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1.
Virus Evol ; 8(2): veac050, 2022 Jul.
Artículo en Inglés | MEDLINE | ID: covidwho-20244684

RESUMEN

Long-term severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infections in immunodeficient patients are an important source of variation for the virus but are understudied. Many case studies have been published which describe one or a small number of long-term infected individuals but no study has combined these sequences into a cohesive dataset. This work aims to rectify this and study the genomics of this patient group through a combination of literature searches as well as identifying new case series directly from the COVID-19 Genomics UK (COG-UK) dataset. The spike gene receptor-binding domain and N-terminal domain (NTD) were identified as mutation hotspots. Numerous mutations associated with variants of concern were observed to emerge recurrently. Additionally a mutation in the envelope gene, T30I was determined to be the second most frequent recurrently occurring mutation arising in persistent infections. A high proportion of recurrent mutations in immunodeficient individuals are associated with ACE2 affinity, immune escape, or viral packaging optimisation. There is an apparent selective pressure for mutations that aid cell-cell transmission within the host or persistence which are often different from mutations that aid inter-host transmission, although the fact that multiple recurrent de novo mutations are considered defining for variants of concern strongly indicates that this potential source of novel variants should not be discounted.

2.
Wellcome open research ; 6, 2021.
Artículo en Inglés | EuropePMC | ID: covidwho-2322489

RESUMEN

Emerging and re-emerging viruses are a global health concern. Genome sequencing as an approach for monitoring circulating viruses is currently hampered by complex and expensive methods. Untargeted, metagenomic nanopore sequencing can provide genomic information to identify pathogens, prepare for or even prevent outbreaks. SMART (Switching Mechanism at the 5′ end of RNA Template) is a popular approach for RNA-Seq but most current methods rely on oligo-dT priming to target polyadenylated mRNA molecules. We have developed two random primed SMART-Seq approaches, a sequencing agnostic approach ‘SMART-9N' and a version compatible rapid adapters available from Oxford Nanopore Technologies ‘Rapid SMART-9N'. The methods were developed using viral isolates, clinical samples, and compared to a gold-standard amplicon-based method. From a Zika virus isolate the SMART-9N approach recovered 10kb of the 10.8kb RNA genome in a single nanopore read. We also obtained full genome coverage at a high depth coverage using the Rapid SMART-9N, which takes only 10 minutes and costs up to 45% less than other methods. We found the limits of detection of these methods to be 6 focus forming units (FFU)/mL with 99.02% and 87.58% genome coverage for SMART-9N and Rapid SMART-9N respectively. Yellow fever virus plasma samples and SARS-CoV-2 nasopharyngeal samples previously confirmed by RT-qPCR with a broad range of Ct-values were selected for validation. Both methods produced greater genome coverage when compared to the multiplex PCR approach and we obtained the longest single read of this study (18.5 kb) with a SARS-CoV-2 clinical sample, 60% of the virus genome using the Rapid SMART-9N method. This work demonstrates that SMART-9N and Rapid SMART-9N are sensitive, low input, and long-read compatible alternatives for RNA virus detection and genome sequencing and Rapid SMART-9N improves the cost, time, and complexity of laboratory work.

3.
Wellcome Open Res ; 6: 241, 2021.
Artículo en Inglés | MEDLINE | ID: covidwho-2293550

RESUMEN

Emerging and re-emerging viruses are a global health concern. Genome sequencing as an approach for monitoring circulating viruses is currently hampered by complex and expensive methods. Untargeted, metagenomic nanopore sequencing can provide genomic information to identify pathogens, prepare for or even prevent outbreaks. SMART (Switching Mechanism at the 5' end of RNA Template) is a popular approach for RNA-Seq but most current methods rely on oligo-dT priming to target polyadenylated mRNA molecules. We have developed two random primed SMART-Seq approaches, a sequencing agnostic approach 'SMART-9N' and a version compatible rapid adapters  available from Oxford Nanopore Technologies 'Rapid SMART-9N'. The methods were developed using viral isolates, clinical samples, and compared to a gold-standard amplicon-based method. From a Zika virus isolate the SMART-9N approach recovered 10kb of the 10.8kb RNA genome in a single nanopore read. We also obtained full genome coverage at a high depth coverage using the Rapid SMART-9N, which takes only 10 minutes and costs up to 45% less than other methods. We found the limits of detection of these methods to be 6 focus forming units (FFU)/mL with 99.02% and 87.58% genome coverage for SMART-9N and Rapid SMART-9N respectively. Yellow fever virus plasma samples and SARS-CoV-2 nasopharyngeal samples previously confirmed by RT-qPCR with a broad range of Ct-values were selected for validation. Both methods produced greater genome coverage when compared to the multiplex PCR approach and we obtained the longest single read of this study (18.5 kb) with a SARS-CoV-2 clinical sample, 60% of the virus genome using the Rapid SMART-9N method. This work demonstrates that SMART-9N and Rapid SMART-9N are sensitive, low input, and long-read compatible alternatives for RNA virus detection and genome sequencing and Rapid SMART-9N improves the cost, time, and complexity of laboratory work.

