Neuroprotective and anxiolytic potential of green rooibos (Aspalathus linearis) polyphenolic extract. 2022

Víctor López, and Guillermo Cásedas, and Kelly Petersen-Ross, and Yigael Powrie, and Carine Smith
Department of Pharmacy, Universidad San Jorge, Villanueva de Gállego, Zaragoza, Spain.

South African rooibos (Aspalathus linearis) tea is globally consumed for its health benefits and caffeine free nature, but no information is available on the neuroprotective capacity of (unfermented) green rooibos. Our aim was to investigate the cytoprotective activity of green rooibos in neuronal cells, including probing antioxidant and enzyme inhibitory properties that could explain observed effects in these cells. We also investigated the anxiolytic potential of green rooibos using zebrafish larval models. Green rooibos extract (Green oxithin™) was assessed for its neuroprotective potential in Neuro-2a cells treated with different concentrations of the extract (12.5-25-50-100 μg mL-1) and different concentrations of hydrogen peroxide (250 or 125 μM) as oxidizing agent. Cell viability (MTT) and redox status (intracellular ROS) were also quantified in these cells. Antioxidant properties of the extract were quantified using cell-free systems (DPPH, ORAC and xanthine/xanthine oxidase), and potential neuroprotection evaluated in terms of its potential to inhibit key enzymes of the CNS (monoamine oxidase A (MOA-A), acetylcholinesterase (AChE) and tyrosinase (TYR)). Results demonstrated that green rooibos extract exerted significant cytoprotective properties in Neuro-2a cells, particularly when exposed to lethal 250 μM hydrogen peroxide, increasing cell survival by more than 100%. This may be ascribed (at least partially) to its capacity to limit intracellular ROS accumulation in these cells. Data from cell-free systems confirmed that green rooibos was able to scavenge free radicals (synthetic and physiological) in a dose dependent manner with a similar profile activity to vitamins C and E. Green rooibos also acted as a moderate MAO-A inhibitor, but had no significant effect on AChE or TYR. Finally, zebrafish larvae treated with lower doses of green rooibos demonstrated a significant anxiolytic effect in the light-dark anxiety model. Using the PTZ excitotoxicity model, green rooibos was shown to rescue GABA receptor signalling, which together with its demonstrated inhibition of MAO-A, may account for the anxiolytic outcome. Current data confirms that green rooibos could be considered a "functional brain food" and may be a good option as starting ingredient in the development of new nutraceuticals.

