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Next-Generation Pain-Reliever: Developing A Safer Form Of Acetaminophen
Scientists in Louisiana are reporting development of a process for producing large batches of a new and potentially safer form of acetaminophen, the widely used pain-reliever now the of growing concern over its potentially toxic effects on the liver. Their study, which could speed development of a next-generation pain-reliever, is scheduled for the July 17 issue of ACS" Organic Process Research & Development, a bi-monthly journal.
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Second Edition Of 'Medical Ultrasound Safety' Released By AIUM
The American Institute of Ultrasound in Medicine is pleased to announce the release of Medical Ultrasound Safety, Second Edition. All operators of ultrasound systems with an output display should review the information in this publication. The book consists of 3 parts: Bioeffects and Biophysics, Prudent Use, and Implementing ALARA (as low as reasonably achievable). With the information from this 64 page publication, users can better control the diagnostic ultrasound equipment and examination to ensure that needed diagnostic information is obtained with minimal risk to the patient.
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New Insights Into The Mystery Of "High Risk Platelets" From Diabetic Donors
Amid emerging concerns that blood platelets donated for transfusion by individuals with Type 2 diabetes may be unsafe, scientists are reporting the first detailed identification and analysis of a group of abnormal proteins in platelets from diabetic donors. The study could lead to screening tests to detect and monitor these so-called "high risk platelets," the researchers say. Their study is scheduled for the June 5 issue of ACS" Journal of Proteome Research, a monthly publication. About 18 million people in the United States have Type 2 diabetes, and the disease is spreading with the epidemic of obesity.
Mental Health

Children's Hospital Oakland Scientists First To Discover New For Harvesting Stem Cells

A groundbreaking study conducted by Children"s Hospital & Research Center Oakland is the first to reveal a new avenue for harvesting stem cells from a woman"s placenta, or more specifically the discarded placentas of healthy newborns. The study also finds there are far more stem cells in placentas than in umbilical cord blood, and they can be safely extracted for transplantation. Furthermore, it is highly likely that placental stem cells, like umbilical cord blood and bone marrow stem cells, can be used to cure chronic blood-related disorders such as sickle cell disease, thalassemia, and leukemia. The study, led by Children"s Hospital & Research Center Oakland scientists Frans Kuypers, PhD, and Vladimir Serikov, PhD, will be the feature story in the July 2009 issue of Experimental Biology and Medicine. The doctors and their team made the discoveries by harvesting term placentas from healthy women undergoing elective Cesarean sections. "Yes, the stem cells are there; yes, they are viable; and yes, we can get them out," declared Dr. Kuypers. Stem cells are essentially blank cells that can be transformed into any type of cell such as a muscle cell, a brain cell, or a red blood cell. Using stem cells from umbilical cord blood, Children"s Hospital Oakland physicians have cured more than 100 kids with chronic blood-related diseases through their sibling donor cord blood transplantation program, which began in 1997. However, according to the American Cancer Society, each year at least 16,000 people with serious blood- related disorders are not able to receive the bone marrow or cord blood transplant they need because they can"t find a match. Dr. Kuypers explained that even when a patient receives a cord blood transplant, there may not be enough stem cells in the umbilical cord to successfully treat their disorder. Placentas, however, contain several times more stem cells than umbilical cord blood. "The greater supply of stem cells in placentas will likely increase the chance that an HLA (human leukocyte antigen) matched unit of stem cells engrafts, making stem cell transplants available to more people. The more stem cells, the bigger the chance of success," said Dr. Kuypers. Drs. Kuypers and Serikov have also developed a patent-pending method that will allow placental stem cells to be safely harvested and made accessible for transplantation. The process involves freezing placentas in a way that allows them to later be defrosted and suffused with a compound that enables the extraction of viable stem cells. The method will make it possible for companies to gather, ship and store placentas in a central location. "We"re looking for a partnership with industry to get placenta-derived stem cells in large quantities to the clinic," said Dr. Kuypers. He adds that much more research and grant funding are needed to explore the maximum potential of this latest discovery. He remains encouraged. "Someday, we will be able to save a lot more kids and adults from these horrific blood disorders." About Children"s Hospital & Research Center Oakland Children"s Hospital & Research Center Oakland is Northern California"s only freestanding and independent children"s hospital. Children"s is the leader in many pediatric specialties including neonatology, cardiology, neurosurgery and intensive care. The hospital is a designated Level 1 pediatric trauma center and has the largest pediatric critical care facility in the region. Children"s Hospital has 190 licensed beds, 201 hospital-based physicians in 30 specialties, more than 2,611 employees and an operating budget of $312 million. Children"s research arm, Children"s Hospital Oakland Research Institute, has about 300 staff members and an annual budget of more than $49 million. Primary research funding comes from the National Institutes of Health. The institute is a leader in translational research, bench discoveries to bedside applications, developing new vaccines for infectious diseases and discovering new treatment protocols for previously fatal or debilitating conditions such as cancers, sickle cell disease and thalassemia, diabetes, asthma, HIV/AIDS, pediatric obesity, nutritional deficiencies, birth defects, hemophilia and cystic fibrosis. Children"s Hospital & Research Center Oakland


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