Exploring the Relationship Between Comorbidities and Prolonged Viral Shedding in COVID\u201019: A Cycle Threshold Value\u2010Based Investigation
PurposeWe aim to investigate which of the comorbidities is associated with prolonged viral RNA shedding among hospitalized patients with COVID‐19 illness.Patients and MethodsWe conducted a retrospective cohort study of COVID‐19 patients in Hasan Sadikin General Hospital, Bandung, from March 2020 to April 2022. Data of ORF1b Ct value measurements were collected from the 1st week to the 5th week and presented in a line plot to see the changes in the Ct values across the course of the disease stratified to each comorbidity.ResultsWe included a total of 279 patients with a median age of 55‐year‐old, and male patients were the majority included. However, 68% of the original cohort was excluded due to having only a single Ct result. Based on the ORF1b Ct value data, most patients within each comorbidity group demonstrated increasing Ct values from Week 1 (n = 135) to Week 5 (n = 34). However, we found that the ORF1b Ct value in the HIV–AIDS (n = 12) and the autoimmune (n = 12) groups peaked and gradually declined. In the HIV–AIDS ORF1b, Ct values declined after 2 weeks (n = 2) with a statistically significant difference compared to patients without comorbidity (n = 65).ConclusionThis study shows that COVID‐19 patients with HIV–AIDS have prolonged viral shedding compared to patients with other comorbidities.
- Discussion
8
- 10.1016/j.jinf.2020.12.030
- Jan 3, 2021
- Journal of Infection
Insight into the reason of prolonged viral RNA shedding in patients with COVID-19 infection
- Research Article
19
- 10.1016/j.clim.2020.108611
- Oct 14, 2020
- Clinical Immunology
Proinflammatory cytokines are associated with prolonged viral RNA shedding in COVID-19 patients
- Research Article
188
- 10.1093/cid/ciaa1616
- Oct 26, 2020
- Clinical Infectious Diseases: An Official Publication of the Infectious Diseases Society of America
BackgroundRepeated coronavirus disease 2019 (COVID-19) molecular testing can lead to positive test results after negative results and to multiple positive results over time. The association between positive test results and infectious virus is important to quantify.MethodsA 2-month cohort of retrospective data and consecutively collected specimens from patients with COVID-19 or patients under investigation were used to understand the correlation between prolonged viral RNA positive test results, cycle threshold (Ct) values and growth of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) in cell culture. Whole-genome sequencing was used to confirm virus genotype in patients with prolonged viral RNA detection. Droplet digital polymerase chain reaction was used to assess the rate of false-negative COVID-19 diagnostic test results.ResultsIn 2 months, 29 686 specimens were tested and 2194 patients underwent repeated testing. Virus recovery in cell culture was noted in specimens with a mean Ct value of 18.8 (3.4) for SARS-CoV-2 target genes. Prolonged viral RNA shedding was associated with positive virus growth in culture in specimens collected up to 21 days after the first positive result but mostly in individuals symptomatic at the time of sample collection. Whole-genome sequencing provided evidence the same virus was carried over time. Positive test results following negative results had Ct values >29.5 and were not associated with virus culture. Droplet digital polymerase chain reaction results were positive in 5.6% of negative specimens collected from patients with confirmed or clinically suspected COVID-19.ConclusionsLow Ct values in SARS-CoV-2 diagnostic tests were associated with virus growth in cell culture. Symptomatic patients with prolonged viral RNA shedding can also be infectious.
