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Chemoenzymatic Synthesis of 9NHAc-GD2 Antigen to Overcome the Hydrolytic Instability of O-Acetylated-GD2 for Anticancer Conjugate Vaccine Development

Authors :
Paulo Vilar Saavedra
Herbert W. Kavunja
Xuanjun Wu
Jinfeng Ye
Shuyao Lang
Tayeb Kakeshpour
Jeffrey C. Gildersleeve
Hongzhi Cao
Yuetao Zhao
Vilma Yuzbasiyan-Gurkan
Zahra Rashidijahanabad
Sherif Ramadan
Andrew T DeLaitsch
Xuefei Huang
Source :
Angew Chem Int Ed Engl
Publication Year :
2021

Abstract

Ganglioside GD2 is an attractive tumor-associated carbohydrate antigen for anti-cancer vaccine development. However, its low immunogenicity and the significant side effects observed with anti-GD2 antibodies present significant obstacles for vaccines. To overcome these, a new GD2 derivative bearing an N-acetamide (NHAc) at its non-reducing end neuraminic acid (9NHAc-GD2) has been designed to mimic the 9-O-acetylated-GD2 (9OAc-GD2), a GD2 based antigen with a restricted expression on tumor cells. 9NHAc-GD2 was synthesized efficiently via a chemoenzymatic method and subsequently conjugated with a powerful carrier bacteriophage Qβ. Mouse immunization with the Qβ-9NHAc-GD2 conjugate elicited strong and long-lasting IgG antibodies, which were highly selective toward 9NHAc-GD2 with little cross-recognition of GD2. Immunization of canines with Qβ-9NHAc-GD2 showed the construct was immunogenic in canines with little adverse effects, paving the way for future clinical translation to humans.

Details

Language :
English
Database :
OpenAIRE
Journal :
Angew Chem Int Ed Engl
Accession number :
edsair.doi.dedup.....66b1688805eea944ee6f6cd654fc6527