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Record W2053696982 · doi:10.1038/sj.mt.6300099

RNAi Gets Vote of Confidence from Big Pharma

2007· editorial· en· W2053696982 on OpenAlexaboutno aff
Robert Frederickson

Bibliographic record

VenueMolecular Therapy · 2007
Typeeditorial
Languageen
FieldBiochemistry, Genetics and Molecular Biology
TopicRNA Interference and Gene Delivery
Canadian institutionsnot available
Fundersnot available
KeywordsRNA interferenceBiologyBusinessComputational biologyBiotechnologyGeneticsGeneRNA

Abstract

fetched live from OpenAlex

The development of new technology is an important force driving advances in the medical and biological sciences. The advent of recombinant DNA technology, the development of the polymerase chain reaction, and advances in DNA sequencing and array technology were key events in the so-called genomic revolution in the second half of the last century. These technologies proved to be important to the success of massively parallel analyses that are critical for comparative genomics and systems approaches in biology and drug discovery. Another important new technology that appeared in the waning years of the last century was the application of RNA interference (RNAi) in mammalian cells. First discovered in plants and Caenorhabditis elegans, RNAi is a powerful mechanism for sequence-specific inhibition of gene expression that has greatly facilitated the study of gene function. In October, co-discoverers Craig Mello and Andrew Fire received the Nobel Prize in medicine for the discovery of this powerful and promising technology. However, as recently discussed in these pages1Rossi J Helping RNAi Deliver.Mol Ther. 2005; 11: 653Abstract Full Text Full Text PDF PubMed Scopus (5) Google Scholar, 2Frederickson RM Nucleic acid medicines move towards the clinic.Mol Ther. 2005; 12: 775Abstract Full Text Full Text PDF PubMed Scopus (6) Google Scholar (reviewed in 3Behlke MA Progress towards in vivo use of siRNAs.Mol Ther. 2006; 13: 644-670Abstract Full Text Full Text PDF PubMed Scopus (455) Google Scholar), RNAi also forms the basis of a new class of therapeutic agent to modify gene expression in target cells, based on delivery of either short inhibitory RNAs (siRNA) or viral or nonviral vectors carrying genes encoding small hairpin RNA (shRNA) that is subsequently processed to siRNA. The evaluation of RNAi-based therapies in animal models and preclinical studies has accelerated dramatically in the last few years, and a handful of companies have been established with the aim of developing the technology to create therapeutic agents. One of these is the aptly named Sirna Therapeutics. Originally founded in 1992 as Ribozyme Pharmaceuticals, the company reorganized to focus on RNAi in 2003, a move that has been cited as a major factor contributing to the turnaround in the foundering fortunes of its predecessor. These fortunes took a great leap forward in October with the announcement of the acquisition of Sirna by Merck for US$1.3 billion—a 100% premium on Sirna's recent stock price. The move surprised many workers in the field because, despite some promising clinical data on the use of RNAi-therapeutic Sirna-027 for the treatment of age-related macular degeneration (AMD), Sirna's drug pipeline is modest. It will be at least five years before any of Sirna's drug leads could reach the market, whereas most acquisitions by Big Pharma are of companies with more near-term prospects. However, the purchase is seen as a major vote of confidence in the commercial potential of RNAi technology on the part of a pharmaceutical giant, and Merck's move may have more to do with acquisition of Sirna's intellectual property and know-how in the area so as to position the company better to compete for the therapeutic development of RNAi technology. Merck has been involved in the field since its 2001 acquisition of Rosetta Inpharmatics. The company is also collaborating with Alnylam, another major player in the RNAi field, to develop RNAi treatments for spinal cord injury. Also in October, the Oligonucleotide Therapeutics Society (OTS) held its second annual meeting at Rockefeller University in association with the New York Academy of Sciences. The agenda included several talks describing clinical results with siRNA-based therapies. Several agents exhibited modest efficacy in patients, providing the validation necessary for continued clinical study of this class of therapeutic. Sirna presented results of an open-label, dose-escalation phase I trial of Sirna-027 that forms the basis for the initiation of a phase II dose-finding study in patients with active choroidal neovascularization secondary to AMD. Acuity Pharmaceuticals is also targeting AMD with siRNA, and reported phase II results for their drug, bevasiranib, which targets the same gene that Sirna-027 does, vascular endothelial growth factor (VEGF). The study confirmed the safety of the drug shown in earlier studies, and also showed that there was little evidence for leakage of the drug into the bloodstream. Bevasiranib is delivered intravitreally, and there had been some concern about the potential for an inhibitor of a growth factor to gain access to the general circulation. Overall, the results demonstrated an effect at all doses with encouraging durability of response in patients with early aggressive AMD, and the company notes that it is moving toward a phase III study of bevasiranib in combination with VEGF antagonists. Alnylam discussed its recent experiences with ALN-RSV01, an inhaled siRNA therapeutic targeted to the N protein important for the replication of respiratory syncytial virus (RSV). This virus is a major pathogen, affecting 100,000 young children annually. A phase I analysis of the compound in over 100 healthy volunteers was accompanied by mild adverse events following nasal delivery. Alnylam is currently planning an “RSV Challenge” study in which healthy volunteers will be exposed to RSV to assess the activity of ALN-RSV01, which has shown activity in preclinical studies in animal models. siRNAs are only the newest class of oligonucleotide-based therapeutics, which have been under study for decades. Several other updates at the OTS meeting described the latest findings on the response of patients to antisense DNA–based therapeutics. Isis Pharmaceuticals presented phase II trial results demonstrating the effectiveness of two antisense DNA–based agents, ISIS 301012 (targeted to apo-100) and ISIS 113715 (targeted to PTP-1B) in hypercholesterolemic and diabetic patients, respectively. Studies are currently under way to evaluate the drugs over longer periods of time and as combination therapies with more traditional drugs treating high cholesterol and diabetes. Genta Incorporated presented updated safety and efficacy data from a randomized phase III trial of Genasense (Bcl-2 antisense) in patients with melanoma and chronic lymphocytic leukemia (CLL). In preclinical studies, Genasense has shown sensitizing activity in combination with chemotherapy, radiation, and other therapeutics. The new results showed modest but measurable effects on survival and tumor responses in combination with chemotherapy in melanoma and CLL patients, and the results will form the basis of global regulatory applications and further clinical studies. Topigen presented results of a phase I trial of ASM8, a drug comprising two separate phosphorothioate antisense compounds targeting the chemokine receptor CCR3 and the common beta-chain subunit of the receptors for interleukin-3 (IL-3) and interleukin-5 (IL-5) and granulocyte-macrophage colony-stimulating factor (GM-CSF). ASM8 was previously shown to be well tolerated and effective to treat animal models of asthma in preclinical studies. ASM8 was well tolerated in healthy volunteers, and a phase II study is under way in Canada to evaluate safety and tolerability further and to compare the allergen-induced asthmatic response of the drug against that with a placebo control. Coley Pharmaceuticals described particularly promising results in a study examining the effects on the immune system of CpG oligonucleotide ligands. The latter are TLR9 agonists that can activate plasmacytoid dendritic cells to stimulate both the innate immune system and antigen-specific T-cell responses. PF-3512676 is currently being analyzed in two phase III trials involving 1,600 patients with advanced lung cancer with and without chemotherapy, following previous results showing an objective disease regression in a number of cancers when used as a monotherapy. Another CpG drug, CPG 10101, has shown significant effects on hepatitis C virus (HCV) viral load in patients with this prevalent infection. A triple therapy of CPG 10101, ribavirin, and interferon showed particularly promising results in previously treated HCV patients who subsequently relapsed following the initial therapy. Overall, Big Pharma's RNAi buy-in and promising clinical results in patients suggest a robust future for the development of RNAi-based drugs. Nevertheless, the latest clinical studies show that more traditional DNA antisense drugs are alive and well. Important challenges remain, such as the development of ways to improve the bioavailability, toxicity, and stability of RNA- and DNA-based medicine. Problems of off-target effects remain a concern and deserve continued attention. Finally, recent data linking certain RNA motifs, as well as triphosphate RNAs, to stimulation of the innate immune system (see 4Schlee M Hornung V Hartmann G siRNA and isRNA: two edges of one sword.Mol Ther. 2006; 14: 463-470Abstract Full Text Full Text PDF PubMed Scopus (197) Google Scholar for review) predict potential uses of “immune stimulatory” (is)RNA as adjuvant effectors, as has been shown for DNA CpGs.