UI MeSH Term Description Entries
D007814 Larva Wormlike or grublike stage, following the egg in the life cycle of insects, worms, and other metamorphosing animals. Maggots,Tadpoles,Larvae,Maggot,Tadpole
D010936 Plant Extracts Concentrated pharmaceutical preparations of plants obtained by removing active constituents with a suitable solvent, which is evaporated away, and adjusting the residue to a prescribed standard. Herbal Medicines,Plant Extract,Extract, Plant,Extracts, Plant,Medicines, Herbal
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001522 Behavior, Animal The observable response an animal makes to any situation. Autotomy Animal,Animal Behavior,Animal Behaviors
D014151 Anti-Anxiety Agents Agents that alleviate ANXIETY, tension, and ANXIETY DISORDERS, promote sedation, and have a calming effect without affecting clarity of consciousness or neurologic conditions. ADRENERGIC BETA-ANTAGONISTS are commonly used in the symptomatic treatment of anxiety but are not included here. Anti-Anxiety Agent,Anti-Anxiety Drug,Anxiolytic,Anxiolytic Agent,Anxiolytic Agents,Tranquilizing Agents, Minor,Anti-Anxiety Drugs,Anti-Anxiety Effect,Anti-Anxiety Effects,Antianxiety Effect,Antianxiety Effects,Anxiolytic Effect,Anxiolytic Effects,Anxiolytics,Tranquillizing Agents, Minor,Agent, Anti-Anxiety,Agent, Anxiolytic,Agents, Anti-Anxiety,Agents, Anxiolytic,Agents, Minor Tranquilizing,Agents, Minor Tranquillizing,Anti Anxiety Agent,Anti Anxiety Agents,Anti Anxiety Drug,Anti Anxiety Drugs,Anti Anxiety Effect,Anti Anxiety Effects,Drug, Anti-Anxiety,Drugs, Anti-Anxiety,Effect, Anti-Anxiety,Effect, Antianxiety,Effect, Anxiolytic,Effects, Anti-Anxiety,Effects, Antianxiety,Effects, Anxiolytic,Minor Tranquilizing Agents,Minor Tranquillizing Agents
D015027 Zebrafish An exotic species of the family CYPRINIDAE, originally from Asia, that has been introduced in North America. Zebrafish is a model organism for drug assay and cancer research. Brachydanio rerio,Danio rerio,B. rerio,D. rerio,Zebra Fish,Zebra Fishes,Zebra danio,Zebrafishes,D. rerios,Fishes, Zebra,Zebra danios,danio, Zebra
D059808 Polyphenols A large class of organic compounds having more than one PHENOL group. Polyphenol,Provinols
D018696 Neuroprotective Agents Drugs intended to prevent damage to the brain or spinal cord from ischemia, stroke, convulsions, or trauma. Some must be administered before the event, but others may be effective for some time after. They act by a variety of mechanisms, but often directly or indirectly minimize the damage produced by endogenous excitatory amino acids. Neuroprotectant,Neuroprotective Agent,Neuroprotective Drug,Neuroprotectants,Neuroprotective Drugs,Neuroprotective Effect,Neuroprotective Effects,Agent, Neuroprotective,Agents, Neuroprotective,Drug, Neuroprotective,Drugs, Neuroprotective,Effect, Neuroprotective,Effects, Neuroprotective
D036903 Aspalathus A plant genus of the family FABACEAE. It is the source of an herbal tea that is commonly consumed in South Africa. Members contain aspalathin and other polyphenols (PHENOLS). Rooibos,Aspalathus linearis,Rooibo

Related Publications

Víctor López, and Guillermo Cásedas, and Kelly Petersen-Ross, and Yigael Powrie, and Carine Smith
December 2012, Phytomedicine : international journal of phytotherapy and phytopharmacology,
Víctor López, and Guillermo Cásedas, and Kelly Petersen-Ross, and Yigael Powrie, and Carine Smith
May 2022, Molecules (Basel, Switzerland),
Víctor López, and Guillermo Cásedas, and Kelly Petersen-Ross, and Yigael Powrie, and Carine Smith
July 2018, Planta medica,
Víctor López, and Guillermo Cásedas, and Kelly Petersen-Ross, and Yigael Powrie, and Carine Smith
January 2024, Journal of ethnopharmacology,
Víctor López, and Guillermo Cásedas, and Kelly Petersen-Ross, and Yigael Powrie, and Carine Smith
January 2022, Planta medica,
Víctor López, and Guillermo Cásedas, and Kelly Petersen-Ross, and Yigael Powrie, and Carine Smith
June 2008, Journal of agricultural and food chemistry,
Víctor López, and Guillermo Cásedas, and Kelly Petersen-Ross, and Yigael Powrie, and Carine Smith
December 2005, Journal of agricultural and food chemistry,
Víctor López, and Guillermo Cásedas, and Kelly Petersen-Ross, and Yigael Powrie, and Carine Smith
September 2020, Biotech (Basel (Switzerland)),
Víctor López, and Guillermo Cásedas, and Kelly Petersen-Ross, and Yigael Powrie, and Carine Smith
October 2010, Journal of agricultural and food chemistry,
Víctor López, and Guillermo Cásedas, and Kelly Petersen-Ross, and Yigael Powrie, and Carine Smith
January 2021, Cardiovascular journal of Africa,
Copied contents to your clipboard!