Keyword search (4,163 papers available)

"Vaccine" Keyword-tagged Publications:

Title Authors PubMed ID
1 Editorial: Data-driven vaccine design for microbial-associated diseases Selvaraj G; Kaliamurthi S; Wei D; 41624882
CHEMBIOCHEM
2 Understanding COVID-19 vaccination disparity among Black adults in North America: A two-study motivational approach Fang X; Holding AC; Audet ÉC; Thai H; Koestner R; 41043306
PSYCHOLOGY
3 Comparative Analysis of Preferences and Willingness to Pay for COVID-19 Vaccine Among Individuals With and Without Chronic Diseases: A Discrete Choice Experiment Approach Begum A; Uddin MA; Ahsan SM; Islam MA; 40687549
CONCORDIA
4 Addressing vaccine hesitancy: A systematic review comparing the efficacy of motivational versus educational interventions on vaccination uptake Labbé S; Bacon SL; Wu N; Ribeiro PAB; Boucher VG; Stojanovic J; Voisard B; Deslauriers F; Tremblay N; Hébert-Auger L; Lavoie KL; 40167044
HKAP
5 Strategies and resources used by public health units to encourage COVID-19 vaccination among priority groups: a behavioural science-informed review of three urban centres in Canada Langmuir T; Wilson M; McCleary N; Patey AM; Mekki K; Ghazal H; Estey Noad E; Buchan J; Dubey V; Galley J; Gibson E; Fontaine G; Smith M; Alghamyan A; Thompson K; Crawshaw J; Grimshaw JM; Arnason T; Brehaut J; Michie S; Brouwers M; Presseau J; 39891139
PSYCHOLOGY
6 Comparison of parent-reported motivators of non-vaccination for children 5-11 years old in Australia and Canada: Results of the iCARE study Deslauriers F; Hoq M; Kaufman J; Enticott J; Lavoie KL; Bacon SL; Boyle JA; Danchin M; 38880694
HKAP
7 Editorial: Computational systems immunovirology Zarei Ghobadi M; Teymoori-Rad M; Selvaraj G; Wei DQ; 37475870
CHEMBIOCHEM
8 Vaccine mistrust among Black individuals in Canada: The major role of health literacy, conspiracy theories, and racial discrimination in the healthcare system Cénat JM; Moshirian Farahi SMM; Bakombo SM; Dalexis RD; Pongou R; Caulley L; Yaya S; Etowa J; Venkatesh V; 37185858
CONCORDIA
9 Proteomics-based vaccine targets annotation and design of subunit and mRNA-based vaccines for Monkeypox virus (MPXV) against the recent outbreak Jin Y; Fayyaz A; Liaqat A; Khan A; Alshammari A; Wang Y; Gu RX; Wei DQ; 37116237
CONCORDIA
10 Prevalence and Motivators of Getting a COVID-19 Booster Vaccine in Canada: Results from the iCARE Study Léger C; Deslauriers F; Gosselin Boucher V; Phillips M; Bacon SL; Lavoie KL; 36851169
HKAP
11 A Systematic Review on Vaccine Hesitancy in Black Communities in Canada: Critical Issues and Research Failures Cénat JM; Noorishad PG; Bakombo SM; Onesi O; Mesbahi A; Darius WP; Caulley L; Yaya S; Chomienne MH; Etowa J; Venkatesh V; Dalexis RD; Pongou R; Labelle PR; 36423032
PSYCHOLOGY
12 Ending the Pandemic: How Behavioural Science Can Help Optimize Global COVID-19 Vaccine Uptake Vallis M; Bacon S; Corace K; Joyal-Desmarais K; Sheinfeld Gorin S; Paduano S; Presseau J; Rash J; Mengistu Yohannes A; Lavoie K; 35062668
HKAP
13 Vaccine hesitancy: evidence from an adverse events following immunization database, and the role of cognitive biases Azarpanah H; Farhadloo M; Vahidov R; Pilote L; 34530804
JMSB
14 Vaccination-hesitancy and vaccination-inequality as challenges in Pakistan's COVID-19 response Perveen S; Akram M; Nasar A; Arshad-Ayaz A; Naseem A; 34217150
EDUCATION
15 Global Trends and Correlates of COVID-19 Vaccination Hesitancy: Findings from the iCARE Study Stojanovic J; Boucher VG; Gagne M; Gupta S; Joyal-Desmarais K; Paduano S; Aburub AS; Sheinfeld Gorin SN; Kassianos AP; Ribeiro PAB; Bacon SL; Lavoie KL; 34204379
HKAP
16 Are the Allergic Reactions of COVID-19 Vaccines Caused by mRNA Constructs or Nanocarriers? Immunological Insights Selvaraj G; Kaliamurthi S; Peslherbe GH; Wei DQ; 34021862
CHEMBIOCHEM