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How this classification was reachedexpand

Full frame distilled prediction

Teacher imitation

Not calibrated prevalence, not ground truth. Human validation pending. Learned from the 10,348 direct Codex labels and 10,348 direct Gemma labels. Candidate is the union of thresholded teacher heads; consensus is their intersection. These outputs are machine_predicted_unvalidated and are not human labels or direct frontier model labels.

metaresearch head score (Codex)0.000
metaresearch head score (Gemma)0.000
Version: codex-gemma-dda1882f352aValidation status: machine_predicted_unvalidated
Candidate categoriesMeta-epidemiology (narrow)
Consensus categoriesnone
DomainCandidate signal: none · Consensus signal: none
Study designCandidate signal: Bench or experimental · Consensus signal: Bench or experimental
GenreCandidate signal: Editorial · Consensus signal: Editorial
Teacher disagreement score0.228
Threshold uncertainty score1.000

Codex and Gemma teacher scores by category

CategoryCodexGemma
Metaresearch0.0000.000
Meta-epidemiology (narrow)0.0000.000
Meta-epidemiology (broad)0.0000.000
Bibliometrics0.0000.000
Science and technology studies0.0000.000
Scholarly communication0.0000.000
Open science0.0010.000
Research integrity0.0010.000
Insufficient payload (model declined to judge)0.0000.000

Machine scores (provisional)

The two teacher heads of the student model, read on this work. A score orders the frame for review; it never asserts a category, and the validation status ships verbatim with every row.

Baseline scores from an immature model (maturity gate not passed, 7 training rounds). Scores rank; they never assert a category.

Opus teacher head0.013
GPT teacher head0.283
Teacher spread0.270 · how far apart the two teachers sit on this one work
Validation statusscore_only:v0-immature-baseline · verbatim from the scoring run: score_only means the number may rank works, and no category label ships from it

Classification

machine, unvalidated

Machine predicted; a candidate call from one teacher head, not a consensus.

Study designBench or experimental
Domainnot available
GenreEditorial

How this classification was reached, model by model and score by score, is at the end of the page under "How this classification was reached".

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Citations4
Published2007
Admission routes1
Has abstractyes

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