Connect with us

Health

Evolution of SARS-CoV-2 and antigenic escape in immunocompromised patients

Evolution of SARS-CoV-2 and antigenic escape in immunocompromised patients

 


To the editor:

Peplomer mutations in the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) that result in escape from neutralizing antibodies can occur in immunocompromised patients with prolonged infection.1,2 It is hypothesized that such virus avoidance contributes to the emergence of mutant strains of global concern.3 In the absence of an effective immune response, selective pressure, such as monoclonal antibody therapy, can result in immunologically significant mutations.

To understand the selective pressures that drive the evolution of SARS-CoV-2 in the host, such evolution and intrinsic immune response and extrinsic factors in a convenient sample obtained from 5 patients with B cell deficiency. We investigated the relationship with sex antibody treatment. (For more information on each patient’s medical history, see Supplementary appendixAvailable at NEJM.org with the full text of this letter. All patients had SARS-CoV-2 infection lasting 42 to 302 days after the first positive test (day 0) (Figure S1 and Table S1). Supplementary appendix). This study was approved by the Emory University Institutional Review Board. Informed consent was obtained from patients (patients 2, 4, and 5) who provided whole blood samples for the study.

Neutralizing antibody titers, effector T cell responses, and spike mutations in 5 immunocompromised patients.

Panel A shows the neutralizing antibody titers in patient sera against the reference SARS-CoV-2 pseudovirus Wuhan-Hu-1 at various time points after infection. These titers represent the reciprocal of serum dilution in which up to half of the pseudovirus neutralization was observed. The data show the geometric mean of 2-5 independent experiments. The ? bar shows the standard deviation. The dotted line represents the lower limit of detection. Panels B and C respond to the frequency of CD154, interferon-γ, tumor necrosis factor (TNF), or CD4 + or CD8 + T cells expressing interleukin-2 minus the background, non-naive (ie, effector or). Memory) Shown as a percentage of cells. Stimulation of peripheral blood mononuclear cells with peptide megapools containing 15-mer from the spike open reading frame (ORF) and peptide megapools containing predicted CD8 + T cell epitopes from the ORF containing spikes, respectively. Frequency was determined by flow cytometry in patients 4 and 5, healthy control donors (HC2), and two age-matched patients admitted with Covid-19 (Covid 1 and 2). Panel D shows mutations in the gene encoding the SARS-CoV-2 peplomer compared to the Wuhan-Hu-1 strain, depending on patient ID and time point. Shading indicates the frequency of mutations. For each mutation, the observed mutant nucleotides are listed above the plot and the amino acid mutations are listed below the plot.

Patient 1 had not received antibody treatment and was negative for neutralizing antibodies on day 37. Patients 2 and 3 were treated with the monoclonal antibody bumlanivimab on days 4 and 8, respectively. Their sera strongly neutralized the reference pseudovirus (Wuhan-Hu-1) on days 33 (patient 2) and 55 (patient 3), neutralizing antibodies until days 77 and 83, respectively. Maintained a rise in prices (Figure 1A). Patient 4 received convalescent plasma on days 0 and 104 and failed to detect neutralizing antibodies on days 82 and 101. Patient 5 received convalescent plasma on day 200 and had low neutralizing antibody titers on day 204. Binding of IgG titers to peplomer reflected serum neutralization. Titer (Fig. S2). All but one patient (Patient 2) eventually recovered. Patients 2, 4, and 5 provided peripheral blood samples for immunophenotypic testing. All three of these patients had lower lymphocyte counts and lower frequency of CD19 + B cells (0.19% in patient 2 and 0.01 in patient 4) compared to healthy controls and age-matched inpatients. %, 0.01% for patient 5). 2019 Coronavirus disease patient (Covid-19) (Fig. S3). Patient 3 had clinically low levels of T and B cells. Therefore, the antibody response to reference SARS-CoV-2 in patients 2, 3, and 5 was probably due to extrinsic treatment. SARS-CoV-2 specific effector T cell responses were detectable in patients 4 and 5, and CD8 + T cells secreted antiviral interferon-γ and tumor necrosis factor, but at background levels in patient 2. Was only detectable (Figures 1B and 1C And figs. S4, S5, and S6).

