Cat.#: BBM-3C-050
| Description | Bovine Collagen Type I from Ace Therapeutics is a purified collagen derived from bovine tissue. The native collagen sequence contained in the preparation is missing or shortened since this product has been treated with pepsin. |
| Source | Bovine |
| Size | 30 mg |
| Form | Lyophilized |
| Purity | ≥90% (SDS-PAGE) |
| Sterility | Passed test for bacteria, fungi, and mycoplasma. |
| Storage | −20°C for 2 years. |
| Shipping | Dry ice |
| Cat.# | Name | Description | Price |
|---|---|---|---|
| BBM-3C-042 | Collagen Type IV (Human Placenta) |
Collagen Type IV (Human Placenta) from Human Cell Culture from Ace Therapeutics is derived from human placenta and is highly purified native, type IV collagen.
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inquiry |
| BBM-3C-051 | Human Collagen Type III |
Collagen Type III is found in a variety of conjunctival tissues, including human skin, and the cornea. Human Collagen Type III from Ace Therapeutics is a purified collagen derived from adult human placenta tissue, and the product can be used as a coating on tissue culture surfaces to promote cell adhesion and regulate cell behavior.
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inquiry |
| BBM-3C-030 | Bovine Collagen Type V (Atelocollagen), 1 mg |
Bovine Collagen Type V (Atelocollagen), 1 mg from Ace Therapeutics is purified from bovine placenta.
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inquiry |
| BBM-3C-064 | Collagen, Type I, from Rat Tail |
The rat tail collagen I provided by Ace Therapeutics is prepared according to the Birkedal-Hansen method through acetic acid extraction, sodium chloride precipitation, and disodium hydrogen phosphate precipitation. This product is derived from a rat tail, dissolved in 0.02M HAc solution, and the purity is greater than 90% as determined by SDS-PAGE, and it is sterile.
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inquiry |
| BBM-3C-054 | Human Collagen Type V |
Collagen Type V is found in the placenta, amniotic membrane, and cornea. Human Collagen Type V from Ace Therapeutics is a purified collagen from adult human placenta tissue. This product can be used as a coating on tissue culture surfaces to study the effects of collagen on cell behavior.
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inquiry |
| BBM-3C-036 | Rat Tail Tendon Collagen Type I |
Rat Tail Tendon Collagen Type I from Ace Therapeutics is purified from rat tail by the Birkedal-Hansen method. This product can form a three-dimensional glue with a certain strength when the concentration is above 1mg/mL and the pH is around 7.
Note: This product can quickly gel at RT when the pH is neutral. Keep the temperature as low as possible during the operation.
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inquiry |
| BBM-3C-031 | Human Collagen Type I, 0.1 mg |
Human Collagen Type I, 0.1 mg from Ace Therapeutics is purified from human placenta.
Type I collagen is found in connective tissues and is the major component of tensile strength of the extracellular matrix (ECM). The product is widely used as a thin layer on tissue-culture surfaces to enhance the attachment and proliferation of a variety of cells including endothelial cells, fibroblasts, hepatocytes, epithelial cells, etc. In addition, the product can self-assemble into a 3-D supramolecular gel in vitro as an ideal biological scaffold.
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inquiry |
| BBM-3C-040 | Collagen Type IV from Human Cell Culture |
Collagen Type IV from Human Cell Culture from Ace Therapeutics is derived from human fibroblasts and epithelial cells in a co-culture system, which creates an in vitro ECM (extracellular matrix) and serves as an excellent biological scaffold for three-dimensional cell culture.
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inquiry |
| BBM-3C-071 | Rat Collagen I, Lower Viscosity |
Rat Collagen I, Low Viscosity from Ace Therapeutics is a purified stromal extracellular matrix protein from rat tail tendons. This product is provided at a standard concentration that is lower in viscosity, making it easier to work with.
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inquiry |
| BBM-3C-018 | Mouse Collagen Type I (Atelocollagen), 1 mg |
Mouse Collagen Type I (Atelocollagen) from Ace Therapeutics is purified from the mouse tail tendon.
Type I collagen is found in connective tissues and is the major component of tensile strength of the extracellular matrix (ECM). The product is widely used as a thin layer on tissue-culture surfaces to enhance the attachment and proliferation of a variety of cells including endothelial cells, fibroblasts, hepatocytes, epithelial cells, etc. In addition, the product can self-assemble into a 3-D supramolecular gel in vitro as an ideal biological scaffold.
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inquiry |