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Created on: 10/19/07 - Email to friend - Print Page

Can Smurfs Predict Who Will Get Arthritis?

A new clinical trial seeks to predict who is most likely to experience osteoarthritis, and to test whether an experimental treatment can prevent it altogether. Physicians are setting their sights on people who sustain a knee injury, seeking to understand why nearly half of them will later go on to develop osteoarthritis.

Initial research has shown an enzyme that controls the response of cells to growth factors may in fact be a major cause of osteoarthritis. The enzymes are called "Smad Ubiquitination Regulatory Factors,” or smurfs; but unlike the small, loveable blue cartoon characters, researchers believe that a particular form of these regulatory enzymes, smurf2, might be responsible for America’s leading cause of disability.

“We believe that smurf2 controls whether or not a cartilage cell matures and calcifies into hard bone, which is a very good thing when ‘turned on’ in those areas of the body where we are supposed to have hard bone,” said Randy Rosier, MD, PhD, professor of Orthopaedics and director of Research Translation in Orthopaedics at the University of Rochester Medical Center in New York. “But when smurf2 is active in joint cartilage, it may set off a chain reaction that leads to the steady deterioration of the smooth gliding surface tissue, or cartilage, which comprises the joint surface. When this occurs, the cartilage breaks down and severely damages the weight-bearing surface of a joint. Or, put another way, activation of smurf2 in the joint cartilage appears to significantly contribute to the onset of osteoarthritis.”

Frog Embryos and Cartilage Cells

Smurfs began to capture the attention of scientists over the past decade after a research team led by Gerald H. Thomsen, PhD, at Stony Brook University in New York, identified the enzymes’ critical role in regulating levels of important molecules that help determine which genes are turned on or off in a variety of cells throughout the body. In fact, Rosier first became intrigued with smurfs after reading about how they helped cell differentiation in frog embryos.

“I got to wondering what, if any, control smurfs might have on cartilage cell development and maturation,” he said. And so, over the course of several years, Rosier and his research team conducted a series of experiments that not only identified the role of smurf2 in bone cell and cartilage signaling, but uncovered its vital link to osteoarthritis.

First, the team compared healthy and diseased cartilage, and discovered that smurf2 was only present in osteoarthritic cartilage. They next demonstrated that smurf2s are stimulated by inflammation, and are expressed in cartilage within a few months following an injury. Further experiments showed that smurf2 was present in the joints of patients with early-stage arthritis -- a time when patients might experience mild discomfort, but long before other well-known molecular markers of osteoarthritis emerge.

“It was at this point that we knew smurf2s are not just a casual bystander in arthritis, but rather, the catalyst that sets off the chain reaction that leads to osteoarthritis,” Rosier said.

Clinical Trial to Test the Theory

Rosier is now teaming with sports medicine surgeon Michael Maloney, MD, to conduct a clinical trial. The team will examine tissue samples from healthy, non-arthritic patients who have sustained an injury to the meniscus to determine the level of smurf2 expression in their cartilage at the beginning of the trial. In addition, a baseline MRI will measure the cartilage at the point of injury and three years later. If results confirm the team’s earlier findings, the MRIs of patients with high smurf2 expression will show the beginning signs of osteoarthritis as measured by hardening of the cartilage and bone loss.

“Our ultimate goal is to create a simple diagnostic test to determine whether a person with a knee injury has a high level of smurf2 in their cartilage,” Rosier said. “In these cases, physicians can advise the patient to stop high-intensity, wear-and-tear activity, slowing the onset of arthritis and lessening its severity. Eventually, we hope to create an injection that will stop smurf2s’ ability to turn on the calcification and degeneration process in cartilage that leads to osteoarthritis.”

“Think of a 25-year-old man who tears his meniscus. Today, after successfully removing the torn meniscus fragment and physical therapy, in most cases, he’s right back to his regular activity level,” Rosier said. “But if his physician can tell him with certainty that he will develop osteoarthritis, he has the opportunity to change his activity level, reducing his risk and severity of osteoarthritis.”

This article was adapted from a press release issued by University of Rochester Medical Center

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