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Published on: May 10, 2022
Modeling hepatitis C virus therapies combining drugs and lectin affinity plasmapheresis
Richard H Tullis1, R Paul Duffin, Thomas E Ichim
1Aethlon Medical Inc. San Diego, Calif., USA. rhtullis@aethlonmedical.com
Insights
Hepatitis C virus (HCV) infection cure rates are improved by lectin affinity plasmapheresis (LAP). This hemopurification technique significantly reduces viral load, enhancing standard drug therapies without additional medications.
Area of Science:
- Hepatology
- Virology
- Medical Technology
Background:
- Standard pegylated interferon + ribavirin therapy cures 30-50% of treatment-naïve genotype 1 Hepatitis C virus (HCV) patients.
- Previous studies showed double-filtration plasmapheresis (DFPP) pretreatment increased HCV cure rates.
- DFPP achieved a 26% average viral load reduction per treatment.
Purpose of the Study:
- To evaluate the efficacy of lectin affinity plasmapheresis (LAP) in reducing HCV viral load.
- To assess the potential of continuous hemopurification to enhance HCV treatment outcomes.
- To compare the effectiveness of LAP with DFPP for HCV viral load reduction.
Main Methods:
- Analysis of clinical data from 5 HCV-positive dialysis patients undergoing LAP treatment.
- Normalized data analysis to correct for initial viral load variations.
- Comparison of viral load reduction percentages between LAP and DFPP techniques.
Main Results:
- LAP achieved an estimated 41% decrease in viral load, with normalized data showing a 29% reduction per treatment.
- Continuous LAP application could potentially reduce HCV viral load to undetectable levels within 4.1 days.
- LAP offers advantages over DFPP, including no plasma loss and suitability for extended hemopurification.
Conclusions:
- Lectin affinity plasmapheresis (LAP) significantly reduces HCV viral load.
- Continuous hemopurification via LAP is predicted to substantially increase viral load reduction (approx. 14-fold).
- LAP holds promise for enhancing HCV cure rates when combined with standard drug therapies, without increasing drug-related side effects.
Abstract:
Hepatitis C virus (HCV) infection can be cured by standard pegylated interferon (IFN) + ribavirin drug therapy in 30-50% of treatment-naïve genotype 1 HCV patients. Cure rate is defined as a sustained viral response measured 6 months after the end of treatment. Recently, Fujiwara et al. [Hepatol Res 2007;37:701-710], using a double-filtration plasmapheresis (DFPP) technique, showed that simple physical reduction in circulating HCV using a 1-week pretreatment increased the cure rate for treatment-naïve type 1 HCV patients from 50 (controls) to 78% (treated). For previous nonresponders, the cure rate increased from 30 to 71%. This effect occurs even though the DFPP per treatment HCV viral load reduction averaged 26%. In clinical studies discussed here, a lectin affinity plasmapheresis (LAP) device caused an estimated 41% decrease in viral load as previously reported. A more detailed analysis using normalized data to correct for any variations in initial viral load gave an average 29% per treatment viral load reduction in 5 HCV-positive dialysis patients. The latter data indicate that continuous application of LAP could bring HCV viral load to undetectable levels in 4.1 days. Compared to DFPP, the LAP approach has the advantage that no plasma losses are incurred. In addition hemopurification can be carried out for extended periods of time analogous to continuous renal replacement therapy for the treatment of acute kidney failure, making the process much more effective. Calculations based on these data predict that continuous hemopurification would substantially increase the rate of viral load reduction (approx. 14-fold) and therefore increase the cure rate for HCV standard-of-care drug therapies without adding additional drugs and their associated side effects.
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