Arachidonic – Product Information
- Arachidonic supplement contains 30 servings per container.
What are Arachidonic Capsules?
Arachidonic Capsules combine key elements including Arachidonic Acid (1200mg) and Microcrystalline Cellulose (600mg). Arachidonic Acid, an omega-6 polyunsaturated fatty acid, holds crucial roles in cell structure and development, while Microcrystalline Cellulose, derived from plant cellulose, finds utility in stabilizing products across various industries. These capsules have been explored for their effects on aspects like muscle growth, inflammation, and cognitive function.
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What is Arachidonic Acid?
Arachidonic acid (ARA) is a polyunsaturated fat, its chemical structure is made up of 20 carbon atoms and has four specific double bonds in its structure. It’s classified as an omega-6 polyunsaturated fatty acid (PUFA).
Arachidonic acid is normally found in certain foods like poultry, meat, fish, eggs, and seafood. Cells store ARA in their structures, particularly in the sn-2 position of glycerophospholipids, which form the backbone of our cell membranes. Cells in the body like platelets, immune cells, liver, brain, and muscles contain significant amounts of ARA. It’s part of a cycle called the Lands cycle that helps maintain low levels of free ARA in cells.
The filamentous fungus Mortierella, especially the species Alpina, is considered a predominant source for preparing ARA on an industrial scale. Additionally, ARA can be synthesized in vitro from 5-hexyn-1-ol. This emphasizes the importance of ARA from various sources, both natural and synthetic, in our body’s functioning and development.
Arachidonic acid is crucial for the development and growth of cells, especially during periods of damage or injury. Animals that can’t produce ARA themselves, like herbivores, get it from sources like linoleic acid, which is an essential omega-6 PUFA with 18 carbon atoms and two double bonds. Linoleic acid is found in nuts, fatty seeds, and certain vegetable oils. It can be converted into ARA through various steps, but the conversion rate is influenced by factors like age, nutrition, and lifestyle choices. [R]
How does Arachidonic Acid work?
Arachidonic acid plays a key role in the body by forming powerful molecules called prostaglandins and leukotrienes. These molecules act like messengers, sending important signals to different parts of the body. The prostaglandins are made through two pathways known as the cyclooxygenase and arachidonate 5-lipoxygenase (5-LO) pathways. These pathways help create prostaglandins that have various roles in the body. For example, they’re important for things like muscle growth and differentiation, which is the process of turning stem cells into specialized muscle cells. They control steps like cell division, movement, and survival of these muscle cells. Prostaglandins are also involved in causing inflammation and pain when the body needs to respond to something harmful. They can increase blood flow, make blood vessels more leaky, and attract immune cells to where they’re needed. One particular prostaglandin called PGE2 seems to be especially good at causing muscle pain and inflammation. It’s also been linked to muscle wasting, where muscles start to break down. So, arachidonic acid and its products, like prostaglandins, have a big impact on muscles, the immune system, and how the body deals with injuries or threats [R]
Arachidonic Acid Investigations:
- Potential therapy for inflammatory muscle disease.[R]
- May facilitate the development and function of skeletal muscle [R]
- Possibly stimulates skeletal muscle tissue angiogenesis [R]
- Possibly effective treatment for Duchenne muscular dystrophy [R]
- May have a protective effect against the teratogenic effects of high blood sugar [R]
- May help improve cognitive function [R]
- May help boost workouts and reduce inflammation [R]
- May play a role in muscle protein synthesis to control muscle hypertrophy. [R]
Arachidonic Acid Safety and Side Effects
High levels of arachidonic acid can lead to some important problems. It might cause gallstones by making the gallbladder lining produce more mucin. This acid could also make the brain inflamed, and having too much of it in the blood has been linked to higher risks of depression. [R]
What is Microcrystalline Cellulose?
Microcrystalline cellulose (MCC) is a natural substance that comes from purified and partly broken-down cellulose, which is found in plants. It’s made by treating a type of cellulose called alpha-cellulose with a lot of mineral acids. The alpha-cellulose has tiny parts called microfibrils, which contain both paracrystalline and crystalline phases at a very small scale. The paracrystalline part is a sort of shapeless mass of cellulose chains, while the crystalline regions are tight bundles of really small crystals arranged in a straight line. These tiny crystals are formed by the cellulose chains sticking together through weak attractions and hydrogen bonding. They’re almost the same size as the microfibrils themselves.
Interestingly, the discovery of MCC actually started from a failed experiment. Scientists tried using a blender to break down hydrolyzed cellulose into smaller bits in water, hoping to get very small fragments of the crystals. Instead, they ended up with a stable mixture that we now call Avicel, which is a commercial form of MCC.
