Introduction Hematopoietic stem cell transplantation (HSCT) profoundly disrupts the gut microbiome and may contribute to adverse post-transplant outcomes. Fecal microbiota transplantation (FMT) has emerged as a strategy to restore microbial diversity; however, data in pediatric HSCT recipients remain limited.Methods We conducted a longitudinal analysis of 17 pediatric HSCT recipients who received FMT. Fecal samples were collected before FMT and at days 7, 14, and 30 after treatment. Gut microbiome composition was analyzed using 16S rRNA gene sequencing.Results Baseline samples showed reduced microbial diversity and a dysbiotic microbial profile. Following FMT, microbial diversity increased progressively, with recovery evident from day 7 and stabilization by day 30. Taxonomic analyses demonstrated depletion of dysbiosis-associated genera and enrichment of beneficial short-chain fatty acid-producing taxa, including Faecalibacterium, Blautia, Subdoligranulum, and Akkermansia. Distinct microbial configurations were observed according to gastrointestinal involvement by acute graft-versus-host disease.Conclusions FMT was associated with progressive restoration of gut microbiome diversity and structure in pediatric HSCT recipients, supporting its potential role as a microbiota-based strategy to promote ecological recovery after HSCT.
HTLV-1 is the etiologic agent of adult T-cell leukemia/lymphoma (ATL/ATLL) and is related to HTLV-1-associated myelopathy/tropical spastic paraparesis (HAM/TSP). The factors that influence the development of the disease remain unknown. The majority of HTLV-1 patients remain asymptomatic throughout their lives, while 2.5%-5% developed ATLL and 0.3%-2% HAM/TSP. About 10 to 20 million people worldwide are infected with HTLV-1. In Argentina, HTLV-1 infection has been documented particularly in the northeast provinces neighboring Bolivia and Paraguay. This study aims to analyze the nine complete genomes of HTLV-1 from asymptomatic and symptomatic patients using next-generation sequencing. Mutation analysis and identification of viral integration sites were performed. Mutation analysis revealed distinct mutation patterns, identifying clusters associated with HAM/TSP and lymphoma patients. Multiple integration sites across different chromosomes were found, suggesting random integration without specific hotspots. A defective provirus was identified in a lymphoma patient, potentially impacting immune evasion and clonal expansion. Complete HTLV-1 genome sequences from circulating strains in Argentina were obtained for the first time. This contributes to the knowledge of the genetic variability of the virus and its integration sites in the human genome and reveals that the nature of the HTLV-1 provirus in natural infection is complex.
3-indoxyl sulfate (3-IS) results from a hepatic transformation of indole, a tryptophan degradation product produced by commensal gut bacteria. The metabolite has shown promise as a biomarker of dysbiosis and clinical outcomes following hematopoietic stem cell transplant (HSCT) in adults. Nonetheless, there is a paucity of data regarding microbiome health and outcomes in the pediatric HSCT setting. We developed and thoroughly validated an affordable high-performance liquid chromatography/fluorescence detector (HPLC-FLD) method to quantify 3-IS in urine for use in the pediatric setting. Chromatographic separation was achieved on a C18 column (250 × 4.6 mm × 5 μm) with a mobile phase consisting of pH 4.0 acetic acid-triethylamine buffer and acetonitrile (88:12, v/v), eluted isocratically at 1 mL/min. 3-IS fluorescence detection was set at excitation/emission of 280 and 375, respectively. The method was fully validated according to FDA-specified limits including selectivity, linearity (0.10 to 10.00 mg/L, r2 > 0.997), intra- and inter-day accuracy, and precision. 3-IS stability was confirmed after three freeze–thaw cycles, for short- and medium-term on a benchtop and at 4 °C and for long-term up to 60 days at −20 °C. The validated method was used to quantify 3-IS in urine samples from HSCT pediatric patients.