 

Title:Proteomics-based vaccine targets annotation and design of subunit and mRNA-based vaccines for Monkeypox virus (MPXV) against the recent outbreak
Authors:Jin YFayyaz ALiaqat AKhan AAlshammari AWang YGu RXWei DQ
Link:https://pubmed.ncbi.nlm.nih.gov/37116237/
DOI:10.1016/j.compbiomed.2023.106893
Publication:Computers in biology and medicine
Keywords:Immune simulationMonkeypoxMulti-epitopesVaccinesmRNA
PMID:37116237 Category: Date Added:2023-04-28
Dept Affiliation: CONCORDIA
1 College of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, 200240, PR China.
2 Fatima Jinnah Medical University, Lahore, Punjab, Pakistan.
3 King Edward Medical University, Lahore, Punjab, Pakistan.
4 College of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, 200240, PR China; Zhongjing Research and Industrialization Institute of Chinese Medicine, Zhongguancun Scientific Park, Meixi, Nanyang, Henan, 473006, PR China.
5 Department of Pharmacology and Toxicology, College of Pharmacy, King Saud University, Post Box 2455, Riyadh, 11451, Saudi Arabia. Electronic address: Abdalshammari@ksu.edu.sa.
6 Engineering Research Center of Cell & Therapeutic Antibody, School of Pharmacy, Shanghai Jiao Tong University, Shanghai, 200240, PR China. Electronic address: wangyanjing@sjtu.edu.cn.
7 College of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, 200240, PR China. Electronic address: mircial@sjtu.edu.cn.
8 College of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, 200240, PR China; Zhongjing Research and Industrialization Institute of Chinese Medicine, Zhongguancun Scientific Park, Meixi, Nanyang, Henan, 473006, PR China; Peng Cheng Laboratory, Vanke Cloud City Phase I Building 8, Xili Street, Nanshan District, Shenzhen, Guangdong, 518055, PR China; Centre for Research in Molecular Modeling, Concordia University, 7141 Sherbrooke Street West, Montréal, Québec, H4B 1R6, Canada. Electronic address: dqwei@sjtu.edu.cn.

Description:

Monkeypox Virus (MPXV) is a growing public health threat with increasing cases and fatalities globally. To date, no specific vaccine or small molecule therapeutic choices are available for the treatment of MPXV disease. In this work, we employed proteomics and structural vaccinology approaches to design mRNA and multi-epitopes-based vaccines (MVC) against MPXV. We first identified ten proteins from the whole proteome of MPXV as potential vaccine targets. We then employed structural vaccinology approaches to map potential epitopes of these proteins for B cell, cytotoxic T lymphocytes (CTL), and Helper T lymphocytes (HTL). Finally, 9 CTL, 6 B cell, and 5 HTL epitopes were joined together through suitable linkers to construct MVC (multi-epitope vaccine) and mRNA-based vaccines. Molecular docking, binding free energy calculation, and in silico cloning revealed robust interaction of the designed MVC with toll-like receptor 2 (TLR2) and efficient expression in E. Coli K12 strain. The immune simulation results revealed that the antigen titer after the injection reached to the maximum level on the 5th day and an abrupt decline in the antigen titer was observed upon the production of IgM, IgG and IgM + IgG, dendritic cells, IFN-gamma, and IL (interleukins), which suggested the potential of our designed vaccine candidate for inducing an immune response against MPXV.





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