- Research Article
63
- 10.3390/jcm9092924
- Sep 10, 2020
- Journal of Clinical Medicine
Background: The coronavirus disease (COVID-19) pandemic, caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), has become a major global public health issue. SARS-CoV-2 infection is confirmed by the detection of viral RNA using reverse transcription polymerase chain reaction (RT-PCR). Prolonged viral shedding has been reported in patients with SARS-CoV-2 infection, but the presence of viral RNA does not always correlate with infectivity. Therefore, the present study aimed to confirm the presence of viable virus in asymptomatic or mildly symptomatic patients in the later phase of the disease, more than two weeks after diagnosis. Method: Asymptomatic or mildly symptomatic COVID-19 patients who had been diagnosed with the disease at least two weeks previously and admitted to a community treatment center (CTC) from 15 March to 10 April 2020 were enrolled in this study. Nasopharyngeal and salivary swab specimens were collected from each patient. Using these specimens, RT-PCR assay and viral culture were performed. Result: In total, 48 patients were enrolled in this study. There were no significant differences in baseline characteristics between the asymptomatic and mildly symptomatic patient groups. RT-PCR assay and viral culture of SARS-CoV-2 were performed using nasopharyngeal and salivary swabs. The results of RT-PCR performed using salivary swab specimens, in terms of cycle threshold (Ct) values, were similar to those of RT-PCR using nasopharyngeal swab specimens. In addition, no viable virus could be cultured from swab specimens collected from the late-phase COVID-19 patients with prolonged viral RNA shedding. Conclusions: In conclusion, our study suggests that even if viral shedding is sustained in asymptomatic or mildly symptomatic patients with later phase of COVID-19, it can be expected that the transmission risk of the virus is low. In addition, saliva can be used as a reliable specimen for the diagnosis of SARS-CoV-2 infection.
- Discussion
67
- 10.1111/bjh.16981
- Jul 16, 2020
- British Journal of Haematology
We read with deep interest the report by Tepasse et al .1 concerning two cases of persisting viraemia in coronavirus disease 2019 (COVID‐19) with fatal outcome. Whilst severe acute respiratory syndrome coronavirus‐2 (SARS‐CoV‐2) infection in the early stages of infection has been well described, less is known about the development of antibodies to SARS‐CoV‐2, clearance of RNA shedding and clinical outcome of COVID‐19. In addition, the impact of immunosuppressive treatments on disease severity is not yet established, but several reports suggest a more prolonged disease in patients under rituximab, a B‐cell depleting drug.2-4 Here we report a case of persisting COVID‐19, following combined treatment with rituximab and bendamustine for lymphoma, which immediately recovered after convalescent plasma transfusion. We think that this case raises promising perspectives for immunocompromised patients with persisting COVID‐19.
- Research Article
6
- 10.1007/s11427-020-1921-5
- Apr 28, 2021
- Science China. Life sciences
Prolonged viral RNA shedding and recurrence of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) in coronavirus disease 2019 (COVID-19) patients have been reported. However, the clinical outcome and pathogenesis remain unclear. In this study, we recruited 43 laboratory-confirmed COVID-19 patients. We found that prolonged viral RNA shedding or recurrence mainly occurred in severe/critical patients (P<0.05). The average viral shedding time in severe/critical patients was more than 50 days, and up to 100 days in some patients, after symptom onset. However, chest computed tomography gradually improved and complete absorption occurred when SARS-CoV-2 RT-PCR was still positive, but specific antibodies appeared. Furthermore, the viral shedding time significantly decreased when the A1,430G or C12,473T mutation occurred (P<0.01 and FDR<0.01) and increased when G227A occurred (P<0.05 and FDR<0.05). High IL1R1, IL1R2, and TNFRSF21 expression in the host positively correlated with viral shedding time (P<0.05 and false discovery rate <0.05). Prolonged viral RNA shedding often occurs but may not increase disease damage. Prolonged viral RNA shedding is associated with viral mutations and host factors.Supporting InformationThe supporting information is available online at 10.1007/s11427-020-1921-5. The supporting materials are published as submitted, without typesetting or editing. The responsibility for scientific accuracy and content remains entirely with the authors.