Background Islatravir is a new antiretroviral drug that inhibits the reverse transcriptase (RT) of HIV-1 through multiple mechanisms. It is proposed to be used in combination with doravirine, a new NNRTI. M184V/I mutations have been shown to reduce the in vitro antiviral activity of islatravir, but their effect when pre-selected during ART has not been investigated.Methods HIV-1 rt sequences were obtained from four individuals of the Garrahan HIV cohort prior to, or during virological failure to ART. HIV-1 infectious molecular clones were constructed on an NL4-3 backbone, and infectious viruses were produced by transfection of 293T cells. Fold-changes in IC50 were calculated for each mutant versus the NL4-3 WT. HIV-1 phenotypic drug resistance was tested in vitro against NRTIs and NNRTIs.Results In all the cases, M184I/V, either alone or in the presence of other mutations, was associated with reduced susceptibility to islatravir, abacavir and lamivudine. Viruses carrying M184V/I showed variable levels of resistance to islatravir (4.8 to 33.8-fold). The greatest reduction in susceptibility was observed for viruses carrying the mutations M184V + V106I (33.8-fold resistance) or M184V + I142V (25.2-fold resistance). For NNRTIs, the presence of V106I alone did not affect susceptibility to doravirine or etravirine, but showed a modest reduction in susceptibility to efavirenz (6-fold). Susceptibility to doravirine was slightly reduced only for one of the mutants carrying V106I in combination with Y181C and M184V.Conclusions Mutations and polymorphisms selected in vivo together with M184V/I depend on the viral genetic context and on ART history, and could affect the efficacy of islatravir once available for use in the clinic.
Early detection of congenital cytomegalovirus (cCMV) infection in pediatric patients enables the implementation of appropriate treatment to reduce the severity of associated sequelae, directly impacting the child's quality of life. The aim of this study was to determine the CMV positivity rate in children clinical suspected of congenital infection and to analyse the strategies used in laboratory diagnostic confirmation. A retrospective analysis of samples from children with clinical suspected cCMV was evaluated by the Virology Laboratory of this institution using real-time polymerase chain reaction (qPCR) specific for cytomegalovirus (CMV). A total of 698 patients were included, analysing 125 samples from neonatal screening cards (NSC) and 659 urine samples in the period between January 1, 2016 and December 31, 2022. The diagnosis of congenital CMV (cCMV) was confirmed in 24 patients through the presence of the virus in urine or NSC samples, corresponding to 3.4% (24/698) of the total patients studied.
Background: Human immunodeficiency virus (HIV) drug resistance is a major cause of treatment failure in children and adolescents infected with the virus. Objectives: The objectives of the study are to investigate HIV drug resistance (HIVDR) in patients who attended a referral care center in Argentina over a 15 -year period and to compare mutational patterns between HIV -1 poi sequences characterized as B or BF recombinants. Methods: Individual resistance -associated mutations (RAMs) (to protease and reverse transcriptase inhibitors) were identified according to IAS-USA guidelines in 374 HIV -1 -infected children and adolescents. HIV -1 subtype was characterized by phylogenetic and recombination analysis using MEGA5.1 and Simplot. Poisson linear regression was used to model the dynamics of the RAMs over time. Results: The prevalence of RAMs to protease inhibitors (R2 = 0.52, p = 0.0012) and nucleoside reverse transcriptase inhibitors (R2 = 0.30, p = 0.0225) decreased over time. HIVDR to non -nucleoside reverse transcriptase inhibitors remained moderate to high, ranging between 33% and 76%. BF recombinants showed a higher frequency of thymidine analog mutation 1 RAMs profile and I54V mutation. Conclusion: In Argentina, HIVDR observed in children and adolescents has decreased over the past 15 years, regardless of the viral subtype. (REV INVEST CLIN. 2024;76(1):29-36)
SARS-CoV-2 dynamics across different COVID-19 waves has been unclear in immunocompromised children. We aimed to compare the dynamics of SARS-CoV-2 RNA viral load (VL) during the first and third waves of COVID-19 in immunocompromised children. A retrospective and longitudinal cohort study was conducted in a pediatric referral hospital of Argentina. The study included 28 admitted immunocompromised children with laboratory confirmed SARS-CoV-2 infection. Thirteen acquired the infection during COVID-19 first wave (May to August 2020, group 1 (G1)) and fifteen in the third wave (January to March 2022, group 2 (G2)). RNA viral load measure and its dynamic reconstruction were performed in nasopharyngeal swabs by validated quantitative, real time RT-PCR, and linear mixed-effects model, respectively. Of the 28 children included, 54% were girls, most of them had hemato-oncological pathology (57%), and the median age was 8 years (interquartile range (IQR): 3–13). The dynamic of VL was similar in both groups ( P = 0.148), starting from a level of 5.34 log 10 copies/mL (95% confidence interval (CI): 4.47–6.21) in G1 and 5.79 log 10 copies/mL (95% CI: 4.93–6.65) in G2. Then, VL decayed with a rate of 0.059 (95% CI: 0.038–0.080) and 0.088 (95% CI: 0.058–0.118) log 10 copies/mL per day since diagnosis and fell below the limit of quantification at days 51 and 39 after diagnosis in G1 and G2, respectively. Our results evidenced a longer viral RNA persistence in immunocompromised pediatric patients and no difference in VL dynamic between COVID-19 first wave—attributed to ancestral infections—and third wave—attributed to Omicron infections.
