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J Poiley

Publications and source records attributed to J Poiley.

5 recordsLinked to original sources

Removal of viruses from human intravenous immune globulin by 35 nm nanofiltration.

Viral safety is an important prerequisite for clinical immunoglobulin preparations. A common manufacturing practice is to utilize several virus removal/inactivation process steps to ensure the safety of human intravenous immunoglobulin (IVIg). In this regard, we examined the use of Planova 35 nm filters to reduce potential loads of both non-enveloped and enveloped viruses prior to end-stage solvent detergent treatment. The nanofiltration process was validated for removal of a variety of enveloped and non-enveloped viruses ranging in size from 70 nm to 18 nm including: Sindbis virus, Simian Virus 40 (SV40), Bovine Viral Diarrhoea virus (BVDV), Feline Calicivirus, Encephalomyocarditis virus (EMC), Hepatitis A virus (HAV), Bovine Parvovirus (BPV) and Porcine Parvovirus (PPV). The filtration procedure was carried out by first spiking a 7% solution of IVIg with < 10(8) virus. The spiked IVIg solution was then filtered through a 75 nm Planova filter followed by two Planova 35 nm filters in series (75/35/35). The 75 nm prefilter is incorporated into this process to increase the capacity of the 35 nm viral removal filters. As a result of the inclusion of the 75 nm pre-filtration step it was possible to assess the removal of virus by the 35 nm filters independent of possible aggregation of the initial viral spiking material. Samples were collected at each step and immediately titred by viral plaque assay. A process control sample of the spiked load solution was held at the same conditions for the duration of the filtration process and then titred to determine the extent to which antibody neutralization may have contributed to overall viral reduction. Control assays of spiked IVIg were performed to establish the degree of toxicity of the IVIg solution to the indicator cell lines and the extent to which the IVIg interfered with plaque formation in the assay system. This combined data was used to establish assay sensitivity for the calculation of log removal by the filtration process. It was noted that toxicity/interference effects could have a significant effect upon apparent log reductions, and these effects could vary greatly, even within viruses of the same family. The results of these studies indicate that 35 nm filtration is very effective for removing substantial quantities of both non-enveloped and enveloped viruses from IVIg. Complete clearance (to the limits of detection of the assay) was obtained for all viruses larger than 35 nm. Interestingly, viruses reported to have mean diameters of less than 35 nm (EMC and HAV) were at least partially removed by the filtration (4.3 and > 4.7 logs removal, respectively). Even small viruses such as PPV were to some extent removed from the IVIg solution by the filters (2.6 logs removal). Reduction of BPV would not be assessed due to extensive neutralization and interference with plaque formation by the IVIg. Sindbis and SV40 also were subject to neutralization and assay interference due to the IVIg, though to a lesser extent. We conclude from these studies that the 35 nm mean pore size is functionally efficient in removal of smaller size viruses from spiked IVIg concentrates.

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The Fanconi anemia complementation group C gene (FAC) suppresses transformation of mutant fibroblasts by the SV40 virus.

Fanconi anemia (FA) is a heterogeneous genetic syndrome manifested by bone marrow failure and consisting of at least five complementation groups (A, B, C, D, E). Mutations in a gene termed FAC are responsible for the C complementation group, but the function of the FAC protein remains obscure. FA patients are also highly cancer-prone; the molecular basis for this susceptibility is unclear but has led to the hypothesis that the wild-type FA gene may act as a tumor suppressor. In vitro, mutant FA primary fibroblasts are 3- to 50-fold more sensitive than normal fibroblasts to transformation in culture by the SV40 virus. We confirmed this marked susceptibility to transformation of a FAC-mutant primary fibroblast cell line, GM449. We then introduced a copy of the wild-type FAC cDNA into GM449 cells using a recombinant adeno-associated virus (rAAV) vector. We found that GM449 cells transduced with a copy of the normal FAC cDNA by a FAC-rAAV vector were at least 10-fold less prone to form transformed foci. Diminished transformation potential of transduced cells was a specific effect of the FAC cDNA since GM449 cells transduced with a rAAV vector not containing FAC retained marked susceptibility to SV40 transformation.

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Virus removal studies using nanofiltration membranes.

Nanofiltration of immunoglobulin products was investigated as a virus removal step using Planova-controlled pore size membranes. For these studies, purified preparations of an IgG and an IgM were tested with 15 nm and 35 nm Planovace nanofiltration membranes, respectively. The results of spiking studies with four model viruses indicated that both the Planova 15 and 35 membranes removed 6-7 log10 plaque or focus forming units of murine xenotropic retrovirus, simian virus 40 and pseudorabies virus. Although two tandem Planova 35 membranes were tested for clearance of poliovirus, only the Planova 15 membrane removed this virus. Nanofiltration experiments were carried out with protein concentrations up to 12 mg/ml for the IgG and 1-2 mg/ml for the IgM, and protein recovery was excellent.

Animals↗

Intra-articular orgotein in osteoarthritis of the knee: a placebo-controlled efficacy, safety, and dosage comparison.

PURPOSE: Superoxide dismutase (orgotein for injection) has been used in managing osteoarthritis for more than seven years in Europe; however, well-controlled studies to establish an optimum dosage regimen have not been conducted. In this study, three orgotein dose/regimens were compared with placebo in terms of efficacy, safety, and duration of effect in patients with active osteoarthritis of the knee. PATIENTS AND METHODS: A total of 139 patients with osteoarthritis of the knee were enrolled in the study. Nonsteroidal anti-inflammatory agents were withdrawn to induce a flare of disease activity. Patients were then randomly assigned to receive one intra-articular injection of either placebo or orgotein (8 mg to 32 mg) each week for three weeks. Both investigators and patients evaluated disease activity and adverse experiences at a series of follow-up visits for three months. RESULTS: Orgotein was effective in reducing symptoms of osteoarthritis for up to three months after treatment; 16 mg given twice was the most effective and most best-tolerated regimen. Discomfort at the injection site was drug related, although this effect also occurred occasionally after injection of placebo. CONCLUSION: The long-lasting effects of intra-articular superoxide dismutase contribute to a favorable risk-benefit ratio and support the importance of the free-radical anion, superoxide (O2-), in the biochemical pathology of osteoarthritis.

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