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Sigma Anti-bonding Calcium (SAC)

Revolutionary Technology Brings Breakthrough Treatments

 
 
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SAC Calcium is an innovative new bio-material based on calcium carbonate derived from small oyster shells. Highly advanced process formulates it to maintain positive charges (2+) by altering the bonding structure, namely sigma anti-bonding. The positive charges of the molecule attract water molecules to cluster around it, making it incredibly water soluble and allowing direct and passive absorption into our body through channel protein of our membranes by diffusion.

SAC Calcium is directly absorbed through the lining of digestive organs because of its anti-bonding positive charge, and is immediately bio-available. SAC bypasses active transport delivery that requires digestion with peptides and vitamin D, a complicated process that leaves absorbed calcium far less bio-available. As the chemical equation shows, two SAC molecules remain clustered together through our special process and releases two calcium ions, one oxygen molecule, and two carbon dioxide molecules, all of which our body knows how to deal with.

 

 

 
 

SAC is the world's first safe calcium-ion delivery system directly into our body." 

 
 
 
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SAC is the first safe calcium-ion-delivery-system to increase bone density naturally by awakening the body’s own bone-formation process. SAC also signals pituitary gland to initiate the cascade of hormonal responses to restore our body’s natural balance.
Unlike other electrically neutral calcium supplements that require Active Transport, SAC calcium’s Passive Transport brings full absorption of calcium without the need for Vitamin D, peptide, or other agents. SAC restores the bone forming process (osteoblast) naturally without disrupting natural bone metabolism unlike many prescription drugs that come with serious side effects

Inside our cells, SAC calcium quickly breaks down to yield calcium ions, which are absorbed into capillaries and triggers our body’s natural bone formation process.

 
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What is Sigma Anti-bonding?

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Anti-bonding orbitals are essentially the “opposite” of bonding orbitals. They are formed when atomic orbitals combine in ways that lead to predominantly destructive interference.

The key feature of anti-bonding orbitals is that the molecular orbitals have a higher energy than the corresponding atomic orbitals. Thus, the molecule has a higher energy than the separated atoms (atoms separated by a large distance) and the atoms would prefer to be in the lower atomic state.

Anytime two atomic orbitals combine to give a lower-energy bonding orbital, an analogous higher energy anti-bonding orbital is also formed. Above is a figure depicting this simple bond/anti-bond molecular orbital diagram that we had for hydrogen. The diagram also shows that electrons (in this case) completely fill the bonding orbital and leave the anti-bonding orbital empty.

SAC calcium’s sigma anti-bonding keeps the calcium atoms in the molecule very loose and unstable. Our innovative technology locks calcium atoms in place until it is released in our body.

 
 
 
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Absorption by Passive Transport

Anti-bonding of SAC calcium makes it hundreds of time more water soluble than conventional calcium supplements and maximizes the calcium absorption rate by 200 times more, all because SAC is passively absorbed without requiring any biochemical energy from cells. Common ‘electrically-neutral’ calcium supplements must go through active transport to be absorbed by digestion involving peptides and vitamin D. This process brings calcium into our blood vessels as physiologically inactive protein calcium.

Inactive protein calcium is only utilized for our body’s everyday needs until excreted and will NOT trigger hormonal responses nor bone formation (osteoblast). For adults, too much protein calcium will cause more problems for our health (hypercalcemia) instead of building strong bones.

Taking Calcium Where It Needs to Go

SAC’s cascading effects on physiological functions of our body also activate inactive protein-bound calcium in our blood to further boost the bone formation process, resulting in a rapid increase in bone density.

A regular calcium supplement is ineffective for BMD (bone mineral density). Considering the side effects associated with it, is it worth consuming?

Thousands of people have experienced a clinical increase of up to 80% in bone mineral density through the revolutionary SAC Calcium Technology.

 
 
 

Only SAC Provides PAC
(Physiologically Active Calcium)

Almost all your body’s calcium is stored in bone, but the tiny amount that circulates in your bloodstream is disproportionately vital to normal physiology. About half of this circulating calcium (50%) is “ionized”, which means it carries electrical charges and this calcium ions (Ca2+) are the only physiologically active form that can be recognized by our body and responsible for numerous functions of our body such as the firing of muscle and nerve cells, promoting blood clotting, preventing the depletion of bone mass, securing proper cell multiplications, etc.

Calcium ions in the blood are so vital that the body cannot permit it to fluctuate. Therefore, even a slight increase in the concentration of ionized calcium in the blood triggers the bone building process to take excess calcium into bones. Utilizing this process is by far the most effective and safe way to build bone density since it follows the body’s natural bone building mechanism. However, increasing the level of calcium ions in our blood to this threshold level that initiates hormonal response was simply impossible before SAC innovation. Physiologically Active Calcium (PAC) delivered by SAC (Sigma Antibonding Calcium) is what helps our body to reset balance and unleash our body’s enormous healing potential.

Inactive protein calcium is only utilized for our body’s everyday needs until the excess is excreted by our body and will NOT trigger hormonal responses nor bone formation (osteoblast). For adults, too much protein calcium intake will cause more problems for our health (hypercalcemia) than building strong bones.

 
 
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