SARS-CoV-2 sequencing (Tables S2 and Figures S7 and S8) revealed the evolution of peaplomers in patients 2 and 3 (Table S2 and Figures S7 and S8).Figure 1D And Figure S9); Both of these patients treated with bumlanivimab were deficient in T cells and B cells. Consensus-level mutations and single nucleotide polymorphisms in the sample were found in the spike receptor binding domain (RBD) and N-terminal domain (NTD), which are regions associated with antigenic escape.Four In contrast, no RBD or NTD mutations were found in patients 1 who did not receive the antibody, or patients 4 and 5 who received convalescent plasma and showed an intact T cell response to SARS-CoV-2. It was.

To assess whether the viruses obtained from patients 1, 2, and 3 were neutralized by autologous serum, we constructed an infectious pseudovirus expressing variant spikes (Figure S10). The sera of patients 1, 2, and 3 did not neutralize the pseudovirus with mutation spikes, even though the sera of patients 2 and 3 neutralized the reference pseudovirus (Fig. S11). Therefore, the spike mutations in patients 2 and 3 conferred neutralization resistance to bumlanivimab.

Our results underscore the potential importance of selective pressure, such as the use of monoclonal antibodies, in promoting the emergence of SARS-CoV-2 escape mutations. These findings highlight the need for a better understanding of the impact of different treatments on immunocompromised patients. Our results also support the findings of previous studies in which patients with B cell deficiency were found to induce effector T cells.Five Results that may indicate an important role for T cells in controlling infection.

Erin M. Scherer, Ph.D., D.Phil.
Ahmed Babi Car, MB, BS
Max W. Adelman, MD
Brent Allman, BA
Autumn key, MS
Jennifer M. Kleingenz, BS
Dr. Rose M. Langschjoen
Phuong-Vi Nguyen, BS
Ivy Oniechi, MS
Jacob D. Sherman, BS
Trevor W. Simon, MS
Hannah Solov
Emory University, Atlanta, Georgia

Jessica Guide, MPH
Emory Healthcare, Atlanta, GA

Jay Barkey, MD
Andrew S. Webster, MD
Emory University, Atlanta, Georgia

Dr. Daniela Weiskov
Institute of Immunology, La Jolla, La Jolla, CA

Dr. Daniel B. Weissman
Yongxian Xu, MD
Jessie J. Wagoner, MD
Katia Koelle, Ph.D.
Nadine Rouphael, MD
Stephanie M. Pouch, MD
Ann Piantadosi, MD, Ph.D.
Emory University, Atlanta, Georgia

Supported by contract from (75D30121C10084, Dr. Babiker, Waggoner, Koelle, and Piantadosi under BAA ERR 20-15-2997). Centers for Disease Control and PreventionWith a grant from the National Institutes of Health (5UM1AI148576-02, to Dr. Rouphael and Dr. Scherer) (NIH (National Institutes of Health)); According to the Simons Foundation Researcher Award in Mathematical Modeling of Living Systems (to Dr. Weissman).By Pediatric Research Alliance Center for Pediatric Infectious Diseases and Vaccines (To Dr. Piantadoshi) And Atlanta Children’s Healthcare and Emory Woodruff Health Science Center Covid-19 Emergency Research Engagement (CURE) Center, O. Support from the Wayne Rollins Foundation and the William Randolph Hearst Foundation (to Dr. Piantadosi and Dr. Wagoner).The research reported in this letter was supported by a grant from (K08AI139348, to Dr. Piantadoshi). National Institute of Infectious Diseases of NIH (National Institutes of Health) And from (75N9301900065, to Dr. Weiskopf) NIH (National Institutes of Health).. The La Jolla Institute for Immunology has applied for patent protection for various aspects of the T cell epitope and vaccine design work.

Disclosure form The one provided by the author is available on NEJM.org with the full text of this letter.

The views expressed in this letter are those of the author and do not necessarily represent the official views of the National Institutes of Health.

This letter was published on June 8, 2022 at NEJM.org.