The outcome of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection in cancer pediatric patients was initially uncertain. The objective of this study was to describe the characteristics and outcome of cancer patients and hematopoietic stem cell transplant recipients from 0 to 19 years with detectable SARS-CoV-2 from April 23, 2020, to April 30, 2022, treated in a tertiary-level hospital in Argentina. A total of 348 cases were registered in 339 patients. The median age was 89.5 (3 to 224) months. The sex was predominantly male: 193 (55.5%). The most common malignant disease was leukemia (42.8%). One hundred four cases (29.9%) had comorbidities. Of the 346 cases with an available blood count, 17.6% had a lymphocyte count <300/mm 3 . Fever was the most common symptom. In most cases (93.1%) presented asymptomatic or mild disease. Twenty-one cases (6%) presented severe or critical status. Eleven of 24 admissions to the intensive care unit were due to COVID-19 (coronavirus disease 2019). Eight patients (2.3%) died. Two deaths were attributable to SARS-CoV-2 (0.6%). Being older, having fever, lymphopenia at diagnosis, and having received hematopoietic stem cell transplant were associated with a more severe disease. Around 90% of the children continued their cancer treatment without any change.
INTRODUCTION Dengue is a public health problem worldwide. It was originally confined to tropical and subtropical areas, but it is now present in other regions, such as Argentina. Epidemic outbreaks have been observed in the City of Buenos Aires since 2008, with few reports in children. OBJECTIVE To analyze and compare the clinical, epidemiological, laboratory, and evolutionary characteristics of the latest 2 dengue outbreaks outside the endemic area. POPULATION AND METHODS Time-series study. Patients under 18 years of age with probable or confirmed dengue and evaluated in a children's hospital of the City of Buenos Aires during the periods 2015-2016 and 2019-2020 were included. RESULTS A total of 239 patients were included; 29 (12%) had a history of travel. Their median age was 132 months (interquartile range: 102- 156). All had a fever. Other symptoms included headache in 170 (71%), myalgia in 129 (54%), and rash in 122 (51%). Forty patients (17%) had comorbidities. Warning signs were observed in 79 patients (33%); 14 (6%) developed severe dengue; 115 (45%) were hospitalized; none died. DENV-1 was the most common serotype. A history of travel and hospitalization prevailed in the first period; severe dengue and prior infection, in the second period. CONCLUSIONS No patient died due to dengue in either study period. Statistically significant differences were observed in the frequency of hospitalization; a history of travel was more common in the 2015-2016 period and severe dengue, in the 2019-2020 period.
BACKGROUND:In prior studies, HIV-1 BF recombinants with subtype F integrases failed to develop resistance to raltegravir through the Q148H mutational pathway. We aimed to determine the role of subtype-specific polymorphisms in integrase on drug susceptibility, viral replication and integration.METHODS:Integrase sequences were retrieved from the Los Alamos Database or obtained from the Garrahan HIV cohort. HIV-1 infectious molecular clones with or without Q148H (+ G140S) resistance mutations were constructed using integrases of subtype B (NL4-3) or F1(BF) ARMA159 and URTR23. Integrase chimeras were generated by reciprocal exchanges of a 200 bp fragment spanning amino acids 85-150 of the catalytic core domain (CCD) of NL4-3-Q148H and either ARMA159-Q148H or URTR23-Q148H. Viral infections were quantified by p24 ELISA and Alu-gag integration PCR assay.RESULTS:At least 18 different polymorphisms distinguish subtype B from F1(BF) recombinant integrases. In phenotypic experiments, p24 at Day 15 post-infection was high (105-106 pg/mL) for WT and NL4-3-Q148H; by contrast, it was low (102-104 pg/mL) for both F1(BF)-Q148H + G140S viruses, and undetectable for the Q148H mutants. Compared with WT viruses, integrated DNA was reduced by 5-fold for NL4-3-Q148H (P = 0.05), 9-fold for URTR23-Q148H (P = 0.01) and 16000-fold for ARMA159-Q148H (P = 0.01). Reciprocal exchange between B and F1(BF) of an integrase CCD region failed to rescue the replicative defect of F1(BF) integrase mutants.CONCLUSIONS:The functional impairment of Q148H in the context of subtype F integrases from BF recombinants explains the lack of selection of this pathway in vivo. Non-B polymorphisms external to the integrase CCD may influence the pathway to integrase strand transfer inhibitor resistance.