4.
Microb Genom ; 9(1)2023 01.
Artículo en Inglés | MEDLINE | ID: covidwho-2213031

RESUMEN

Human adenovirus F41 causes acute gastroenteritis in children, and has recently been associated with an apparent increase in paediatric hepatitis of unknown aetiology in the UK, with further cases reported in multiple countries. Relatively little is known about the genetic diversity of adenovirus F41 in UK children; and it is unclear what, if any, impact the COVID-19 pandemic has had on viral diversity in the UK. Methods that allow F41 to be sequenced from clinical samples without the need for viral culture are required to provide the genomic data to address these questions. Therefore, we evaluated an overlapping-amplicon method of sequencing adenovirus genomes from clinical samples using Oxford Nanopore technology. We applied this method to a small sample of adenovirus-species-F-positive extracts collected as part of standard care in the East of England region in January-May 2022. This method produced genomes with >75 % coverage in 13/22 samples and >50 % coverage in 19/22 samples. We identified two F41 lineages present in paediatric patients in the East of England in 2022. Where F41 genomes from paediatric hepatitis cases were available (n=2), these genomes fell within the diversity of F41 from the UK and continental Europe sequenced before and after the 2020-2021 phase of the COVID-19 pandemic. Our analyses suggest that overlapping amplicon sequencing is an appropriate method for generating F41 genomic data from high-virus-load clinical samples, and currently circulating F41 viral lineages were present in the UK and Europe before the COVID-19 pandemic.


Asunto(s)
Infecciones por Adenoviridae , COVID-19 , Humanos , Niño , COVID-19/epidemiología , Pandemias , Análisis de Secuencia , Adenoviridae/genética , Variación Genética
5.
Virus Evol ; 8(2): veac080, 2022.
Artículo en Inglés | MEDLINE | ID: covidwho-2051563

RESUMEN

The first SARS-CoV-2 variant of concern (VOC) to be designated was lineage B.1.1.7, later labelled by the World Health Organization as Alpha. Originating in early autumn but discovered in December 2020, it spread rapidly and caused large waves of infections worldwide. The Alpha variant is notable for being defined by a long ancestral phylogenetic branch with an increased evolutionary rate, along which only two sequences have been sampled. Alpha genomes comprise a well-supported monophyletic clade within which the evolutionary rate is typical of SARS-CoV-2. The Alpha epidemic continued to grow despite the continued restrictions on social mixing across the UK and the imposition of new restrictions, in particular, the English national lockdown in November 2020. While these interventions succeeded in reducing the absolute number of cases, the impact of these non-pharmaceutical interventions was predominantly to drive the decline of the SARS-CoV-2 lineages that preceded Alpha. We investigate the only two sampled sequences that fall on the branch ancestral to Alpha. We find that one is likely to be a true intermediate sequence, providing information about the order of mutational events that led to Alpha. We explore alternate hypotheses that can explain how Alpha acquired a large number of mutations yet remained largely unobserved in a region of high genomic surveillance: an under-sampled geographical location, a non-human animal population, or a chronically infected individual. We conclude that the latter provides the best explanation of the observed behaviour and dynamics of the variant, although the individual need not be immunocompromised, as persistently infected immunocompetent hosts also display a higher within-host rate of evolution. Finally, we compare the ancestral branches and mutation profiles of other VOCs and find that Delta appears to be an outlier both in terms of the genomic locations of its defining mutations and a lack of the rapid evolutionary rate on its ancestral branch. As new variants, such as Omicron, continue to evolve (potentially through similar mechanisms), it remains important to investigate the origins of other variants to identify ways to potentially disrupt their evolution and emergence.