- Research Article
93
- 10.1016/j.ijid.2020.06.091
- Jun 30, 2020
- International journal of infectious diseases : IJID : official publication of the International Society for Infectious Diseases
Associations of clinical characteristics and treatment regimens with the duration of viral RNA shedding in patients with COVID-19
- Research Article
33
- 10.1007/s12020-020-02465-4
- Jan 1, 2020
- Endocrine
PurposeThe length of time a critically ill coronavirus disease 2019 (COVID-19) patient remains infectious and should therefore be isolated remains unknown. This prospective study was undertaken in critically ill patients to evaluate the reliability of single negative real-time polymerase chain reaction (RT-PCR) in lower tracheal aspirates (LTA) in predicting a second negative test and to analyze clinical factors potentially influencing the viral shedding.MethodsFrom April 9, 2020 onwards, intubated COVID-19 patients treated in the intensive care unit were systematically evaluated for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) by RT-PCR of nasopharyngeal swabs and LTA. The time to negativity was defined as the time between the onset of symptoms and the viral clearance in LTA. In order to identify risk factors for prolonged viral shedding, we used univariate and multivariate Cox proportional hazards models.ResultsForty-eight intubated SARS-CoV-2 patients were enrolled. Overall, we observed that the association of the first negative RT-PCR with a second negative result was 96.7%. Median viral shedding was 25 (IQR: 21.5–28) days since symptoms’ onset. In the univariate Cox model analysis, type 2 diabetes mellitus was associated with a prolonged viral RNA shedding (hazard ratio [HR]: 0.41, 95% CI: 0.06–3.11, p = 0.04). In the multivariate Cox model analysis, type 2 diabetes was associated with a prolonged viral RNA shedding (HR: 0.31, 95% CI: 0.11–0.89, p = 0.029).ConclusionIntubated patients with type 2 diabetes mellitus may have prolonged SARS-CoV-2 shedding. In critically ill COVID-19 patients, one negative LTA should be sufficient to assess and exclude infectivity.
- Research Article
27
- 10.1016/j.chest.2020.07.027
- Jul 21, 2020
- Chest
Novel Temperature Trajectory Subphenotypes in COVID-19
- Research Article
13
- 10.1002/jcla.23923
- Aug 13, 2021
- Journal of Clinical Laboratory Analysis
BackgroundThe dynamic alteration and comparative study of severe acute respiratory syndrome coronavirus 2 (SARS‐CoV‐2) RNA shedding pattern during treatment are limited. This study explores the potential risk factors influencing prolonged viral shedding in COVID‐19.MethodsA total of 126 COVID‐19 patients were enrolled in this retrospective longitudinal study. A multivariate logistic regression analysis was carried out to estimate the potential risk factors.Results38.1% (48/126) cases presented prolonged respiratory tract viral shedding, and 30 (23.8%) cases presented prolonged rectal swab viral shedding. Obesity (OR, 3.31; 95% CI, 1.08–10.09), positive rectal swab (OR, 3.43; 95% CI, 1.53–7.7), treatment by lopinavir/ritonavir with chloroquine phosphate (OR, 2.5; 95% CI, 1.04–6.03), the interval from onset to antiviral treatment more than 7 days (OR, 2.26; 95% CI, 1.04–4.93), lower CD4+ T cell (OR, 0.92; 95% CI, 0.86–0.99) and higher NK cells (OR, 1.11; 95% CI, 1.02–1.20) were significantly associated with prolonged respiratory tract viral shedding. CD3−CD56+ NK cells (OR, 0.87; 95% CI, 0.76–0.99) were related with prolonged fecal shedding.ConclusionsObesity, delayed antiviral treatment, and positive SARS‐CoV‐2 for stool were independent risk factors for prolonged SARS‐CoV‐2 RNA shedding of the respiratory tract. A combination of LPV/r and abidol as the initial antiviral regimen was effective in shortening the duration of viral shedding compared with LPV/r combined with chloroquine phosphate. CD4+ T cell and NK cells were significantly associated with prolonged viral shedding, and further studies are to be warranted to determine the mechanism of immunomodulatory response in virus clearance.
- Research Article
18
- 10.1038/s41421-022-00441-y
- Jul 25, 2022
- Cell Discovery
Little is known regarding why a subset of COVID-19 patients exhibited prolonged positivity of SARS-CoV-2 infection. Here, we found that patients with long viral RNA course (LC) exhibited prolonged high-level IgG antibodies and higher regulatory T (Treg) cell counts compared to those with short viral RNA course (SC) in terms of viral load. Longitudinal proteomics and metabolomics analyses of the patient sera uncovered that prolonged viral RNA shedding was associated with inhibition of the liver X receptor/retinoid X receptor (LXR/RXR) pathway, substantial suppression of diverse metabolites, activation of the complement system, suppressed cell migration, and enhanced viral replication. Furthermore, a ten-molecule learning model was established which could potentially predict viral RNA shedding period. In summary, this study uncovered enhanced inflammation and suppressed adaptive immunity in COVID-19 patients with prolonged viral RNA shedding, and proposed a multi-omic classifier for viral RNA shedding prediction.
