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1.
Biologicals ; 42(3): 133-8, 2014 May.
Artigo em Inglês | MEDLINE | ID: mdl-24477183

RESUMO

Thrombate III(®) is a highly purified antithrombin concentrate that has been used by clinicians worldwide for more than two decades for the treatment of hereditary antithrombin deficiency. The manufacturing process is based on heparin-affinity chromatography and pasteurization. To modernize the process and to further enhance the pathogen safety profile of the final product, despite the absence of infectious disease transmission, a nanofiltration step was added. The biochemical characterization and pathogen safety evaluation of Thrombate III(®) manufactured using the modernized process are presented. Bioanalytical data demonstrate that the incorporation of nanofiltration has no impact on the antithrombin content, potency, and purity of the product. Scaledown models of the manufacturing process were used to assess virus and prion clearance under manufacturing setpoint conditions. Additionally, robustness of virus clearance was evaluated at or slightly outside the manufacturing operating limits. The results demonstrate that pasteurization inactivated both enveloped and non-enveloped viruses. The addition of nanofiltration substantially increased clearance capacities for both enveloped and non-enveloped viruses by approximately 4-6 log10. In addition, the process achieves 6.0 log10 ID50 prion infectivity clearance. Thus, the introduction of nanofiltration increased the pathogen safety margin of the manufacturing process without impacting the key biochemical characteristics of the product.


Assuntos
Antitrombinas/química , Filtração/métodos , Nanotecnologia , Antitrombinas/isolamento & purificação , Humanos , Pasteurização
2.
J Biol Chem ; 278(28): 25947-51, 2003 Jul 11.
Artigo em Inglês | MEDLINE | ID: mdl-12734201

RESUMO

Damaged DNA bases are removed from mammalian genomes by base excision repair (BER). Single nucleotide BER requires several enzymatic activities, including DNA polymerase and 5',2'-deoxyribose-5-phosphate lyase. Both activities are intrinsic to four human DNA polymerases whose base substitution error rate during gap-filling DNA synthesis varies by more than 10,000-fold. This suggests that BER fidelity could vary over a wide range in an enzyme dependent manner. To investigate this possibility, here we describe an assay to measure the fidelity of BER reactions reconstituted with purified enzymes. When human uracil DNA glycosylase, AP endonuclease, DNA polymerase beta, and DNA ligase 1 replace uracil opposite template A or G, base substitution error rates are

Assuntos
Pareamento Incorreto de Bases , DNA Glicosilases , DNA Polimerase beta/metabolismo , Reparo do DNA , DNA/química , Sequência de Aminoácidos , Sequência de Bases , Carbono-Oxigênio Liases/metabolismo , DNA/metabolismo , DNA Ligase Dependente de ATP , DNA Ligases/metabolismo , DNA Liase (Sítios Apurínicos ou Apirimidínicos) , Escherichia coli/metabolismo , Humanos , Dados de Sequência Molecular , N-Glicosil Hidrolases/metabolismo , Oligonucleotídeos/química , Uracila-DNA Glicosidase
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