BACKGROUND:Increasing evidence from adult cohorts suggests an important role of HIV-1 pretreatment drug resistance (PDR) in ART failure, in spite of treatment being fully active according to baseline genotyping tests. Whether this is also true for children is unknown.METHODS:Virological and immunological parameters were longitudinally assessed in a group of 39 HIV-1 vertically infected children starting first-line lopinavir/ritonavir-based ART at a median of 5.0 months (IQR = 3.0-9.0). Evolution of viral load (VL) over time was compared between children with and without baseline PDR, as defined by the WHO mutation list.RESULTS:Resistance-associated mutations (RAMs) in the HIV-1 pol gene were present in nine HIV-1-infected children (23%) before initiation of first-line ART (PDR group). Of them, six carried RAMs associated with NNRTIs (NNRTI-PDR subgroup). At 4-8 weeks after ART initiation, the proportion of children achieving ≥1 log VL reduction was 87% for the no-PDR group versus 33% and 16.7% for the PDR group and the NNRTI-PDR subgroup, respectively. During follow-up, children with no PDR reached virological suppression almost four times faster than children with PDR or NNRTI-PDR [no-PDR = 631 days and PDR = 2134 days (P = 0.1249) and NNRTI-PDR = 2134 days (P = 0.0447)]. CD4 T cells remained similar between the study groups over time.CONCLUSIONS:HIV-1 baseline genotyping at diagnosis in vertically infected children is important for improved personalized medicine. While the mechanism is unclear, cases with PDR (particularly to NNRTIs) require closer monitoring of their first-line ART regimens in order to avoid early virological failures and prevent further accumulation of resistance.
Stenotrophomonas maltophilia intrinsic resistance to β-lactams is mediated by two chromosomal β-lactamases, L1 and L2, whose induction depends on AmpR. Its quorum sensing (QS) signal, the diffusible signal factor (DSF), has a positive role in biofilm production, virulence and induction of β-lactamases. We hypothesized that AmpR has a role in virulence, biofilm production and QS system. Studies were done on S. maltophilia K279a, K279a ampRFS (ampR deficient mutant) and K279aM11 (constitutively active AmpR mutant). K279a ampRFS showed the highest biofilm biomass, thickness and 3D organization. Conversely, K279aM11 was the least efficient biofilm former strain. qRT-PCR showed that spgM, related to biofilm formation and virulence, was upregulated in K279a ampRFS and downregulated in K279aM11. A constitutively active AmpR led to a reduction of DSF production, while K279a ampRFS was the highest producer. Consequently, qRT-PCR showed that AmpR negatively regulated rpfF expression. K279a ampRFS presented the highest oxidative stress resistance, overexpressed sodA gene and showed the highest virulence in the Galleria mellonella killing assay. This is the first evidence of the function of AmpR as a dual regulator in S. maltophilia with a positive role in β-lactam resistance and a negative role in DSF production, biofilm formation, oxidative stress resistance and virulence.