MCC can be turned into fine powder or mixed with water-soluble materials to make a colloidal form. It shares the good qualities of regular cellulose. It has the potential to be used in many areas like pharmaceuticals, cosmetics, food, and making composites with other materials. In powdered form, it’s used as a binder and filler in things like medicine tablets and food. In the colloidal form, it helps stabilize mixtures, control viscosity, and make pastes and creams smoother. Its qualities, like being lightweight, stiff, strong, non-toxic, and environmentally friendly, make it useful in different industries.[R]
How does Microcrystalline Cellulose work?
The exact mechanism by which microcrystalline cellulose (MCC) lowers cholesterol is not fully understood. One hypothesis is that MCC, which is not absorbed in the gut, could potentially influence the balance of gut bacteria. This alteration in the gut’s microflora might enhance the breakdown of bile acids, leaving fewer bile acids available for absorption. Bile acids play a role in cholesterol metabolism, and if their absorption is reduced, this could contribute to lower cholesterol levels. However, more research is needed to confirm this hypothesis and better understand how MCC affects cholesterol regulation.[R]
In terms of weight loss, MCC may be a form of dietary fiber that may be an essential dietary component, as it adds bulk to food without calories. When consumed on a nearly empty stomach, it generates a feeling of fullness by occupying space in the digestive system. This can lead to less hunger and lower caloric consumption overall, which aids in weight loss.
Microcrystalline Cellulose Investigations:
- Helps lower cholesterol [R][R]
- Reduced levels of glycemia and glycosylated hemoglobin [R]
- May help reduce body fat [R]
Microcrystalline Cellulose Safety and Side Effects
There were no significant effects on the human gastrointestinal tract observed during the administration of microcrystalline cellulose. In a study with randomly bred rats, groups that received microcrystalline cellulose for a duration of 6 months did not show any noticeable adverse effects on their organs or tissues. Histopathological examination also indicated no observable impact of the treatment.[R]
It’s important to note that while this study didn’t reveal any negative effects, microcrystalline cellulose is primarily intended for research purposes and not for human consumption.
Are Arachidonic capsules safe?
In addition to a lack of consistent evidence of direct benefits, the potential long-term effects of using. Arachidonic capsule are also unknown. Purerawz sells Arachidonic capsules for research purposes only not as arachidonic acid supplement or dietary supplement.
Where to Buy Arachidonic Capsules Online?
If you’re in search of enhanced labs arachidonic acid capsules PureRawz is the best place to buy online with 60 capsules.
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Arachidonic Capsules, combining Arachidonic Acid (ARA) and Microcrystalline Cellulose (MCC), present a unique blend of essential components. ARA, an omega-6 polyunsaturated fatty acid, plays a pivotal role in cell structure and development, while MCC, derived from plant cellulose, contributes to product stabilization across diverse industries. These capsules have been the subject of research examining their potential effects on muscle growth, muscle hypertrophy process, inflammation, cognitive function, and upper body strength, thereby establishing their essential role, for more energy, and amazing results. It’s vital to note that these capsules are designed primarily for research purposes and are not intended for human consumption or be used by healthcare practitioner.
Arachidonic Capsules contain 1200mg of Arachidonic Acid and 600mg of Microcrystalline Cellulose. ARA, found in various foods, is fundamental for cell membrane composition and function. MCC, derived from plant cellulose, has been harnessed for product stabilization. The capsules’ potential roles in muscle mass development, inflammation control, and cognitive enhancement have been studied extensively.
Microcrystalline Cellulose (MCC), derived from plant cellulose, is a natural substance recognized for its stabilizing properties in different sectors. The exact mechanism by which MCC aids in cholesterol reduction involves its potential influence on gut bacteria balance. This interaction may enhance the breakdown of bile acids, leading to fewer available for cholesterol absorption. MCC’s ability to promote a feeling of fullness and occupy space in the digestive system contributes to weight reduction.
While studies indicate MCC’s safety for the gastrointestinal tract based on animal models, its suitability for human consumption remains uncertain. Arachidonic Capsules, along with MCC, represent valuable tools for research, shedding light on potential benefits while underscoring the importance of thorough investigation and proper usage.
This information is for educational purposes only and does not constitute medical advice. THE PRODUCTS DESCRIBED HEREIN ARE FOR LABORATORY AND RESEARCH USE ONLY. All clinical research must be conducted with oversight from the appropriate Institutional Review Board (IRB). All preclinical research must be conducted with oversight from the appropriate Institutional Animal Care and Use Committee (IACUC) following the guidelines of the Animal Welfare Act (AWA).
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