential therapeutic target for AD, and to address questions about how these natural products can rescue AD or other neurodegenerative disorders. Some of these products are in clinical trials and results are promising because of their neuroprotective, anti-inflammatory, antioxidant, anti-amyloidogenic, anticholinesterase activities and easy availability. This review summarizes the use of animal model systems to identify natural products, which may serve as potential therapeutic targets for AD.Entities:
Keywords: Alzheimer's disease; Drosophila; Lunasin; amyloid-beta 42; anti-inflammation; antioxidant; cell death; natural products; neurodegeneration; neuroprotective
Year: 2019 PMID: 30964049 PMCID: PMC6524497 DOI: 10.4103/1673-5374.253509
Source DB: PubMed Journal: Neural Regen Res ISSN: 1673-5374 Impact factor: 5.135
Natural products and their mode of action in neurodegeneration
| Phytochemicals | Class | Animal model system | Mode of action | Reference |
|---|---|---|---|---|
| Lunasin | 2S albumin | 1. Downregulate Jun-N terminal kinase (JNK) signaling pathway | Sarkar et al. (2018) | |
| 2. Neuroprotective role in Alzheimer’s disease | ||||
| Curcumin | Polyphenol | Rats Human neuroblastoma cells | 1. Decrease in amyloid-beta (Aβ) aggregation | Williams et al. (2011) |
| 2. Decreases tumor necrosis factor α and nuclear factor ĸB levels Activates protein kinase B (Akt)/glycogen synthase kinase 3 pathway, increase in brain derived neurotrophic factor secretion | Hoppe et al. (2013) | |||
| 3. Decrease in reactive oxygen species and increase in cell survival | Doggui et al. (2013) | |||
| Resveratrol | Polyphenol | Cultured hippocampal neurons Zebrafish | 1. Inhibits inducible nitric oxide synthase, inhibits formation of pro-inflammatory mediators | Rahman et al. (2006), |
| 2. Low acetylation of sirtuin and p53 | ||||
| Quercetin | Flavonoid | Rats | 1. Free radical scavenging | Pany et al. (2014) |
| 2. Inhibits nuclear factor ĸB levels | ||||
| Catechin | Flavonoid | Mice | 1. Lowers cognitive impairment in animal models of AD | Rezai-Zadeh et al. (2005) |
| Kaempferol | Flavonoid | 1. Lowers acetylcholinesterase activity | Beg et al. (2018) | |
| 2. Reduced the oxidative stress | ||||
| Huperzine A | Alkaloids | 1. Lowers amyloid aggregates in the brain | Zhang et al. (2008) | |
| Nicotine | Alkaloids | Mice | 1. Cognitive improvement | Newhouse et al. (2012) |
| 2. Reduce aggregation of Aβ in brain | Nordberg et al. 2002) | |||
| Berberine | Alkaloids | Rat | 1. Reduce Aβ formation and accumulation of the plaques | Cai et al. (2016) |
| 2. Lowers Tau hyperphosphorylation | ||||
| 3. Reduce oxidative stress and neuroinflammation in the brain | ||||
| Gigkolides | Terpenes | Mice | Recovers Aβ induced apoptosis | Bate et al. (2008) |
| Platycodin D | Triterpenoid | Rat | Increase synaptogenesis | Kim et al. (2017) |