6.
Nature ; 610(7930): 154-160, 2022 10.
Artículo en Inglés | MEDLINE | ID: covidwho-1991629

RESUMEN

The SARS-CoV-2 Delta (Pango lineage B.1.617.2) variant of concern spread globally, causing resurgences of COVID-19 worldwide1,2. The emergence of the Delta variant in the UK occurred on the background of a heterogeneous landscape of immunity and relaxation of non-pharmaceutical interventions. Here we analyse 52,992 SARS-CoV-2 genomes from England together with 93,649 genomes from the rest of the world to reconstruct the emergence of Delta and quantify its introduction to and regional dissemination across England in the context of changing travel and social restrictions. Using analysis of human movement, contact tracing and virus genomic data, we find that the geographic focus of the expansion of Delta shifted from India to a more global pattern in early May 2021. In England, Delta lineages were introduced more than 1,000 times and spread nationally as non-pharmaceutical interventions were relaxed. We find that hotel quarantine for travellers reduced onward transmission from importations; however, the transmission chains that later dominated the Delta wave in England were seeded before travel restrictions were introduced. Increasing inter-regional travel within England drove the nationwide dissemination of Delta, with some cities receiving more than 2,000 observable lineage introductions from elsewhere. Subsequently, increased levels of local population mixing-and not the number of importations-were associated with the faster relative spread of Delta. The invasion dynamics of Delta depended on spatial heterogeneity in contact patterns, and our findings will inform optimal spatial interventions to reduce the transmission of current and future variants of concern, such as Omicron (Pango lineage B.1.1.529).


Asunto(s)
COVID-19 , SARS-CoV-2 , COVID-19/epidemiología , COVID-19/prevención & control , COVID-19/transmisión , COVID-19/virología , Ciudades/epidemiología , Trazado de Contacto , Inglaterra/epidemiología , Genoma Viral/genética , Humanos , Cuarentena/legislación & jurisprudencia , SARS-CoV-2/genética , SARS-CoV-2/crecimiento & desarrollo , SARS-CoV-2/aislamiento & purificación , Viaje/legislación & jurisprudencia
7.
J Clin Microbiol ; 60(4): e0240821, 2022 04 20.
Artículo en Inglés | MEDLINE | ID: covidwho-1774932

RESUMEN

Genome sequencing is a powerful tool for identifying SARS-CoV-2 variant lineages; however, there can be limitations due to sequence dropout when used to identify specific key mutations. Recently, ThermoFisher Scientific has developed genotyping assays to help bridge the gap between testing capacity and sequencing capability to generate real-time genotyping results based on specific variants. Over a 6-week period during the months of April and May 2021, we set out to assess the ThermoFisher TaqMan mutation panel genotyping assay, initially for three mutations of concern and then for an additional two mutations of concern, against SARS-CoV-2-positive clinical samples and the corresponding COVID-19 Genomics UK Consortium (COG-UK) sequencing data. We demonstrate that genotyping is a powerful in-depth technique for identifying specific mutations, is an excellent complement to genome sequencing, and has real clinical health value potential, allowing laboratories to report and take action on variants of concern much more quickly.


Asunto(s)
COVID-19 , SARS-CoV-2 , COVID-19/diagnóstico , Prueba de COVID-19 , Humanos , Mutación , SARS-CoV-2/genética
8.
Cell ; 184(20): 5179-5188.e8, 2021 09 30.
Artículo en Inglés | MEDLINE | ID: covidwho-1401294

RESUMEN

We present evidence for multiple independent origins of recombinant SARS-CoV-2 viruses sampled from late 2020 and early 2021 in the United Kingdom. Their genomes carry single-nucleotide polymorphisms and deletions that are characteristic of the B.1.1.7 variant of concern but lack the full complement of lineage-defining mutations. Instead, the remainder of their genomes share contiguous genetic variation with non-B.1.1.7 viruses circulating in the same geographic area at the same time as the recombinants. In four instances, there was evidence for onward transmission of a recombinant-origin virus, including one transmission cluster of 45 sequenced cases over the course of 2 months. The inferred genomic locations of recombination breakpoints suggest that every community-transmitted recombinant virus inherited its spike region from a B.1.1.7 parental virus, consistent with a transmission advantage for B.1.1.7's set of mutations.


