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useful for study of interacting between cells

AteloCell® Atelocollagen, Permeable membrane for 6-well, 24-well culture plate

Background

Permeable collagen membrane is specially developed from highly purified bovine dermal type I Atelocollagen for single and double layer tissue culture studies. It is particularly suitable for studying the molecular interactions between two different cell types by culturing on both sides of the membrane. It is potentially useful for the study of artificial organs and in the emerging field of tissue engineering. The membrane is permeable and allows free passage of amino acids and small molecules, which is important for the absorption and exchange of molecules through the membrane using cell polarity.
This Collagen membrane is available for use with both 6 and 24 well culture plates.


AteloCell flyer download [PDF]

Feature and Advantages

Due to membrane transparency, microscopic observation of the cells is possible while culturing.
Study of cell interaction is possible without a co-culture.
Cell culturing on a collagen membrane creates a natural environment that resembles in-vivo systems.
Collagen membranes is available for use with both 6 and 24 well culture plates.
Amino acids and other small molecular weight compounds can move freely though the permeable collagen membrane.
All products are manufactured under stringent quality control.Collagen membranes
All product are sterilized.

Application

• Study of interaction between cells
• Fundamental researches of the artificial internal organs
• Screening of efficacy of medicine
• Study of cell metabolism and metabolism mechanism

Instruction manual for Atelocollagen, permeable membranePDF

Product List

Product Name Cat# Quantity Price

Atelocollagen Permeable Membrane For 6-well Culture Plate

KOU-CM-6 24PC

¥ 42,000
$ 560
€ 420

Atelocollagen Permeable Membrane For 24-well Culture Plate

KOU-CM-24 24PC

¥ 18,400
$ 246
€ 184

Atelocollagen Permeable Membrane

KOU-CLF-01 1SHEET

¥ 32,400
$ 432
€ 324

References
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    J Histochem Cytochem.2008 Mar;56(3):253-65
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    InVivo Circ Res. 2006 Mar 17;98(5):705-12.
  • Effects of ovarian theca cells on granulosa cell differentiation during gonadotropin-independent follicular growth in cattle.
    Orisaka M, Mizutani T, Tajima K, et al.
    Mol Reprod Dev, 73(6):737-44. 2006
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    Kuniaki Nagamine , Takuya Hirata , Kohei Okamoto , Yuina Abe , Hirokazu Kaji , and Matsuhiko Nishizawa
    ACS Biomater. Sci. Eng., 2015, 1 (5), pp 329–334.
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    Biomed Microdevices. 2011 Feb;13(1):123-9. PMID: 20957437
  • Evaluation of serum-free differentiation conditions for C2C12 myoblast cells assessed as to active tension generation capability.
    Fujita H, Endo A, Shimizu K, Nagamori E.
    Biotechnol Bioeng. 2010 Dec 1;107(5):894-901. PMID: 20635352
  • Rapid decrease in active tension generated by C2C12 myotubes after termination of artificial exercise.
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    J Muscle Res Cell Motil. 2010 Dec;31(4):279-88. PMID: 21120590
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    Imaizumi F, Asahina I, Moriyama T, Ishii M, Omura K
    Tissue Eng. 2004 May-Jun;10(5-6):657-664. PMID: 15265283

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