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https://www.selleckchem.com/products/ifsp1.html Candida auris is a yeast that is difficult to eradicate and has caused outbreaks in health care facilities. We report a cluster of 5 patients in 1 intensive care unit who were colonized or infected in 2017. The initial 2 patients were recipients of liver transplants who had cultures that grew C auris within 3 days of each other in June 2017 (days 43 and 30 posttransplant). Subsequent screening cultures identified 2 additional patients with C auris colonization. Respiratory and urine cultures from a fifth patient yielded C auris. All isolates were fluconazole resistant but susceptible to echinocandins. Whole genome sequencing showed the strains were clonal, suggesting in-hospital transmission, and related but distinct from New York/New Jersey strains, consistent with a separate introduction. However, no source or contact was found. Two of the 5 patients died. C auris infection likely contributed to 1 patient death by infecting a vascular aneurysm at the graft anastomosis. Strict infection control precautions were initiated to control the outbreak. Our experience reveals that although severe disease from C auris can occur in transplant recipients, outbreaks can be controlled using recommended infection control practices. We have had no further patients infected with C auris to date.Tremendous efforts have been devoted to developing thin film halide perovskites (HPs) for use in high-performance photoelectronic devices, including solar cells, displays, and photodetectors. Furthermore, structured HPs with periodic micro- or nanopatterns have recently attracted significant interest due to their potential to not only improve the efficiency of an individual device via the controlled arrangement of HP crystals into a confined geometry, but also to technologically pixelate the device into arrays suitable for future commercialization. However, micro- or nanopatterning of HPs is not usually compatible with conventional photolithog
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