Airborne transmission is predicted to be a prevalent route of human exposure with SARS-CoV-2. Aside from African green monkeys, nonhuman primate models that replicate airborne transmission of SARS-CoV-2 have not been investigated. A comparative evaluation of COVID-19 in African green monkeys, rhesus macaques, and cynomolgus macaques following airborne exposure to SARS-CoV-2 was performed to determine critical disease parameters associated with disease progression, and establish correlations between primate and human COVID-19. Respiratory abnormalities and viral shedding were noted for all animals, indicating successful infection. Cynomolgus macaques developed fever, and thrombocytopenia was measured for African green monkeys and rhesus macaques. Type II pneumocyte hyperplasia and alveolar fibrosis were more frequently observed in lung tissue from cynomolgus macaques and African green monkeys. The data indicate that, in addition to African green monkeys, macaques can be successfully infected by airborne SARS-CoV-2, providing viable macaque natural transmission models for medical countermeasure evaluation.
Airborne transmission is predicted to be a prevalent route of human exposure with SARS-CoV-2. Aside from African green monkeys, nonhuman primate models that replicate airborne transmission of SARS-CoV-2 have not been investigated. A comprehensive and comparative evaluation of COVID-19 in African green monkeys, rhesus macaques, and cynomolgus macaques following airborne exposure to SARS-CoV-2 was performed to define parameters critical to disease progression and the extent to which they correlate with human COVID-19. Respiratory abnormalities and viral shedding were noted for all animals, indicating successful infection. Cynomolgus macaques developed fever, and thrombocytopenia was measured for African green monkeys and rhesus macaques. Type II pneumocyte hyperplasia and alveolar fibrosis were more frequently observed in lung tissue from cynomolgus macaques and African green monkeys. The data indicate that, in addition to African green monkeys, macaques can be successfully infected by airborne SARS-CoV-2, providing viable macaque natural transmission models for medical countermeasure evaluation.One Sentence SummaryNonhuman primates develop COVID-19 following airborne virus exposure.
Aim: To assess clinical outcomes in patients with locally advanced (la) or metastatic (m) Merkel cell carcinoma (MCC) initiating first-line (1L) avelumab in a USA community oncology setting. Materials & methods: Adults with laMCC or mMCC initiating 1L avelumab were identified from The US Oncology Network electronic health record database and chart review. Results: Median overall survival and progression-free survival were not reached in laMCC (n = 9) vs 20.2 and 10.0 months in mMCC (n = 19); response rates were similar (66.7% vs 63.2%). Conclusion: This is the first study to show clinical benefit in patients with laMCC receiving 1L avelumab in a US real-world setting. Response rates in patients with mMCC were consistent with pivotal trials.
Aim: We used Adelphi Real World Disease-Specific Programme data to characterize adults with newly diagnosed or relapsed/refractory de novo acute myeloid leukemia (AML). Materials & methods: Community-practice hematologists/oncologists completed patient record forms for their regular AML patients. Patients were invited to complete patient self-completion forms including 3-Level EuroQol 5-Dimensions (EQ-5D-3L) and Functional Assessment of Cancer Therapy–Leukemia (FACT-Leu) questionnaires. Results: Physicians provided patient record forms for 389 patients (339 newly diagnosed, 50 relapsed/refractory); 68 patients completed patient self-completion forms. Mean EQ-5D visual–analog scale and index and FACT-General scores were significantly lower than US population norms (p < 0.0001); health-related quality of life (HRQoL) scores were generally lower than 11 other cancers. Conclusion: HRQoL impairment is grave in AML. Efforts are needed to improve HRQoL in affected patients.
Background. With increased use of immune checkpoint inhibitors (ICIs) among cancer patients, there is substantial interest in understanding clinical, economics outcomes and management of immune-related adverse events (irAEs). Patients and Methods. A retrospective study was conducted using Premier Healthcare Database, a US national hospital discharge database, from March 1, 2015 through December 31, 2017. The database comprises more than 880 million inpatient and hospital-based outpatient encounters with more than 200 million unique patients reported by 966 hospitals. Patients with four solid tumors known to benefit from ICI therapy were included. The list of irAEs assessed were defined a priori per ASCO clinical guidelines for irAE management. Baseline irAE-related inpatient and outpatient visits were defined as the first inpatient or hospita-based outpatient visit with discharge diagnosis of any irAE of interest following confirmed ICI usage within 90 days prior to the baseline visit. Patients were followed for 90 days post baseline irAE-related inpatient discharge date or outpatient visit date to assess irAE-related inpatient admissions, all-cause inhospital mortality, ICI re-initiation, and to determine costs and healthcare resource utilization.
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