- Abstract
- 10.1182/blood-2022-166433
- Nov 15, 2022
- Blood
The Duration of Coronavirus Disease 2019 (COVID-19) Clearance in Patients with Hematological Malignancies Can be Stratified By the Number of Chemotherapy Treatment and Severity of COVID-19
- Research Article
16
- 10.1007/s11596-021-2434-y
- Jan 1, 2021
- Current Medical Science
ObjectiveTo study data about SARS-CoV-2 virus shedding and clarify the risk factors for prolonged virus shedding.MethodsData were retrospectively collected from adults hospitalized with laboratory-confirmed coronavirus disease-19 (COVID-19) in Wuhan Union Hospital. We compared clinical features among patients with prolonged (a positive SARS-CoV-2 RNA on day 23 after illness onset) and short virus shedding and evaluated risk factors associated with prolonged virus shedding by multivariate regression analysis.ResultsAmong 238 patients, the median age was 55.5 years, 57.1% were female, 92.9% (221/238) were administered with arbidol, 58.4% (139/238) were given arbidol in combination with interferon. The median duration of SARS-CoV-2 virus shedding was 23 days (IQR, 17.8–30 days) with a longest one of 51 days. The patients with prolonged virus shedding had higher value of D-dimer (P=0.002), IL-6 (P<0.001), CRP (P=0.005) and more lobes lung lesion (P=0.014) on admission, as well as older age (P=0.017) and more patients with hypertension (P=0.044) than in those the virus shedding less than 23 days. Multivariate regression analysis revealed that prolonged viral shedding was significantly associated with initiation arbidol >8 days after symptom onset [OR: 2.447, 95% CI (1.351–4.431)], ≥3 days from onset of symptoms to first medical visitation [OR: 1.880, 95% CI (1.035–3.416)], illness onset before Jan. 31, 2020 [OR: 3.289, 95% CI (1.474–7.337)]. Arbidol in combination with interferon was also significantly associated with shorter virus shedding [OR: 0.363, 95% CI (0.191–0.690)].ConclusionDuration of SARS-CoV-2 virus shedding was long. Early initiation of arbidol and arbidol in combination with interferon as well as consulting doctor timely after illness onset were helpful for SARS-CoV-2 clearance.Electronic Supplementary MaterialSupplementary material is available for this article at 10.1007/s11596-021-2434-y and is accessible for authorized users.
- Research Article
28
- 10.1093/cid/ciz939
- Sep 27, 2019
- Clinical Infectious Diseases
BackgroundWe studied the effect of age, baseline viral load, vaccination status, antiviral therapy, and emergence of drug resistance on viral shedding in children infected with influenza A or B virus.MethodsSamples from children (aged ≤13 years) enrolled during the 7 years of the prospective Influenza Resistance Information Study were analyzed using polymerase chain reaction to determine the influenza virus (sub-)type, viral load, and resistance mutations. Disease severity was assessed; clinical symptoms were recorded. The association of age with viral load and viral clearance was examined by determining the area under the curve for viral RNA shedding using logistic regression and Kaplan-Meier analyses.ResultsA total of 2131 children infected with influenza (683, A/H1N1pdm09; 825, A/H3N2; 623, influenza B) were investigated. Age did not affect the mean baseline viral load. Children aged 1−5 years had prolonged viral RNA shedding (±1–2 days) compared with older children and up to 1.2-fold higher total viral burden. Besides, in older age (odds ratio [OR], 1.08; confidence interval [CI], 1.05–1.12), prior vaccination status (OR, 1.72; CI, 1.22–2.43) and antiviral treatment (OR, 1.74; CI, 1.43–2.12) increased the rate of viral clearance. Resistance mutations were detected in 49 children infected with influenza A virus (34, A/H1N1pdm09; 15, A/H3N2) treated with oseltamivir, most of whom were aged <5 years (n = 39).ConclusionsChildren aged 1−5 years had a higher total viral burden with prolonged virus shedding and had an increased risk of acquiring resistance mutations following antiviral treatment.Clinical Trials RegistrationNCT00884117.
- Research Article
5
- 10.1016/j.ajodo.2020.08.010
- Sep 21, 2020
- American Journal of Orthodontics and Dentofacial Orthopedics
COVID-19: What do we know?