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What Is Exactly Nanotechnology in Life Science?
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What Is Exactly Nanotechnology in Life Science?

Nanotechnology is a relatively new discipline that has multiple angles, which are based not so much on semantics, but on more significant difference, such as Nano-Particles and Nano-Quantities. Both are Nano, but belong to totally different entities.

Today we do not have a unified definition of Nanotechnology. This circumstance creates a lot of misinterpretation and is misleading not for consumers only, but for professionals as well.

There are several major definitions of Nanotechnology. The most common description states that Nanotechnology is manipulation with particles less than 100 nanometers. Another version states that Nanotechnology is the science of engineering on a molecular scale, effectively building matter atom-by-atom. In other words Nanotechnology involves the construction of a matter in billionth size of a meter - roughly the size of several atoms.

If such definition of Nanotechnology more or less serves the industrial field, it has very little to do with the Life Science (Bio-Medical Science).

Let's once more remind ourselves that the prefix "nano" denotes a fraction of one-billionths of ... size, weight, volume, etc. measurement units. While industrial Nanotechnology is focused on nano-sizes (nano-particles) manipulation, Bio-Medical researches should focus its attention not so much on particle sizes of a matter, but on more important physiological element - quantity of biologically active substances used in products for specific biological effects.

Let's also remind another crucial for a Human Physiology fact - the usage amount of the majority of biological active substances in modern pharmaceutical and skincare industries exceeds physiological level (normally produced by the living organism) from several hundreds to several thousand times, thus creating multiple side effects and abnormal pathways of biological information transfer.

In that case what is Nanotechnology in Life Science? Nanotechnology in a Bio-Medical field is not so much about the science of manipulating matter on a nano-particles level, but most importantly is the science of using nano-quantities of biologically active substances in a very precise way to imitate physiological processes occurring in a living organism. The outcome of such approach has a physiological impact to the normal biological information transfer, with strong and predictable results, without any side effects.

It is very easy to manipulate with matter on an atomic level, but the real challenge of nanotechnology is to predict and target the final results. For example: a baker manipulates matter on a molecular level, when he transforms dough into the bread. Does that make him a Nanotech scientist? The answer is obvious - No.

In comparison with the industrial and electronic engineers, Life Science Nanotechnology enjoys a special advantage of having God's handiwork as a model. Just imitating nature (living organisms) by modeling Living System regulatory processes can bring incredible results.

BIONOVA's approach differs from the industrial nanotechnology, as well as from nanotechnological approach in health care industry, which is focusing today its attention only to the particle sizes of molecules.

BIONOVA's products do not contain any engineered nano-materials. BIONOVA's products are a combination of many ingredients (ordinary produced by the Human Body). Usually, these ingredients are presented in "nano-amounts" (physiological amounts) - at a level that is typical for healthy body production. This is the distinctive technology that is patented and utilized only by BIONOVA.

The distinctive difference of BIONOVA is that only our technology can combine multiple tiny amounts ["nano- amounts"] of ingredients into NANO-COMPLEXES™, which can be used as substrate (nutrition) to restore the skin self-healing processes.

BIONOVA IS USING NANOTECHNOLOGY IN LIFE SCIENCE ONLY AS A TOOL TO IMITATE PHYSIOLOGICAL PROCESSES


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