• Product NameMagnesium Taurate
  • CasNo. 334824-43-0
  • MFC2H7NO3S.1/2Mg
  • MW272.58300
  • Purity
  • Appearance
  • Packing
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Product Details

CasNo: 334824-43-0

MF: C2H7NO3S.1/2Mg

Buy Quality 99% Pure Magnesium Taurate 334824-43-0 Fast Shipping

  • Molecular Formula:C2H7NO3S.1/2Mg
  • Molecular Weight:272.58300
  • PSA:183.20000 
  • LogP:0.54280 

Magnesium Taurate(Cas 334824-43-0) Usage

Description

Magnesium taurate appears to be a versatile supplement with a focus on cardiovascular health, stress management, and muscle support. As with any supplement, it's crucial to consult with a healthcare professional before incorporating it into one's routine, especially considering potential interactions and contraindications.

Uses

1. Cardiovascular Support:

Magnesium taurate is advocated for individuals looking to support cardiovascular health.
It is specifically mentioned for those with high blood pressure.
2. Stress and Fatigue:

Suitable for individuals experiencing tiredness and stress.
Potential benefits in managing symptoms related to stress and fatigue.
3. Muscle Repair and Exercise Performance:

Recommended for individuals seeking support for muscle repair.
Positively associated with improved exercise performance.

 

334824-43-0 Relevant articles

Complementary vascular-protective actions of magnesium and taurine: A rationale for magnesium taurate

M.F. McCarty

Medical Hypotheses Volume 46, Issue 2, February 1996, Pages 89-100

The complex magnesium taurate may thus have considerable potential as a vascular-protective nutritional supplement, and might also be administered parenterally, as an alternative to magnesium sulfate, in the treatment of acute myocardial infarction as well as of pre-eclampsia.

Timeline (Bioavailability) of Magnesium Compounds in Hours: Which Magnesium Compound Works Best?

Nazan Uysal, Servet Kizildag, Zeynep Yuce, Guven Guvendi, Sevim Kandis, Basar Koc, Aslı Karakilic, Ulas M. Camsari & Mehmet Ates

, Biological Trace Element Research, Volume 187, pages 128–136, (2019)

The aim of this study is to investigate the bioavailability of five different magnesium compounds (magnesium sulfate, magnesium oxide, magnesium acetyl taurate, magnesium citrate, and magnesium malate) in different tissues. Following a single dose 400 mg/70 kg magnesium administration to Sprague Dawley rats, bioavailability was evaluated by examining time-dependent absorption, tissue penetration, and the effects on the behavior of the animals.

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