Slashdot Mirror


CRISPR Gene Editing Fixes Muscular Dystrophy In Dogs, Humans Could Be Next (time.com)

schwit1 shares a report from Time: In a new paper published in Science, researchers led by Eric Olson, professor and chair of molecular biology at UT Southwestern Medical Center, reported that he and his team successfully used CRISPR to correct the genetic defect responsible for Duchenne muscular dystrophy in four beagles bred with the disease-causing gene. It's the first use of CRISPR to treat muscular dystrophy in a large animal. (Previous studies had tested the technology on rodents.) In varying degrees, the genetic therapy halted the muscle degradation associated with the disease. Duchenne is caused by mutations in the dystrophin gene, which codes for a protein essential for normal muscle function. People born with the disease are often eventually confined to wheelchairs as their muscles continue to weaken, and in the later stages, many rely on ventilators to breathe as their diaphragm muscles stop working. Eventually, they develop heart and respiratory failure.

Olson and his team "fixed" the mutated dystrophin gene in four dogs by splicing out an offending section of the gene using CRISPR. The gene editing technology, discovered in 2012, can cut out sections of DNA at precise locations (and also potentially introduce new DNA as well). In the case of Duchenne, says Olson, simply snipping out a section of the mutated dystrophin gene allows the gene to make enough of the proper protein that muscles need to function. The hope is that if those animal studies and human trials prove this technique is safe and effective, CRISPR could potentially lead to a cure for Duchenne, Olson says. "We are going for a cure, not a treatment," he says. "All of the other therapies so far for Duchenne muscular dystrophy have treated the symptoms and consequences of the disease. This is going right at the root cause of the genetic mutation."

2 of 112 comments (clear)

  1. Humanity 2.0 by Jzanu · · Score: 3, Informative

    We have the technology to change the mistakes introduced by the random processes of our evolution, so it is our moral imperative to use these tools to fix the diseases affecting humanity. If you are paranoid stick a million samples of human DNA in Svalbard, and another in an orbiting satellite, but everyone should be in favor of these modifications that can transform people's lives from suffering to joy and freedom.

    1. Re:Humanity 2.0 by Anonymous Coward · · Score: 2, Informative

      Don't get too excited though, most medical problems cannot be boiled down to a single gene. Most genes have been found to do many things and interact with hundreds and thousands of others. Even the yeast genome, one of the simplest we know has been found to be far more complex than we thought in how genes result in particular traits. In the human genome it is likely that thousands of genes contribute to particular phenotypes. Some people seem to think organisms are like little machines a human might design, but they are not, they evolved, and the complexity is mind boggling, as evolution only cared about whether things worked, and did not require modularity to generate the design.