Asunto(s)
COVID-19/epidemiología , COVID-19/transmisión , Pandemias , Recombinación Genética , SARS-CoV-2/genética , Secuencia de Bases/genética , COVID-19/virología , Biología Computacional/métodos , Frecuencia de los Genes , Genoma Viral , Genotipo , Humanos , Mutación , Filogenia , Polimorfismo de Nucleótido Simple , Reino Unido/epidemiología , Secuenciación Completa del Genoma/métodos
9.
Science ; 373(6557): 889-895, 2021 08 20.
Artículo en Inglés | MEDLINE | ID: covidwho-1322770

RESUMEN

Understanding the causes and consequences of the emergence of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) variants of concern is crucial to pandemic control yet difficult to achieve because they arise in the context of variable human behavior and immunity. We investigated the spatial invasion dynamics of lineage B.1.1.7 by jointly analyzing UK human mobility, virus genomes, and community-based polymerase chain reaction data. We identified a multistage spatial invasion process in which early B.1.1.7 growth rates were associated with mobility and asymmetric lineage export from a dominant source location, enhancing the effects of B.1.1.7's increased intrinsic transmissibility. We further explored how B.1.1.7 spread was shaped by nonpharmaceutical interventions and spatial variation in previous attack rates. Our findings show that careful accounting of the behavioral and epidemiological context within which variants of concern emerge is necessary to interpret correctly their observed relative growth rates.


Asunto(s)
COVID-19/epidemiología , COVID-19/virología , SARS-CoV-2 , COVID-19/prevención & control , COVID-19/transmisión , Prueba de Ácido Nucleico para COVID-19 , Control de Enfermedades Transmisibles , Genoma Viral , Humanos , Incidencia , Filogeografía , SARS-CoV-2/genética , SARS-CoV-2/patogenicidad , Análisis Espacio-Temporal , Viaje , Reino Unido/epidemiología
10.
Genome Biol ; 22(1): 196, 2021 07 01.
Artículo en Inglés | MEDLINE | ID: covidwho-1295478

RESUMEN

In response to the ongoing SARS-CoV-2 pandemic in the UK, the COVID-19 Genomics UK (COG-UK) consortium was formed to rapidly sequence SARS-CoV-2 genomes as part of a national-scale genomic surveillance strategy. The network consists of universities, academic institutes, regional sequencing centres and the four UK Public Health Agencies. We describe the development and deployment of CLIMB-COVID, an encompassing digital infrastructure to address the challenge of collecting and integrating both genomic sequencing data and sample-associated metadata produced across the COG-UK network.


Asunto(s)
Nube Computacional , Genómica/organización & administración , SARS-CoV-2/genética , COVID-19/epidemiología , Monitoreo Epidemiológico , Genoma Viral , Humanos , Análisis de Secuencia de ADN , Reino Unido , Interfaz Usuario-Computador , Secuenciación Completa del Genoma
11.
Nature ; 593(7858): 266-269, 2021 05.
Artículo en Inglés | MEDLINE | ID: covidwho-1152860

RESUMEN

The SARS-CoV-2 lineage B.1.1.7, designated variant of concern (VOC) 202012/01 by Public Health England1, was first identified in the UK in late summer to early autumn 20202. Whole-genome SARS-CoV-2 sequence data collected from community-based diagnostic testing for COVID-19 show an extremely rapid expansion of the B.1.1.7 lineage during autumn 2020, suggesting that it has a selective advantage. Here we show that changes in VOC frequency inferred from genetic data correspond closely to changes inferred by S gene target failures (SGTF) in community-based diagnostic PCR testing. Analysis of trends in SGTF and non-SGTF case numbers in local areas across England shows that B.1.1.7 has higher transmissibility than non-VOC lineages, even if it has a different latent period or generation time. The SGTF data indicate a transient shift in the age composition of reported cases, with cases of B.1.1.7 including a larger share of under 20-year-olds than non-VOC cases. We estimated time-varying reproduction numbers for B.1.1.7 and co-circulating lineages using SGTF and genomic data. The best-supported models did not indicate a substantial difference in VOC transmissibility among different age groups, but all analyses agreed that B.1.1.7 has a substantial transmission advantage over other lineages, with a 50% to 100% higher reproduction number.


Asunto(s)
COVID-19/transmisión , COVID-19/virología , Filogenia , SARS-CoV-2/clasificación , SARS-CoV-2/patogenicidad , Adolescente , Adulto , Distribución por Edad , Anciano , Anciano de 80 o más Años , Número Básico de Reproducción , COVID-19/diagnóstico , COVID-19/epidemiología , Niño , Preescolar , Inglaterra/epidemiología , Evolución Molecular , Genoma Viral/genética , Humanos , Lactante , Recién Nacido , Persona de Mediana Edad , SARS-CoV-2/genética , SARS-CoV-2/aislamiento & purificación , Glicoproteína de la Espiga del Coronavirus/análisis , Glicoproteína de la Espiga del Coronavirus/genética , Factores de Tiempo , Adulto Joven
12.
Lancet Microbe ; 1(1): e11, 2020 05.
Artículo en Inglés | MEDLINE | ID: covidwho-1087360
13.
Cell ; 184(1): 64-75.e11, 2021 01 07.
Artículo en Inglés | MEDLINE | ID: covidwho-1064909

