Development of consensus guidelines for the clinical care of individuals with Sanfilippo syndrome

Cara O'Neill,Roberto Giugliani,Simon Jones,Joseph Muenzer, Nicholas Smith,Chester B. Whitley, Megan Donnell, Elise Drake-Esposito,Kristina Elvidge,Lisa Melton,Nicole M. Muschol

Molecular Genetics and Metabolism(2023)

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摘要
Due to lower investment in nanotechnology, it is widely used in the nutritional management of livestock products. The main objective of nutrient management is to preserve and reprocess nutrients in the most economically beneficial and environmentally safe manner. Nanotechnology has the potential to improve the daily gain in animal products and reduce the death rate in animal husbandry. The adulterant in livestock farms will turn down and also improve sanitation with the help of nanotechnology. The toxic substance in the livestock environment can be detected with the help of nanometer biosensors. Nanotechnologies have a specialty in hindrance or killing of several microbes that have the potential to generate disease in livestock. The disease is considered the salient risk factor for livestock because it is directly proportional to animal production. Nano-trace element increases the animal's immune power and has a brawny outcome in enhancing the health of livestock, for example, nano-Se shows a strapping nutritional and biological effect on enhancing growth staging of animal and livestock production. Nanotechnology may also play a major role in boosting the immunity of the animal and reducing the use of antibiotics and manure odor of livestock. In the succeeding years, nanotechnologies will surely influence the global economy because the nanotechnology-containing product will be moved from research to production and trading.
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sanfilippo syndrome
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