China Pyruvic Acid 2-Ketopropionic Acid Suppliers - High-Quality Products from Leading Factory
C3H4O3
Description
Pyruvate is a key intermediate product in the metabolism of sugar, fat and protein. It participates in the tricarboxylic acid cycle (TCA cycle) and energy generation. In recent years, it has become a popular ingredient in the field of nutrition and health care due to its unique role in metabolic regulation, anti-oxidation and weight management. The following are its core nutrition and health functions and technical advantages:
Core nutrition and health functions
1. Energy metabolism & sports performance
Pyruvate directly participates in the tricarboxylic acid cycle in mitochondria, promotes the conversion of glucose into adenosine triphosphate (ATP), and enhances cellular energy supply. Studies have shown that it can increase the activity of lactate dehydrogenase (LDH) and creatine kinase (CK), accelerate the removal of lactate after exercise, relieve muscle fatigue and prolong endurance.
2. Weight management & fat metabolism
Pyruvate promotes fat oxidation and inhibits fat synthesis by activating the pyruvate dehydrogenase complex (PDH). Clinical trials have shown that daily supplementation of calcium pyruvate (6-10 g) can increase basal metabolic rate, reduce visceral fat accumulation, and assist in weight management.
3. Antioxidant and skin health
As a natural antioxidant, pyruvate's ability to scavenge free radicals can reduce the damage of oxidative stress to skin collagen. Its derivatives (such as pyruvate-FITC) have shown in studies to inhibit the formation of advanced glycation end products (AGEs), delay skin aging and improve inflammatory symptoms such as acne.
4. Cardiovascular & blood sugar regulation
Pyruvate inhibits the formation of atherosclerotic plaques by reducing the risk of low-density lipoprotein (LDL) oxidation. At the same time, its ability to promote glucose metabolism can improve insulin sensitivity and help maintain blood sugar homeostasis.
5. Liver detoxification and metabolic support
As a metabolic intermediate, pyruvate participates in the conversion of amino acids and lipids, reducing the burden on the liver. Its heavy metal chelating properties (such as binding lead and cadmium) can accelerate the excretion of toxins and protect liver cell function.
Applicable groups and recommended solutions
Sports enthusiasts: Enhance endurance and accelerate recovery after exercise.
Weight management group: Promote fat metabolism and reduce visceral fat.
Metabolic syndrome patients: Assist in regulating blood sugar and blood lipids.
Antioxidant demanders: Delay skin aging and improve photodamage.
Frequently Asked Questions (FAQ)
Q1: What is Pyruvate and what is its molecular formula?
Pyruvate is a crucial intermediate product in the metabolism of sugar, fat, and protein. It has the molecular formula C₃H₄O₃, a CAS number of 127-17-3, and a molecular weight of 88.06. It plays a central role in the tricarboxylic acid cycle (TCA cycle) for energy production.
Q2: How does Pyruvate help improve athletic performance?
It enters mitochondria directly to participate in the TCA cycle, promoting glucose conversion to ATP. It also boosts lactate dehydrogenase (LDH) and creatine kinase (CK) activities, helping to quickly clear lactate post-exercise, decrease muscle fatigue, and support endurance.
Q3: Can Pyruvate assist with fat loss and weight management?
Yes. Pyruvate activates the pyruvate dehydrogenase complex (PDH) to stimulate fat oxidation and suppress fat synthesis. Daily intake of calcium pyruvate (6-10 g) has been shown to raise basal metabolic rate and reduce visceral fat buildup.
Q4: What antioxidant and anti-aging benefits does Pyruvate offer?
As a natural antioxidant, it neutralizes free radicals to protect skin collagen from oxidative stress. Some derivatives (like pyruvate-FITC) help restrict advanced glycation end products (AGEs), which aids in delaying skin aging and soothing inflammatory acne symptoms.
Q5: How does Pyruvate support liver health and detoxification?
Pyruvate aids in the metabolism of lipids and amino acids, minimizing the physiological load on the liver. Its heavy metal chelating capabilities allow it to bind with toxins like lead and cadmium, accelerating their removal to support overall liver cell function.



