Specialized solutions designed to support the growth, proliferation, differentiation, and cryopreservation of stem cells and other cell types; various formulations and volumes available. Products include supplements and a variety of procedural kits.
StemFlex Medium enables long term feeder-free culture of pluripotent stem cells (PSCs) and is optimized to support challenging applications, including single-cell passaging, gene editing, and reprogramming.
CTS (Cell Therapy Systems) StemScale PSC Suspension Medium is a xeno-free medium that enables robust expansion of pluripotent stem cells (PSCs) in suspension for translational and clinical applications.
Fully-supplemented MarrowMAX™ Bone Marrow Medium for short-term culture of bone marrow and other hematopoietic cells for cytogenetic studies and in vitro diagnostic procedures.
CTS KnockOut SR XenoFree Medium enables the growth and expansion of human embryonic stem cells (hESCs) and human induced pluripotent stem cells (hiPSCs) in a cell culture medium containing only human-derived or human recombinant proteins.
Essential 6 Medium is a feeder-free and xeno-free medium that supports the reprogramming of somatic cells and the spontaneous or directed differentiation of human pluripotent stem cells (PSCs).
CTS Essential 6 Medium is a cGMP-manufactured, xeno-free, feeder-free medium that supports the reprogramming of somatic cells and the spontaneous or directed differentiation of human pluripotent stem cells (PSCs).
Gibco StemScale PSC Suspension Medium supports the growth of pluripotent stem cells (PSCs) in suspension through the self-assembly of spheroids. The unique formulation of StemScale medium provides superior expansion while maintaining high viability and consistent spheroid formation across multiple PSC lines.
StemPro hESC SFM is a serum- and feeder-free medium specially formulated to support the growth and expansion of pluripotent stem cells (hESCs and iPSCs). It has been shown to support PSC growth for >50 passages without any signs of karyotypic abnormalities while maintaining differentiation potential.