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Cord Blood Collection, Processing and Freezing Bag Sets for the Cryopreservation of Blood and Cellular Component

Cord blood stem cells have been effectively used in the treatment of more than 70 malignant and non-malignant diseases, including sickle cell, leukemia, non-Hodgkin’s lymphoma, other forms of cancer, life-threatening anemias, and autoimmune diseases. As a key supplier to the cord blood banking industry, Pall provides a full range of bag sets that are used to prepare the cord blood stem cells for treatment. Pall’s collection and processing sets are manufactured to cGMP using validated manufacturing processes that ensure safe, consistent and reliable product performance. Each bag is 100% inspected prior to release and is fully traceable by lot number. Pall’s bag sets are uniquely designed to facilitate closed system processing of cord blood stem cells by the volume reduction method developed at the New York Blood Center.
Cord blood stem cells have been effectively used in the treatment of more than 70 malignant and non-malignant diseases, including sickle cell, leukemia, non-Hodgkin’s lymphoma, other forms of cancer, life-threatening anemias, and autoimmune diseases. As a key supplier to the cord blood banking industry, Pall provides a full range of bag sets that are used to prepare the cord blood stem cells for treatment. Pall’s collection and processing sets are manufactured to cGMP using validated manufacturing processes that ensure safe, consistent and reliable product performance. Each bag is 100% inspected prior to release and is fully traceable by lot number. Pall’s bag sets are uniquely designed to facilitate closed system processing of cord blood stem cells by the volume reduction method developed at the New York Blood Center.
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Air-eliminating filter designed for 96-hour particle, bacteria and endotoxin retention

Particulate contamination arises from a variety of sources, intrinsically in infusates and equipment or extrinsically due to manipulations.1 Particles cause phlebitis on peripheral infusion lines and have serious systemic effects, damaging the lung and solid organs by irritation of the endothelium and by deposition in the microvasculature.
Particulate contamination arises from a variety of sources, intrinsically in infusates and equipment or extrinsically due to manipulations.1 Particles cause phlebitis on peripheral infusion lines and have serious systemic effects, damaging the lung and solid organs by irritation of the endothelium and by deposition in the microvasculature.
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