RESUMEN

Global dispersal and increasing frequency of the SARS-CoV-2 spike protein variant D614G are suggestive of a selective advantage but may also be due to a random founder effect. We investigate the hypothesis for positive selection of spike D614G in the United Kingdom using more than 25,000 whole genome SARS-CoV-2 sequences. Despite the availability of a large dataset, well represented by both spike 614 variants, not all approaches showed a conclusive signal of positive selection. Population genetic analysis indicates that 614G increases in frequency relative to 614D in a manner consistent with a selective advantage. We do not find any indication that patients infected with the spike 614G variant have higher COVID-19 mortality or clinical severity, but 614G is associated with higher viral load and younger age of patients. Significant differences in growth and size of 614G phylogenetic clusters indicate a need for continued study of this variant.


Asunto(s)
Sustitución de Aminoácidos , COVID-19/transmisión , COVID-19/virología , SARS-CoV-2/genética , SARS-CoV-2/patogenicidad , Glicoproteína de la Espiga del Coronavirus/genética , Ácido Aspártico/análisis , Ácido Aspártico/genética , COVID-19/epidemiología , Genoma Viral , Glicina/análisis , Glicina/genética , Humanos , Mutación , SARS-CoV-2/crecimiento & desarrollo , Reino Unido/epidemiología , Virulencia , Secuenciación Completa del Genoma
14.
Science ; 371(6530): 708-712, 2021 02 12.
Artículo en Inglés | MEDLINE | ID: covidwho-1066806

RESUMEN

The United Kingdom's COVID-19 epidemic during early 2020 was one of world's largest and was unusually well represented by virus genomic sampling. We determined the fine-scale genetic lineage structure of this epidemic through analysis of 50,887 severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) genomes, including 26,181 from the UK sampled throughout the country's first wave of infection. Using large-scale phylogenetic analyses combined with epidemiological and travel data, we quantified the size, spatiotemporal origins, and persistence of genetically distinct UK transmission lineages. Rapid fluctuations in virus importation rates resulted in >1000 lineages; those introduced prior to national lockdown tended to be larger and more dispersed. Lineage importation and regional lineage diversity declined after lockdown, whereas lineage elimination was size-dependent. We discuss the implications of our genetic perspective on transmission dynamics for COVID-19 epidemiology and control.


Asunto(s)
COVID-19/epidemiología , COVID-19/virología , Genoma Viral , SARS-CoV-2/genética , COVID-19/prevención & control , COVID-19/transmisión , Cadena de Infección , Control de Enfermedades Transmisibles , Enfermedades Transmisibles Importadas/epidemiología , Enfermedades Transmisibles Importadas/virología , Epidemias , Humanos , Filogenia , Viaje , Reino Unido/epidemiología
15.
Elife ; 92020 12 17.
Artículo en Inglés | MEDLINE | ID: covidwho-1011747

RESUMEN

Here, we describe the case of a COVID-19 patient who developed recurring ventilator-associated pneumonia caused by Pseudomonas aeruginosa that acquired increasing levels of antimicrobial resistance (AMR) in response to treatment. Metagenomic analysis revealed the AMR genotype, while immunological analysis revealed massive and escalating levels of T-cell activation. These were both SARS-CoV-2 and P. aeruginosa specific, and bystander activated, which may have contributed to this patient's persistent symptoms and radiological changes.


Asunto(s)
Antibacterianos/uso terapéutico , COVID-19/complicaciones , Activación de Linfocitos , Neumonía Asociada al Ventilador/tratamiento farmacológico , Infecciones por Pseudomonas/tratamiento farmacológico , SARS-CoV-2 , Linfocitos T/inmunología , Antibacterianos/farmacología , COVID-19/inmunología , COVID-19/terapia , Farmacorresistencia Bacteriana Múltiple , Humanos , Pulmón/microbiología , Masculino , Meropenem/farmacología , Meropenem/uso terapéutico , Metagenómica , Persona de Mediana Edad , Combinación Piperacilina y Tazobactam/farmacología , Combinación Piperacilina y Tazobactam/uso terapéutico , Neumonía Asociada al Ventilador/diagnóstico por imagen , Neumonía Asociada al Ventilador/etiología , Infecciones por Pseudomonas/diagnóstico por imagen , Infecciones por Pseudomonas/etiología , Pseudomonas aeruginosa/aislamiento & purificación , Recurrencia , Respiración Artificial
16.
Nat Commun ; 11(1): 6385, 2020 12 14.
Artículo en Inglés | MEDLINE | ID: covidwho-977267

