Marika Vitikainen
Overview
Explore the profile of Marika Vitikainen including associated specialties, affiliations and a list of published articles.
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Articles
16
Citations
417
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0
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Recent Articles
1.
Gonzalez-Hernandez M, Kaiser F, Steffen I, Ciurkiewicz M, van Amerongen G, Tchelet R, et al.
Front Immunol
. 2023 Jun;
14:1204834.
PMID: 37359531
Introduction: The emergency use of vaccines has been the most efficient way to control the coronavirus disease 19 (COVID-19) pandemic. However, the emergence of severe acute respiratory syndrome coronavirus 2...
2.
Nechooshtan R, Ehrlich S, Vitikainen M, Makovitzki A, Dor E, Marcus H, et al.
Vaccines (Basel)
. 2022 Dec;
10(12).
PMID: 36560529
SARS-CoV-2 is evolving with increased transmission, host range, pathogenicity, and virulence. The original and mutant viruses escape host innate (Interferon) immunity and adaptive (Antibody) immunity, emphasizing unmet needs for high-yield,...
3.
Ramot Y, Kronfeld N, Ophir Y, Ezov N, Friedman S, Saloheimo M, et al.
Toxicol Pathol
. 2022 May;
50(3):294-307.
PMID: 35514116
Coronavirus disease 2019 (COVID-19) has caused the ongoing COVID-19 pandemic and there is a growing demand for safe and effective vaccines. The thermophilic filamentous fungal host, C1-cell, can be utilized...
4.
Lazo L, Bequet-Romero M, Lemos G, Musacchio A, Cabrales A, Bruno A, et al.
Vaccine
. 2022 Jan;
40(8):1162-1169.
PMID: 35078661
Since the beginning of the COVID-19 pandemic, the development of effective vaccines against this pathogen has been a priority for the scientific community. Several strategies have been developed including vaccines...
5.
Espinosa L, Ramos Y, Andujar I, Torres E, Cabrera G, Martin A, et al.
Anal Bioanal Chem
. 2021 Nov;
413(30):7559-7585.
PMID: 34739558
Subunit vaccines based on the receptor-binding domain (RBD) of the spike protein of SARS-CoV-2 provide one of the most promising strategies to fight the COVID-19 pandemic. The detailed characterization of...
6.
Aebischer A, Wernike K, Konig P, Franzke K, Wichgers Schreur P, Kortekaas J, et al.
Vaccines (Basel)
. 2021 Jul;
9(6).
PMID: 34203630
Emerging infectious diseases represent an increasing threat to human and animal health. Therefore, safe and effective vaccines that could be available within a short time frame after an outbreak are...
7.
Rantasalo A, Vitikainen M, Paasikallio T, Jantti J, Landowski C, Mojzita D
Sci Rep
. 2019 Mar;
9(1):5032.
PMID: 30902998
Trichoderma reesei is an established protein production host with high natural capacity to secrete enzymes. The lack of efficient genome engineering approaches and absence of robust constitutive gene expression systems...
8.
Fang W, Nonappa , Vitikainen M, Mohammadi P, Koskela S, Soikkeli M, et al.
Colloids Surf B Biointerfaces
. 2018 Aug;
171:590-596.
PMID: 30098537
Liquid-liquid phase transition known as coacervation of resilin-like-peptide fusion proteins containing different terminal domains were investigated. Two different modular proteins were designed and produced and their behavior were compared to...
9.
Fang W, Paananen A, Vitikainen M, Koskela S, Westerholm-Parvinen A, Joensuu J, et al.
Biomacromolecules
. 2017 Apr;
18(6):1866-1873.
PMID: 28440631
We investigated how a genetically engineered resilin fusion protein modifies cellulose surfaces. We characterized the pH-responsive behavior of a resilin-like polypeptide (RLP) having terminal cellulose binding modules (CBM) and showed...
10.
Hakkinen M, Valkonen M, Westerholm-Parvinen A, Aro N, Arvas M, Vitikainen M, et al.
Biotechnol Biofuels
. 2014 Jan;
7(1):14.
PMID: 24472375
Background: The soft rot ascomycetal fungus Trichoderma reesei is utilized for industrial production of secreted enzymes, especially lignocellulose degrading enzymes. T. reesei uses several different enzymes for the degradation of...