UniTantrix® Microcarriers, sterile, GMP grade

UniTantrix® Microcarriers, sterile, GMP grade

Catalog Number:
CCS1342728TAN
Mfr. No.:
GGBB18G701-01; GGBB18G710-01; GGBB18G720-01; GGBB18G711-01
Price:
$190
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      • Overview
        • UniTantrix® Microcarriers are macroporous, dissolvable microcarriers designed specifically for the growth of anchorage-dependent cells in a dynamic mixing environment. UniTantrix® is valued for its uniform porosity and very high interpore connectivity, resulting in a surface area of up to 6000 cm2/g and cell growth density higher than that of competitors’ microcarrier products. Also, the denatured collagen-based material that comprises UniTantrix® provides high cell attachment rates, growth yield, and cell viability. As a result, UniTantrix® is the most efficient and cost-effective solution for cell culture expansion across a wide range of applications including production of biopharmaceuticals and vaccines, cell and gene therapy, as well as cultured meat.

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          More Details

      • Properties
        • Categories
          Dissolvable Microcarriers
          Other Properties
          Material: Denatured collagen
          Density: 1~1.1 g/ml
          Diameter: 300~1000 μm
          Pore size: ~150 μm
          Surface area: ~6000 cm2/g
          Dissolvability: Trypsin-EDTA (or TrypLE)

          * For research use only, not for use in diagnostic and therapeutic procedures.

      • Applications
        • Application Description
          UniTantrix® Microcarriers are manufactured using patented technology, which creates a unique pore structure with very high pore connectivity and surface area. The highly connective and uniform pores allow cells to adhere, proliferate, migrate and differentiate within the microcarrier while simultaneously enabling the exchange of nutrients, oxygen and metabolic waste. It is manufactured with denatured collagen or other animal component-free materials without the use of chemical crosslinkers, which provides a number of advantages including flexible mechanical properties and physical stability, both of which reduce the amount of shear stress experienced by the cultured cells. In addition, the collagen is readily dissolved with enzymes, facilitating a cell recovery rate of nearly 100%.

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