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Armamentarium of Cryoprotectants in Peptide Vaccines: Mechanistic Insight, Challenges, Opportunities and Future Prospects

Vaccines are designed to leverage the immune system and produce long-lasting protection against specific diseases. Peptide vaccines are regarded as safe and effective way of circumventing problems such as mild allergic reactions associated with conventional vaccines. The biggest challenges associate...

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Autores principales: Dalvi, Harshita, Bhat, Aditi, Iyer, Akshaya, Sainaga Jyothi, Vaskuri G. S., Jain, Harsha, Srivastava, Saurabh, Madan, Jitender
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Netherlands 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8524217/
https://www.ncbi.nlm.nih.gov/pubmed/34690621
http://dx.doi.org/10.1007/s10989-021-10303-y
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author Dalvi, Harshita
Bhat, Aditi
Iyer, Akshaya
Sainaga Jyothi, Vaskuri G. S.
Jain, Harsha
Srivastava, Saurabh
Madan, Jitender
author_facet Dalvi, Harshita
Bhat, Aditi
Iyer, Akshaya
Sainaga Jyothi, Vaskuri G. S.
Jain, Harsha
Srivastava, Saurabh
Madan, Jitender
author_sort Dalvi, Harshita
collection PubMed
description Vaccines are designed to leverage the immune system and produce long-lasting protection against specific diseases. Peptide vaccines are regarded as safe and effective way of circumventing problems such as mild allergic reactions associated with conventional vaccines. The biggest challenges associated with formulation of peptide vaccines are stability issues and conformational changes which lead to destruction of their activity when exposed to lyophilization process that may act as stressors. Lyophilization process is aimed at removal of water which involves freezing, primary drying and secondary drying. To safeguard the peptide molecules from such stresses, cryoprotectants are used to offer them viability and structural stability. This paper is an attempt to understand the physicochemical properties of peptide vaccines, mechanism of cryoprotection under the shed of water replacement, water substitution theory and cation-pi interaction theory of amino acids which aims at shielding the peptide from external environment by formation of hydrogen bonds, covalent bonds or cation-pi interaction between cryoprotectant and peptide followed by selection criteria of cryoprotectants and their utility in peptide vaccines development along with challenges and opportunities. GRAPHIC ABSTRACT: [Image: see text]
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spelling pubmed-85242172021-10-20 Armamentarium of Cryoprotectants in Peptide Vaccines: Mechanistic Insight, Challenges, Opportunities and Future Prospects Dalvi, Harshita Bhat, Aditi Iyer, Akshaya Sainaga Jyothi, Vaskuri G. S. Jain, Harsha Srivastava, Saurabh Madan, Jitender Int J Pept Res Ther Article Vaccines are designed to leverage the immune system and produce long-lasting protection against specific diseases. Peptide vaccines are regarded as safe and effective way of circumventing problems such as mild allergic reactions associated with conventional vaccines. The biggest challenges associated with formulation of peptide vaccines are stability issues and conformational changes which lead to destruction of their activity when exposed to lyophilization process that may act as stressors. Lyophilization process is aimed at removal of water which involves freezing, primary drying and secondary drying. To safeguard the peptide molecules from such stresses, cryoprotectants are used to offer them viability and structural stability. This paper is an attempt to understand the physicochemical properties of peptide vaccines, mechanism of cryoprotection under the shed of water replacement, water substitution theory and cation-pi interaction theory of amino acids which aims at shielding the peptide from external environment by formation of hydrogen bonds, covalent bonds or cation-pi interaction between cryoprotectant and peptide followed by selection criteria of cryoprotectants and their utility in peptide vaccines development along with challenges and opportunities. GRAPHIC ABSTRACT: [Image: see text] Springer Netherlands 2021-10-19 2021 /pmc/articles/PMC8524217/ /pubmed/34690621 http://dx.doi.org/10.1007/s10989-021-10303-y Text en © The Author(s), under exclusive licence to Springer Nature B.V. 2021 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Article
Dalvi, Harshita
Bhat, Aditi
Iyer, Akshaya
Sainaga Jyothi, Vaskuri G. S.
Jain, Harsha
Srivastava, Saurabh
Madan, Jitender
Armamentarium of Cryoprotectants in Peptide Vaccines: Mechanistic Insight, Challenges, Opportunities and Future Prospects
title Armamentarium of Cryoprotectants in Peptide Vaccines: Mechanistic Insight, Challenges, Opportunities and Future Prospects
title_full Armamentarium of Cryoprotectants in Peptide Vaccines: Mechanistic Insight, Challenges, Opportunities and Future Prospects
title_fullStr Armamentarium of Cryoprotectants in Peptide Vaccines: Mechanistic Insight, Challenges, Opportunities and Future Prospects
title_full_unstemmed Armamentarium of Cryoprotectants in Peptide Vaccines: Mechanistic Insight, Challenges, Opportunities and Future Prospects
title_short Armamentarium of Cryoprotectants in Peptide Vaccines: Mechanistic Insight, Challenges, Opportunities and Future Prospects
title_sort armamentarium of cryoprotectants in peptide vaccines: mechanistic insight, challenges, opportunities and future prospects
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8524217/
https://www.ncbi.nlm.nih.gov/pubmed/34690621
http://dx.doi.org/10.1007/s10989-021-10303-y
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