Momentous Magtein Magnesium L-Threonate for Cognitive Health - 90 Capsules
Product details
Momentous Magtein is a magnesium L-threonate supplement designed to support brain health and cognitive performance. This specialized form of magnesium crosses the blood-brain barrier to help promote memory, learning, attention and focus while supporting quality rest and recovery.
Key Features
- Magnesium L-threonate formulation crosses the blood-brain barrier to reach brain cells
- Supports cognitive function including memory, learning, attention and focus
- Promotes quality rest and optimal recovery during sleep
- Helps regulate blood pressure, support muscle contraction and nerve signal transmission
- Certified for athletes with research-backed ingredients
- 145mg per serving
How to Use
Take 3 capsules 30–60 minutes before bedtime to promote restful sleep and support daily cognitive demands.
Who Is It For
This supplement suits anyone looking to enhance cognitive performance, support brain health and improve sleep quality, particularly those seeking a magnesium form that reaches brain tissue.
Product Details
| Brand | Momentous |
|---|---|
| Form | Capsules |
| Size | 90 Capsules |
Frequently asked questions
What is magnesium L-threonate and why is it different?
Magnesium L-threonate is a specialized form of magnesium that is demonstrated to penetrate the blood-brain barrier, allowing it to reach brain cells. This unique capability makes it distinct from other magnesium forms.
How many capsules should I take and when?
Take 3 capsules 30–60 minutes before bedtime to promote restful sleep and energize you for the next day's activities.
How long will one bottle last?
Each bottle contains 90 capsules. At the recommended dose of 3 capsules per day, one bottle provides a 30-day supply.
What functions does this magnesium support in the body?
Magnesium L-threonate helps facilitate muscle contraction, regulate blood pressure, synthesize DNA and proteins, transmit nerve signals, regulate neurotransmitter levels and fuel energy production in brain cells.