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1.
Microbes Infect ; 26(1-2): 105216, 2024.
Article in English | MEDLINE | ID: mdl-37827275

ABSTRACT

The analyses of genetic traits, dispersion patterns and phylogenomics are essential for understanding the evolutionary forces driving SARS-CoV-2 viruses in these three years of COVID-19 pandemics. Brazil is one of the most affected countries in the world and not sufficient genomic studies have been performed. The emergence of P.1 lineage led to one of the most serious public health crises on record. Our study presents the genomic sequencing and characterization of 412 samples from Rio Grande do Sul state, in the Brazilian Southern region, during Gamma and Delta epidemic waves, in 2021. Additionally, molecular evolution tests were performed to identify positively selected sites in Brazil between 2020 and 2022, as well as offer some evolutionary perspective about the maintenance of multiple spike mutations in Omicron lineages. Genomic epidemiology analysis has indicated an intense P.1 (Gamma) diversification followed by rapid Delta substitution in Southern Brazil.


Subject(s)
COVID-19 , SARS-CoV-2 , Humans , SARS-CoV-2/genetics , Brazil/epidemiology , COVID-19/epidemiology , Genomics , Public Health , Phylogeny
2.
J. bras. nefrol ; 44(3): 443-446, July-Sept. 2022. tab, graf
Article in English | LILACS-Express | LILACS | ID: biblio-1405400

ABSTRACT

Abstract Rhabdomyolysis is defined as the breakdown of skeletal muscle leading to the release of muscle contents into the extracellular fluid. Patients with rhabdomyolysis can be asymptomatic or have myalgia symptoms, weakness, myoglobinuria with dark urine, significant electrolyte imbalance, and acute kidney injury. Here we describe a case on acute kidney injury associated to rhabdomyolysis in a patient with COVID-19.


Resumo A rabdomiólise é definida como a lise da musculatura esquelética levando à liberação do conteúdo muscular para o fluido extracelular. Pacientes com rabdomiólise podem ser assintomáticos ou apresentar sintomas de mialgia, fraqueza, mioglobinúria com urina escura, desequilíbrio eletrolítico significativo e lesão renal aguda. Aqui descrevemos um caso de lesão renal aguda associada à rabdomiólise em um paciente com COVID-19.

3.
J Bras Nefrol ; 44(3): 443-446, 2022.
Article in English, Portuguese | MEDLINE | ID: mdl-33704346

ABSTRACT

Rhabdomyolysis is defined as the breakdown of skeletal muscle leading to the release of muscle contents into the extracellular fluid. Patients with rhabdomyolysis can be asymptomatic or have myalgia symptoms, weakness, myoglobinuria with dark urine, significant electrolyte imbalance, and acute kidney injury. Here we describe a case on acute kidney injury associated to rhabdomyolysis in a patient with COVID-19.


Subject(s)
Acute Kidney Injury , COVID-19 , Myoglobinuria , Rhabdomyolysis , Acute Kidney Injury/complications , COVID-19/complications , Electrolytes , Humans , Myoglobinuria/complications , Myoglobinuria/diagnosis , Rhabdomyolysis/complications , Rhabdomyolysis/diagnosis
4.
Pathogens ; 10(8)2021 Aug 05.
Article in English | MEDLINE | ID: mdl-34451453

ABSTRACT

Almost a year after the COVID-19 pandemic had begun, new lineages (B.1.1.7, B.1.351, P.1, and B.1.617.2) associated with enhanced transmissibility, immunity evasion, and mortality were identified in the United Kingdom, South Africa, and Brazil. The previous most prevalent lineages in the state of Rio Grande do Sul (RS, Southern Brazil), B.1.1.28 and B.1.1.33, were rapidly replaced by P.1 and P.2, two B.1.1.28-derived lineages harboring the E484K mutation. To perform a genomic characterization from the metropolitan region of Porto Alegre, we sequenced viral samples to: (i) identify the prevalence of SARS-CoV-2 lineages in the region, the state, and bordering countries/regions; (ii) characterize the mutation spectra; (iii) hypothesize viral dispersal routes by using phylogenetic and phylogeographic approaches. We found that 96.4% of the samples belonged to the P.1 lineage and approximately 20% of them were assigned as the novel P.1.2, a P.1-derived sublineage harboring signature substitutions recently described in other Brazilian states and foreign countries. Moreover, sequences from this study were allocated in distinct branches of the P.1 phylogeny, suggesting multiple introductions in RS and placing this state as a potential diffusion core of P.1-derived clades and the emergence of P.1.2. It is uncertain whether the emergence of P.1.2 and other P.1 clades is related to clinical or epidemiological consequences. However, the clear signs of molecular diversity from the recently introduced P.1 warrant further genomic surveillance.

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