SUMMARYHuman rhinoviruses (HRVs), first discovered in the 1950s, are responsible for more than one-half of cold-like illnesses and cost billions of dollars annually in medical visits and missed days of work. Advances in molecular methods have enhanced our understanding of the genomic structure of HRV and have led to the characterization of three genetically distinct HRV groups, designated groups A, B, and C, within the genusEnterovirusand the familyPicornaviridae. HRVs are traditionally associated with upper respiratory tract infection, otitis media, and sinusitis. In recent years, the increasing implementation of PCR assays for respiratory virus detection in clinical laboratories has facilitated the recognition of HRV as a lower respiratory tract pathogen, particularly in patients with asthma, infants, elderly patients, and immunocompromised hosts. Cultured isolates of HRV remain important for studies of viral characteristics and disease pathogenesis. Indeed, whether the clinical manifestations of HRV are related directly to viral pathogenicity or secondary to the host immune response is the subject of ongoing research. There are currently no approved antiviral therapies for HRVs, and treatment remains primarily supportive. This review provides a comprehensive, up-to-date assessment of the basic virology, pathogenesis, clinical epidemiology, and laboratory features of and treatment and prevention strategies for HRVs.
The long-term graft outcomes after positive crossmatch (PXM) living donor kidney transplantation (LDKT) are unknown and the descriptive published data present short-medium term results. We conducted a retrospective cohort study of LDKT with PXM by flow cytometry performed at our center during These results suggest that despite the favorable shortterm results of PXM LDKT after PP/IVIg conditioning, medium-long-term outcomes are notably worse than expected, perhaps comparable to non-ECD deceased donor kidney transplantation (KT).
With increased use of expanded-spectrum triazoles for antifungal prophylaxis, the epidemiology of invasive fungal infections (IFIs) after allogeneic haematopoietic stem cell transplantation (HSCT) continues to evolve. To define the contemporary epidemiology of IFIs in this population, we reviewed all European Organization for Research and Treatment of Cancer-Mycoses Study Group proven and probable IFIs in adults transplanted from 2002 to 2011 and determined the incidence and risk factors for IFI and post-IFI mortality. All patients received antifungal prophylaxis. Fifty-three (14%) of 378 allogeneic HSCT recipients developed an IFI. There were 62 IFI episodes, of which aspergillosis (n = 31; 50%) and candidaemia (n = 15; 24%) were most common. Sixteen episodes (26%) were caused by other fungi, including Mucorales (n = 6; 10%) and the following uncommon pathogens: Trichosporon asahii, Arthrographis sp., Cladosporium sp., Geosmithia argillacea and Hormographiella aspergillata. Independent IFI risk factors were hospitalisation in an intensive care unit [ICU; odds ratio (OR) = 6.0], graft-versus-host disease (OR = 5.3), central venous catheter use (OR = 5.2) and hypoalbuminaemia (OR = 0.3 g(-1) dl(-1) increase in albumin). The 90-day mortality rate after IFI was 57%. Non-cytomegalovirus systemic viral co-infection (OR = 3.5) and stay in an ICU (OR = 2.9) were independent risk factors for death. Despite antifungal prophylaxis, IFIs remain common after allogeneic HSCT and previously uncommon pathogens are emerging.
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