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About
Us
Pueraria
Mirifica
Effect
Of Phytoestrogens
Breast
Details
Nanotechnology |
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NANOTECHNOLOGY
Nanotechnology allows us to create and manipulate materials
and devices with precise size
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Nanotechnology is the science and engineering of nanometer scale objects. Specifically, nanotechnology allows us to create and manipulate materials and devices with precise size, shape and properties. The ability to make or alter
nano-sized structures has the potential to enable the development of new and improved products with valuable industrial applications.
NANOTECHNOLOGY
is the invention of
small particles in Nano-size that does amazing
things where normal size particles are unable to.
It has the capacity to penetrate deep down into
the skin layer while the core of the particle is
being protected while carrying variety of
substances to pass into the inner skin layer. This
effective mechanism will target directly to the
skin organ which will result in gaining the most
benefit from the composition.
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NANOSCIENCE
The word itself is a combination of nano, from the Greek “nanos” (or Latin “nanus”), meaning “Dwarf”, and the word "Science."
Nano refers to the 10-9 power, or one billionth. In these terms it refers to a meter, or a nanometer, which is on the scale of atomic diameters. For comparison, a human hair is about 100,000 nanometers thick. Nanoscience is the study of atoms, molecules, and objects whose size is on the nanometer scale (1 - 100 nanometers ).
NANOPARTICLES
Nanoparticles are small lipid vesicles in the range of
nanometers (10-9m). The best way to characterize them is
to compare them with liposomes and emulsions. Liposomes
and nanoparticles are of comparable size. Both occur in
the range from 20 to 1000 nm in diameter. Whereas
liposomes are composed of one or more bilayer membranes,
nanoparticles are formed by a single layered shell.
Liposomes are filled with water and therefore are typical
carriers for hydrophilic substances. On the other side,
nanoparticles are filled with oil and lend themselves
ideally as carriers for lipophilic agents or organic
agents.
Activity of Nanoparticles
Nanoparticles are small lipid vesicles formed by a monolayer of phospholipids. Whereas liposomes are
typical carriers for water substances, nanoparticles are the ideal delivery system to transport and protect organic agents.
Nanoparticles are very stable and have a high affinity to the skin. Therefore, an enhanced bioavailability of the
encapsulated material to the skin is achieved.
Liposomes are used to carry and protect hydrophilic agents. Water soluble agents are enclosed into liposomes if they
are present during the preparation. However, some part of the material always remains in the outer phase. In
addition to water soluble substances, also amphiphilic and lipophilic substances can be loaded into liposomes to
some extent.
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Amphiphilic molecules stick to the membrane whereas lipophilic substances can be incorporated into
the hydrophobic part of the bilayer. Usually such molecules have a negative influence on the stability of the liposomes.
In contrast to liposomes, nanoparticles are a much ideal carrier system to transport and protect lipophilic agents and
St.herb Nano Breast Cream is harmony combination of Nanotechnology and the timeless Thai herb, Pueraria Mirifica.
Nanosomes are oxidation stable compound which expands the cellular substructure and promotes development of the
lobules and alveoli of the breasts. You can instantly experience Natural Breast Enlargement & Firmness.
Nanosomes are protected from Surface & bulk erosion also, this feature provides added advantage - Toning
of Breast Skin, visible cleavage, radiant texture of breast skin & protection from free radicals. |
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The Properties Of Nanoparticles
1. The core of the particles can contain a wide variety of different cosmetic oils and organic agents.
2. Stable and be able to penetrate into the top layers of the skin.
3. Protect organic agents and transport them to the target organ.
Difference Between
Nanosomes & Liposomes |
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Liposomes
Liposomes are much larger than nanosomes in size.
Liposomes particles penetrate through the outer skin into the inner skin.
Surface erosion cause deterioration.
Liposomes will deliver much lesser active ingredient in the inner skin layer.
Liposomes are used to carry and protect hydrophilic agents.
Liposomes are composed of one or more bilayer membranes.
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