In Argentina, the human T-cell lymphotropic virus type 1 (HTLV-1) infection has been documented mainly among blood banks with a prevalence of ~0.02–0.046% for Buenos Aires city, 0.8% for the northeast, and 1% for the northwest; both areas are considered endemic for HTLV-2 and 1, respectively. Policies and specific guidelines for testing blood donors for HTLV are included since 2005. Screening for antibodies is performed at blood banks and confirmatory testing is performed at reference laboratories. There are no specific recommendations for the assistance of communities and individuals affected, nor referral to specialized clinics on the HTLV infection. In 2016, as a strategy of intervention, we opened a specialized clinical attendance in a referral infectious diseases public hospital for the comprehensive approach to patients with HTLV, offering follow-up and counseling for patients and their families for the early diagnosis of HTLV-1/2 and related diseases. During the study, 124 patients with presumptive HTLV positive diagnosis from blood bank, symptomatic patients (SPs), relatives, and descendants visited the unit. A total of 46 patients were HTLV positive (38 HTLV-1 and 8 HTLV-2). There were nine SPs (2 adult T-cell leukemia/lymphoma [ATL] and 7 HTLV-1-associated myelopathy/tropical spastic paraparesis [HAM/TSP]). All patients with HTLV-1 and−2 were offered to study their relatives. Two out of 37 (5.4%) descendants tested were positive for HTLV-1. Sexual partners were studied; among 6 out of 11 couples (54.5%) were found positive (5 HTLV-1 and 1 HTLV-2). Other relatives, such as mothers (1/2) and siblings (1/6), were positive for HTLV-1. According to the place of birth among HTLV-1 carriers, 58% were born in an endemic area or in countries where HTLV infection is considered endemic while for HTLV-2 carriers, 12.5% were born in an endemic area of Argentina. The proviral load (pVL) was measured in all, patients with HTLV-1 being higher in symptomatic compared with asymptomatic carriers. In addition, two pregnant women were early diagnosed during their puerperium and breastmilk replacement by formula was indicated. Inhibition of lactation was also indicated. Our study provides tools for a multidisciplinary approach to the infection and reinforces the importance of having specialized clinical units in neglected diseases, such as HTLV for counseling, clinical and laboratory follow-up, and providing useful information for patients for self-care and that of their families.
At present, different reports have shown that children reach similar SARS-CoV-2 viral load (VL) levels compared to adults; however, the impact of VL on children remains ambiguous when asymptomatic versus symptomatic cases are compared. Thus, the aim of this study was to assess VL at the time of diagnosis in asymptomatic and symptomatic SARS-CoV-2 infected children. VL analysis was retrospectively carried out from nasopharyngeal swabs on 82 SARS-CoV-2 infected children, from March to October 2020. Of the 82 children, 31 were asymptomatic. Symptomatic patients had significantly higher VL values compared to asymptomatic ones (median=7.41 vs 4.35log10 copies/ml, respectively). Notwithstanding, 8 out of 31 asymptomatic children had high VL levels, overlapping levels observed above the first quartile in the symptomatic group. Analysis of different age groups revealed that median VL values were higher in the symptomatic groups, although there was only a significant difference in children younger than 5 years of age. On the other hand, there was no significant difference between the VL values from the 82 SARS-CoV-2 infected children according to age, sex, underlying disease, symptoms or severity of COVID-19 related disease. This study emphasizes the importance of VL analysis in SARS-CoV-2 infected children, who could contribute to viral spread in the community. This concern could be extended to healthcare workers, who are in contact with children.
There are gaps in understanding the causes and consequences of microcephaly. This paper describes the epidemiological characteristics, clinical presentations, and etiologies of children presenting microcephaly during the Zika outbreak in Argentina. This observational retrospective study conducted in the pediatric hospital of Juan P. Garrahan reviewed the medical records of 40 children presenting microcephaly between March 2017 and November 2019. The majority (60%) were males and born full-term. At first evaluation, microcephaly was defined as congenital (31/40, 77%) and associated with other features (68%) such as seizures, developmental delay, non-progressive chronic encephalopathy, and West Syndrome. It was found manifestations restricted to central nervous system (55%), ocular (8/40, 20%), and acoustic (9/40, 23%) defects, and abnormal neuroimaging findings (31/39, 79%). Non-infectious diseases were the primary cause of isolated microcephaly (21/37, 57%), largely related to genetic diseases (13/21, 62%). Only 3 were children were diagnosed with Congenital Zika infection (3/16, 7.5%).
[This corrects the article DOI: 10.1016/j.eclinm.2021.100959.].
Free radicals play a pivotal role in cell physiology as “gaseous messengers/transmitters.” The radical superoxide (O2·−) and H2O2 molecules are called Reactive Oxygen Species (ROS); nitric oxide and peroxynitrite are named Reactive Nitrogen Species (RNS). All these species constitute an integrated cellular signaling system. ROS and RNS act on cell proliferation, differentiation, migration, and apoptosis, thus becoming potential anticancer drugs. Because of their chemical instability and short half-life, they cannot be used directly. In this work, we describe an original methodology to produce an aqueous mixture of reactive oxygen and nitrogen species (RONS) in which the gas transmitter molecules derived from the dioxygen and nitrogen oxide have sufficient chemical stability, suitable for in vitro studies of cell physiology. This technique is based on the generation of an electron beam obtained through an inverse sputtering electron device. The result is a gaseous mixture of allotropes of both oxygen and nitrogen in trace amounts, later dissolved in an aqueous phase. This mixture is defined either with the acronym OPL® (Ossigeno Poliatomico Liquido) or PLO® (Polyatomic Liquid Oxygen) or OPL-RONS®. We report herein the chemical characterization of PLO. The stability of PLO makes it suitable for in vivo studies and medical applications.
