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Why is hgh hard to detect
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Its presence in the body is essential to quickly heal the damage in the muscles and also to recover from any type of injury in the best possible way". Hemoglobin A1, one of the primary molecules of hemoglobin (the main molecule in blood) has its oxygen content reduced slightly when it enters a wound after an injury. This is because the red blood cells are unable to efficiently deliver oxygen to the injured tissue. Red blood cells, however, are now growing in numbers through genetic recombination with other cells of the same type (hemoglobin B1) and they can form new red blood cells (RBCs), which can carry additional oxygen molecules. The scientists hope to eventually have a red blood cell that can rapidly deliver a larger proportion of oxygen molecules in order to protect against further damage or improve wound healing, for example. This finding could give medical researchers the chance to improve treatment on patients, by creating a more viable, more efficient and more resilient blood type. "There are significant medical applications," said Dr Peter Williams, Head of Immunology at the University of Sheffield and an author of the work. "We can imagine a future where doctors may be looking at red blood cell treatments as ways to reduce the complications of burns, which could make injuries less damaging in the long run. A single red blood cell could be used to perform an emergency amputation with minimal risk. More recently, scientists have looked at regenerative medicine as a way to restore nerve function in damaged limbs. "For example, in the future it is possible doctors could perform a treatment which repairs the motor functions and coordination in a patient for whom previous efforts have been ineffective," he added. Lead author Dr Tessa Griffiths , an expert in immunology at the University of Sheffield, said: "We have identified a molecule known as HO-1, one of the major components of red blood cells that can lead to a change in the oxygen transport and delivery system in the cell without leading to significant changes in cellular composition. This has been shown previously through molecular studies using human cells. "The reason it has so far not been found in blood serum is that its distribution is limited in humans and animals, and it is not possible to screen for this molecule using a standard routine. Nevertheless it is possible to assess the effect of this molecule on the blood system by looking at blood cell populations, and to work out the effect of HO-1 on the red blood cells in animals, which allows us to work out if, by itself, HO-1 might lead to changes in the distribution or properties of red blood cells." Dr Williams added Similar articles: