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3-D Structures With 'DNA Origami'
By combining the art of origami with nanotechnology, Dana-Farber Cancer Institute researchers have folded sheets of DNA into multilayered objects with dimensions thousands of times smaller than the thickness of a human hair. These tiny structures could be forerunners of custom-made biomedical nanodevices such as "smart" delivery vehicles that would sneak drugs into patients" cells, where they would dump their cargo on a specific molecular target.

Kineta Acquires Novel Drug Candidates From Airmid For Potential Treatment Of Multiple Sclerosis, Type 1 Diabetes And Other Autoimmune Diseases
Kineta, Inc. of Seattle and Airmid Incorporated of Redwood City, CA jointly announce an agreement in which a Kineta subsidiary has acquired exclusive commercial rights to a portfolio of novel therapeutic compounds from Airmid. The array of compounds holds extraordinary potential for the treatment of multiple sclerosis, type 1 diabetes mellitus and numerous other autoimmune diseases.
News of the day
Number Of Black Organ Donors Increases In Michigan, Many Blacks Still Reluctant To Donate Organs
Although the number of blacks who are registered as organ donors in Michigan has increased in the last 15 years, many are still reluctant to be organ donors, the Detroit News reports. According to Remonia Chapman, director of Gift of Life Michigan"s minority organ tissue transplant education program, many blacks are hesitant to participate with the organ donor registry because they have inadequate access to health care.Chapman said that increased awareness and education about organ donation and the diseases that lead to the need for donated organs, as well as partnerships with minority donors, black ministers and community groups, have encouraged more blacks to be organ donors. In the last 15 years, the percentage of black Michigan residents who are registered organ donors has increased from 10.8% to 21%, with overall minority registration at 24%. Chapman noted that about 41.3% of people on Michigan"s transplant waiting list and about 46% of people in need of a kidney are minorities.According to the News, minority donors are the best matches for minority organ recipients because the genetic profiles of the donor and recipient will have more similarities. Chapman added that the best matches for kidney recipients are donors from the recipient"s family or from the recipient"s ethnic group if a family donor is not available (Stolarz, Detroit News, 5/19).
Medical Devices

Cancer Researchers Link DICER1 Gene Mutation To Rare Childhood Cancer

Research published recently in Science Express from the journal Science demonstrates the first definitive link between mutations in the gene DICER1 and cancer. By studying the patterns of DNA from 11 families with an unusual predisposition to the rare childhood lung cancer pleuropulmonary blastoma (PPB) investigators found that children with the cancer carried a mutation in one of their two DICER1 gene copies. DICER1 makes an important protein that works to suppress other genes through intermediary molecules known as microRNAs. Scientists have learned that microRNAs can fine-tune the expression of many other genes, which is particularly important in normal human development. Recent research has also focused on DICER1 as having a potential role in cancer because the micro-RNA molecules it produces appear vastly different from normal when found in cancer cells; some suggest that the pattern of microRNAs in cancers resembles an embryonic stage. "When we realized that DICER1 was in the segment of chromosome that was shared among children with PPB we were very excited," said D. Ashley Hill, MD, lead author and chief of Pathology at Children"s National Medical Center. "PPB is a tumor that appears to arise out of a localized area of abnormal lung development. The implications of a defect in a master controller gene for normal organ development would be significant." Hill says not everyone who inherits a mutation develops PPB and children with PPB are typically normal in every other way. The team theorizes that something else must happen to the normal copy of DICER1 in lung cells for a tumor to develop. When the research team looked at PPB tumors to see if there is any DICER1 protein being made from the remaining normal copy of the gene, they were surprised by the results: "We expected to see that the tumor cells had no DICER1 protein giving us a nice explanation for why the tumor cells had gone haywire." But that wasn"t the case. They found that the benign cells that grew on the surface of the tumor had lost the DICER1 protein. "During lung development the cells that line the airways and the cells that make up the support structures have to communicate." Hill explained. "Loss of DICER1 in the airway lining cells could disrupt this communication, possibly setting the stage for abnormal growth." Studying tumor cells for genetic mutations has led to many advances in the understanding of cancer. This discovery may represent a first step in understanding a new mechanism for how cancer begins. Conceivably, the mutated cells do not turn into tumors themselves. Instead, these cells influence surrounding cells to grow quickly, setting the stage for additional genetic mutations in cells that then become cancerous. Hill"s team will now focus on demonstrating the sequence of events that result from loss of DICER1. Only 50 or 60 cases of PPB are diagnosed worldwide each year. The cancer presents as cysts in early stages and progresses to solid lung tumors over time. If detected in the earliest stages, 90 percent of patients appear to be cured when treated with a surgical intervention and sometimes chemotherapy. The research was conducted at Children"s National Medical Center, the International Pleuropulmonary Blastoma Registry at Children"s Hospitals and Clinics of Minnesota, and Washington University School of Medicine and other collaborating institutions. Jennifer Leischer Children"s National Medical Center


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