タイトルまたは説明
TB***0 is a synthetic version of the naturally occurring peptide
present in virtually all human and animal cells, Thymosin Beta*4.
This potent peptide is a member of a ubiquitous family of *6
related molecules with a high conservation of sequence and
localization in most tissues and circulating cells in the body.
TB***0 not only binds to actin, but also blocks actin
polymerization and is the actin-sequestering molecule in eukaryotic
cells.
TB***0 was identified as a gene that was up-regulated four-to-six
fold during early blood vessel formation and found to promote the
growth of new blood cells from the existing vessels. This peptide
is present in wound fluid and when administered subcutaneously, it
promotes wound healing, muscle building and speeds up recovery time
of muscles fibres and their cells. An additional key factor of
TB***0 is that it promotes cell migration through a specific
interaction with actin in the cell cytoskeleton. It has been
demonstrated that a central small amino acid long-actin binding
domain has both blood cell reproduction and wound healing
characteristics. These characteristics are uncovered by
accelerating the migration of endothelial cells and keratinocytes.
It also increases the production of extracellular matrix-degrading
enzymes.
Studies demonstrate that TB***0 is a potent, naturally occurring
wound repair factor withTB***0 is a synthetic version of the
naturally occurring peptide present in virtually all human and
animal cells, Thymosin Beta*4. This potent peptide is a member of a
ubiquitous family of *6 related molecules with a high conservation
of sequence and localization in most tissues and circulating cells
in the body. TB***0 not only binds to actin, but also blocks actin
polymerization and is the actin-sequestering molecule in eukaryotic
cells.
TB***0 was identified as a gene that was up-regulated four-to-six
fold during early blood vessel formation and found to promote the
growth of new blood cells from the existing vessels. This peptide
is present in wound fluid and when administered subcutaneously, it
promotes wound healing, muscle building and speeds up recovery time
of muscles fibres and their cells. An additional key factor of
TB***0 is that it promotes cell migration through a specific
interaction with actin in the cell cytoskeleton. It has been
demonstrated that a central small amino acid long-actin binding
domain has both blood cell reproduction and wound healing
characteristics. These characteristics are uncovered by
accelerating the migration of endothelial cells and keratinocytes.
It also increases the production of extracellular matrix-degrading
enzymes.
Studies demonstrate that TB***0 is a potent, naturally occurring
wound repair factor with anti-inflammatory properties. T4 is
different from other repair factors, such as growth factors, in
that it promotes endothelial and keratinocyte migration. It also
does not bind to the extracellular matrix and has a very low
molecular weight meaning it can travel relatively long distances
through tissues. One of TB***0 key mechanisms of action is its
ability to regulate the cell-building protein, Actin, a vital
component of cell structure and movement. Of the thousands of
proteins present in cells, actin represents up to *0% of the total
proteins which therefore plays a major role in the genetic makeup
of the cell.
anti-inflammatory properties. T4 is different from other
repair factors, such as growth factors, in that it promotes
endothelial and keratinocyte migration. It also does not bind to
the extracellular matrix and has a very low molecular weight
meaning it can travel relatively long distances through tissues.
One of TB***0 key mechanisms of action is its ability to regulate
the cell-building protein, Actin, a vital component of cell
structure and movement. Of the thousands of proteins present in
cells, actin represents up to *0% of the total proteins which
therefore plays a major role in the genetic makeup of the cell.
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