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April 12, 2012Amyloid135 citations

Clinical development of an antisense therapy for the treatment of transthyretin-associated polyneuropathy

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EAElizabeth J. AckermannSGShuling GuoSBSheri Booten

Key Points

  • To evaluate the efficacy, tolerability, and pharmacodynamics of ISIS-TTR(Rx), an antisense oligonucleotide designed to lower transthyretin expression for treating transthyretin-associated amyloidosis.
  • Tested dose-dependent effects of ISIS-TTR(Rx) on human TTR mRNA and protein expression in an hTTR Ile84Ser transgenic mouse model.
  • Administered ISIS-TTR(Rx) to cynomolgus monkeys over a 12-week course to measure liver TTR mRNA, plasma TTR protein, and plasma RBP4 levels.
  • Treatment produced a dose-dependent reduction of human TTR mRNA and protein exceeding 80% in transgenic mice.
  • In cynomolgus monkeys, 12 weeks of treatment reduced liver TTR mRNA and circulating plasma TTR protein by approximately 80%, with a corresponding significant decrease in plasma RBP4.
  • ISIS-TTR(Rx) demonstrated favorable tolerability and a pharmacokinetic profile consistent with second-generation antisense technology across both animal models.

Abstract

Transthyretin (TTR)-associated amyloidosis is a late-onset autosomal-dominant genetic disease. Over 100 amyloidogenic mutations have been identified in TTR which destabilize the TTR tetramer thereby inducing the formation of amyloid fibrils in tissues such as the heart and peripheral nerves. This disease mainly affects peripheral nerves, causing familial amyloid polyneuropathy (FAP) or heart, causing familial amyloid cardiomyopathy (FAC). Circulating TTR is predominantly produced by liver, and the only widely available clinical treatment for FAP is orthotopic liver transplantation (OLT), whereas no treatment currently exists for FAC. Using second-generation antisense technology, we identified an antisense oligonucleotide (ASO) targeting TTR, ISIS-TTR(Rx), for the treatment of TTR-associated amyloidosis. When tested in a human TTR transgenic mouse model (hTTR Ile84Ser), ISIS-TTR(Rx) showed a dose-dependent reduction of human TTR (up to >80%) at both the mRNA and protein levels. In cynomolgus monkeys, ISIS-TTR(Rx) treatment produced a time-dependent reduction in plasma TTR levels. After 12 weeks of treatment in monkey, liver TTR mRNA and plasma TTR protein levels were reduced by ~80%. As expected, treatment with ISIS-TTR(Rx) also produced a significant decrease in plasma RBP4 levels that correlated with reductions in TTR levels. ISIS-TTR(Rx) treatment was well tolerated in both rodents and monkeys and produced a PK/PD profile consistent with prior experiences using this chemistry platform. ISIS-TTR(Rx) is currently under evaluation in a Phase 1 clinical trial in normal healthy volunteers, and interim results of this trial will be presented.

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Cite This Study

Ackermann et al. (2012) studied this question.

synapsesocial.com/papers/6a0ef8c2aa1655e5fb231490https://doi.org/10.3109/13506129.2012.673140
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