Author: Gao, Yanan; Zhao, Qingyu; Dong, Huiling; Xiao, Min; Huang, Xuefei; Wu, Xuanjun
Title: Developing Acidâ€Responsive Glycoâ€Nanoplatform Based Vaccines for Enhanced Cytotoxic Tâ€lymphocyte Responses Against Cancer and SARSâ€CoVâ€2 Cord-id: 3n0vp2nm Document date: 2021_7_17
ID: 3n0vp2nm
Snippet: Cytotoxic Tâ€lymphocytes (CTLs) are central for eliciting protective immunity against malignancies and infectious diseases. Here, for the first time, partially oxidized acetalated dextran nanoparticles (Oxâ€AcDEX NPs) with an average diameter of 100 nm are fabricated as a general platform for vaccine delivery. To develop effective anticancer vaccines, Oxâ€AcDEX NPs are conjugated with a representative CTL peptide epitope (CTLp) from human mucinâ€1 (MUC1) with the sequence of TSAPDTRPAP (refe
Document: Cytotoxic Tâ€lymphocytes (CTLs) are central for eliciting protective immunity against malignancies and infectious diseases. Here, for the first time, partially oxidized acetalated dextran nanoparticles (Oxâ€AcDEX NPs) with an average diameter of 100 nm are fabricated as a general platform for vaccine delivery. To develop effective anticancer vaccines, Oxâ€AcDEX NPs are conjugated with a representative CTL peptide epitope (CTLp) from human mucinâ€1 (MUC1) with the sequence of TSAPDTRPAP (referred to as Mp1) and an immuneâ€enhancing adjuvant R837 (referred to as R) via imine bond formation affording AcDEXâ€(imine)â€Mp1â€R NPs. Administration of AcDEXâ€(imine)â€Mp1â€R NPs results in robust and longâ€lasting antiâ€MUC1 CTL immune responses, which provides mice with superior protection from the tumor. To verify its universality, this nanoplatform is also exploited to deliver epitopes from severe acute respiratory syndrome coronavirus 2 (SARSâ€CoVâ€2) to prevent coronavirus disease 2019 (COVIDâ€19). By conjugating Oxâ€AcDEX NPs with the potential CTL epitope of SARSâ€CoVâ€2 (referred to as Sp) and R837, AcDEXâ€(imine)â€Spâ€R NPs are fabricated for antiâ€SARSâ€CoVâ€2 vaccine candidates. Several epitopes potentially contributing to the induction of potent and protective antiâ€SARSâ€CoVâ€2 CTL responses are examined and discussed. Collectively, these findings shed light on the universal use of Oxâ€AcDEX NPs to deliver both tumorâ€associated and virusâ€associated epitopes.
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