Background: There are limited antiviral options for the treatment of patients with COVID-19. Ivermectin (IVM), a macrocyclic lactone with a wide anti-parasitary spectrum, has shown potent activity against SARS-CoV-2 in vitro. This study aimed at assessing the antiviral effect of IVM on viral load of respiratory secretions and its relationship with drug concentrations in plasma. Methods: Proof-of-concept, pilot, randomized, controlled, outcome-assessor blinded trial to evaluate antiviral activity of high-dose IVM in 45 COVID-19 hospitalized patients randomized in a 2:1 ratio to standard of care plus oral IVM at 0.6 mg/kg/day for 5 days versus standard of care in 4 hospitals in Argentina. Eligible patients were adults with RT-PCR confirmed SARS-CoV-2 infection within 5 days of symptoms onset. The primary endpoint was the difference in viral load in respiratory secretions between baseline and day-5, by quantitative RT-PCR. Concentrations of IVM in plasma were measured. Study registered at ClinicalTrials.gov: NCT04381884. Findings: 45 participants were recruited (30 to IVM and 15 controls) between May 18 and September 9, 2020. There was no difference in viral load reduction between groups but a significant difference was found in patients with higher median plasma IVM levels (72% IQR 59-77) versus untreated controls (42% IQR 31-73) (p = 0.004). Mean ivermectin plasma concentration levels correlated with viral decay rate (r: 0.47, p = 0.02). Adverse events were similar between groups. No differences in clinical evolution at day-7 and day-30 between groups were observed. Interpretation: A concentration dependent antiviral activity of oral high-dose IVM was identified at a dosing regimen that was well tolerated. Large trials with clinical endpoints are necessary to determine the clinical utility of IVM in COVID-19. (C) 2021 The Author(s). Published by Elsevier Ltd.
Real time PCR is one of the major tools for molecular diagnosis, however not always reaches the required sensitivity, especially in detecting early infectious disease. To overcome this problem, nested PCR is commonly performed, since it is highly sensitive, but it is time-consuming, prone to cross-contamination and difficult to standardize. Therefore, we developed a sensitive and specific single-tube nested real-time PCR (STN-real-time PCR) assay and evaluated its clinical utility on early infant HIV-1 diagnosis (EID). The STN-real-time PCR enables the simultaneous amplification of four HIV-1 specific amplicons by the use of an internal and external pair of primers targeting ltr/gag region, and another one corresponding to human albumin as an internal control. Thermocycling had different annealing temperatures to favor the sequential use of each pair of primers, and included an initial touchdown step to broaden specificity and increase sensitivity. Finally, HIV-1 was detected by melting curve analysis. A total of 234 samples collected retrospectively and prospectively from HIV-1 exposed infants aged <18 months were used to evaluate the performance of the assay and compare it with a routine diagnostic nested-multiplex PCR. The developed assay had a limit of detection of 3 copies of HIV-1 DNA per reaction and had a sensitivity of 31 % more than routine diagnostic nested-multiplex PCR when testing samples near delivery. In conclusion, we developed a new assay by turning a conventional nested-PCR into a faster, more sensitive and feasible STN-real-time PCR assay for EID and potentially useful for detection of pathogens with variable genomes and present in low copy numbers.
Coronavirus disease 2019 (COVID-19) is spreading throughout the world. Limited data are available for the dynamics of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) viral load (VL) in immunocompromised pediatric patients. Here, we report the clinical characteristics and the dynamics of SARS-CoV-2 VL of a pediatric patient with acute myeloid leukemia who developed a hyperinflammatory status mimicked MIS-C. The clinical course was characterized by the late onset of fever, GI symptoms, rash, and respiratory distress, including oxygen requirement with sustained VL of SARS-CoV-2 around 7 log(10) RNA copies/mL for 6 weeks. It is important to note that the hyperinflammatory status developed early at the third week of hospitalization-in a context of high VL and immunocompromised status. All these characteristics make this clinical case unique. On the other hand, while many reports have characterized the dynamics of SARS-CoV-2 VL in adults and immunocompetent hosts, it remains unreported in pediatrics-even less in immunosuppressed children.