Cat.#: BBM-3C-053
Description | Collagen Type IV is a common component of the basement membrane. Mouse Collagen Type IV from Ace Therapeutics is a purified collagen derived from murine engelbreth-holm-swarm (EHS) tumor, and the product can be used to regulate cell growth, differentiation, and tissue formation. |
Source | Murine engelbreth-holm-swarm (EHS) tumor |
Size | 1 mg, 10 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 |
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BBM-3C-022 | Mouse Collagen Type I and III, 5 mg |
Mouse Collagen Type I and III, 5 mg from Ace Therapeutics is purified from rom tail tendons of the mouse.
Type I collagen is the most abundant collagen and is found in connective tissues including tendons, ligaments, dermis, and blood vessels. Type III collagen is the second most abundant collagen in tissues and is found most commonly in tissues exhibiting elastic properties such as skin, lungs, intestinal walls, and walls of blood vessels, which resembles other fibrillar collagens in structure and function.
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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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BBM-3C-037 | Soluble Collagen Type I |
Soluble Collagen TypeⅠ from Ace Therapeutics is purified fromBovine achilles tendon by the Birkedal-Hansen method.
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BBM-3C-033 | Human Collagen Type III, 0.1 mg |
Human Collagen Type III, 0.1 mg from Ace Therapeutics is purified from human cartilage.
Type III collagen is the second most abundant collagen in tissues and is found most commonly in tissues exhibiting elastic properties such as skin, lungs, intestinal walls, and walls of blood vessels, which resembles other fibrillar collagens in structure and function. Type III collagen together with type I collagen are the main constituents of the interstitial matrix.
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BBM-3C-063 | Collagen Gel Culturing Kit |
Collagen Gel Culturing Kit from Ace Therapeutics is a ready-to-use kit for form gel. This kit consists of the all reagents required for the experiment, including cellmatrix type I-A, Ham F-12 culture medium, MEM Hanks culture medium, and reconstitution buffer.
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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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BBM-3C-062 | Collagens Type Ⅳ |
Collagens Type IV is derived from bovine tissue treated with pepsin. This product does not gel and needs to be mixed with collagen type I-A.
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BBM-3C-050 | Bovine Collagen Type I |
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.
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BBM-3C-059 | Collagens Type I-A |
Collagens Type I-A is acid-soluble Type-I collagen derived from porcine tendon. This product can quickly form a gel and is suitable for 3D cell culture products. It has high gel strength and transparency and is easy to observe under the microscope.
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BBM-3C-017 | Bovine Collagen Type I (Atelocollagen) , 30 mg |
Bovine Collagen Type I (Atelocollagen) from Ace Therapeutics is purified from bovine tendons.
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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