RESUMEN

The response to the coronavirus disease 2019 (COVID-19) pandemic has been hampered by lack of an effective severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) antiviral therapy. Here we report the use of remdesivir in a patient with COVID-19 and the prototypic genetic antibody deficiency X-linked agammaglobulinaemia (XLA). Despite evidence of complement activation and a robust T cell response, the patient developed persistent SARS-CoV-2 pneumonitis, without progressing to multi-organ involvement. This unusual clinical course is consistent with a contribution of antibodies to both viral clearance and progression to severe disease. In the absence of these confounders, we take an experimental medicine approach to examine the in vivo utility of remdesivir. Over two independent courses of treatment, we observe a temporally correlated clinical and virological response, leading to clinical resolution and viral clearance, with no evidence of acquired drug resistance. We therefore provide evidence for the antiviral efficacy of remdesivir in vivo, and its potential benefit in selected patients.


Asunto(s)
Adenosina Monofosfato/análogos & derivados , Alanina/análogos & derivados , Inmunidad Humoral/efectos de los fármacos , SARS-CoV-2/efectos de los fármacos , Adenosina Monofosfato/uso terapéutico , Adulto , Alanina/uso terapéutico , Antivirales/uso terapéutico , COVID-19/virología , Fiebre/prevención & control , Humanos , Inmunidad Humoral/inmunología , Recuento de Linfocitos , Masculino , SARS-CoV-2/inmunología , SARS-CoV-2/fisiología , Resultado del Tratamiento
17.
Rev Inst Med Trop Sao Paulo ; 62: e30, 2020.
Artículo en Inglés | MEDLINE | ID: covidwho-246727

RESUMEN

We conducted the genome sequencing and analysis of the first confirmed COVID-19 infections in Brazil. Rapid sequencing coupled with phylogenetic analyses in the context of travel history corroborate multiple independent importations from Italy and local spread during the initial stage of COVID-19 transmission in Brazil.


Asunto(s)
Betacoronavirus/genética , Enfermedades Transmisibles Importadas/transmisión , Infecciones por Coronavirus/transmisión , Pandemias , Neumonía Viral/transmisión , Anciano , Brasil/epidemiología , COVID-19 , Enfermedades Transmisibles Importadas/epidemiología , Enfermedades Transmisibles Importadas/virología , Infecciones por Coronavirus/epidemiología , Humanos , Persona de Mediana Edad , Filogenia , Neumonía Viral/epidemiología , Reacción en Cadena de la Polimerasa de Transcriptasa Inversa , SARS-CoV-2
18.
Cell ; 181(5): 990-996.e5, 2020 05 28.
Artículo en Inglés | MEDLINE | ID: covidwho-60444

RESUMEN

The novel coronavirus SARS-CoV-2 was first detected in the Pacific Northwest region of the United States in January 2020, with subsequent COVID-19 outbreaks detected in all 50 states by early March. To uncover the sources of SARS-CoV-2 introductions and patterns of spread within the United States, we sequenced nine viral genomes from early reported COVID-19 patients in Connecticut. Our phylogenetic analysis places the majority of these genomes with viruses sequenced from Washington state. By coupling our genomic data with domestic and international travel patterns, we show that early SARS-CoV-2 transmission in Connecticut was likely driven by domestic introductions. Moreover, the risk of domestic importation to Connecticut exceeded that of international importation by mid-March regardless of our estimated effects of federal travel restrictions. This study provides evidence of widespread sustained transmission of SARS-CoV-2 within the United States and highlights the critical need for local surveillance.


Asunto(s)
Betacoronavirus/genética , Infecciones por Coronavirus/transmisión , Neumonía Viral/transmisión , Viaje , Betacoronavirus/aislamiento & purificación , COVID-19 , Connecticut/epidemiología , Infecciones por Coronavirus/epidemiología , Infecciones por Coronavirus/virología , Monitoreo Epidemiológico , Humanos , Funciones de Verosimilitud , Pandemias , Filogenia , Neumonía Viral/epidemiología , Neumonía Viral/virología , SARS-CoV-2 , Viaje/legislación & jurisprudencia , Estados Unidos/epidemiología , Washingtón/epidemiología
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