  1. 1.1. Choi B, Choudhary MC, Regan J,other. Persistence and evolution of SARS-CoV-2 in immunocompromised hosts. N Engl J Med 2020383:2291――――2293..

  2. 2.2. Greenie AJ, Loes AN, Crawford KHD,other. Comprehensive mapping of mutations in the SARS-CoV-2 receptor binding domain that affect recognition by polyclonal human plasma antibodies.Cell host microorganism 202129 (3):463――――476.e6..

  3. 3.3. S, Karim F, Funny G,other. Long-term SARS-CoV-2 infection during advanced HIV disease develops widespread immune avoidance.Cell host microorganism 202230 (2):154――――162.e5..

  4. 4.4. McCarthy KR, Renick LJ, Namburi S,other. Relapsed deletion of SARS-CoV-2 spike glycoprotein promotes antibody escape.Chemistry 2021371:1139――――1142..

  5. 5.5. Gaitzsch E, Passerini V, Khatamzas E,other. COVID-19 in patients receiving CD20 depletion immunochemotherapy for B-cell lymphoma.Hemasphere 20215 (7):e603――――e603..

Sources

1/ https://Google.com/

2/ https://www.nejm.org/doi/full/10.1056/NEJMc2202861

The mention sources can contact us to remove/changing this article

What Are The Main Benefits Of Comparing Car Insurance Quotes Online

LOS ANGELES, CA / ACCESSWIRE / June 24, 2020, / Compare-autoinsurance.Org has launched a new blog post that presents the main benefits of comparing multiple car insurance quotes. For more info and free online quotes, please visit https://compare-autoinsurance.Org/the-advantages-of-comparing-prices-with-car-insurance-quotes-online/ The modern society has numerous technological advantages. One important advantage is the speed at which information is sent and received. With the help of the internet, the shopping habits of many persons have drastically changed. The car insurance industry hasn't remained untouched by these changes. On the internet, drivers can compare insurance prices and find out which sellers have the best offers. View photos The advantages of comparing online car insurance quotes are the following: Online quotes can be obtained from anywhere and at any time. Unlike physical insurance agencies, websites don't have a specific schedule and they are available at any time. Drivers that have busy working schedules, can compare quotes from anywhere and at any time, even at midnight. Multiple choices. Almost all insurance providers, no matter if they are well-known brands or just local insurers, have an online presence. Online quotes will allow policyholders the chance to discover multiple insurance companies and check their prices. Drivers are no longer required to get quotes from just a few known insurance companies. Also, local and regional insurers can provide lower insurance rates for the same services. Accurate insurance estimates. Online quotes can only be accurate if the customers provide accurate and real info about their car models and driving history. Lying about past driving incidents can make the price estimates to be lower, but when dealing with an insurance company lying to them is useless. Usually, insurance companies will do research about a potential customer before granting him coverage. Online quotes can be sorted easily. Although drivers are recommended to not choose a policy just based on its price, drivers can easily sort quotes by insurance price. Using brokerage websites will allow drivers to get quotes from multiple insurers, thus making the comparison faster and easier. For additional info, money-saving tips, and free car insurance quotes, visit https://compare-autoinsurance.Org/ Compare-autoinsurance.Org is an online provider of life, home, health, and auto insurance quotes. This website is unique because it does not simply stick to one kind of insurance provider, but brings the clients the best deals from many different online insurance carriers. In this way, clients have access to offers from multiple carriers all in one place: this website. On this site, customers have access to quotes for insurance plans from various agencies, such as local or nationwide agencies, brand names insurance companies, etc. "Online quotes can easily help drivers obtain better car insurance deals. All they have to do is to complete an online form with accurate and real info, then compare prices", said Russell Rabichev, Marketing Director of Internet Marketing Company. CONTACT: Company Name: Internet Marketing CompanyPerson for contact Name: Gurgu CPhone Number: (818) 359-3898Email: [email protected]: https://compare-autoinsurance.Org/ SOURCE: Compare-autoinsurance.Org View source version on accesswire.Com:https://www.Accesswire.Com/595055/What-Are-The-Main-Benefits-Of-Comparing-Car-Insurance-Quotes-Online View photos

ExBUlletin

to request, modification Contact us at Here or [email protected]