Dynamics of APC recruitment at the site of injection following injection of vaccine adjuvants
VACCINE
Authors: van Aalst, Susan; Ludwig, Irene Stephanie; van Kooten, Peter Johannes Sylvester; van der Zee, Ruurd; van Eden, Willem; Broere, Femke
Abstract
Vaccines often contain adjuvants to strengthen the response to the vaccine antigen. However, their modes of action at the site of injection (SOI) are poorly understood. Therefore, we assessed the local effects of adjuvant on the innate immune system in mice. We investigated the safe, widely used adjuvants MF59 and aluminum hydroxide (alum), as well as trehalose-6,6'-dibehenate (TDB), Complete Freund's Adjuvant (CFA) and the Toll-Like-Receptor-ligands lipopolysaccharide (LPS) and Pam3CysSerLys4 (Pam(3)CSK(4)). We assessed muscle immune cell infiltration after adjuvant injection and observed 16 h post immunization (hpi) an increased influx with CFA, MF59 and TDB, but not with alum, LPS or Pam(3)CSK(4). An elevated influx with the latter three became visible only 72 hpi. Contribution of granulocytes, macrophages and dendritic cells to the influx differed per adjuvant and in time. Adjuvants generally induced a local pro-inflammatory micro-milieu that was transient except for CFA and TDB. The gene expression of CXCL-1, CCL-2 and CCL-5, involved in recruitment of immune cells, varied per adjuvant and corresponded grossly with the observed influx of granulocytes and monocytes/ macrophages. Muscles injected with CFA or MF59 (when co-injected with peptide) resulted in APC ex vivo capable to induce proliferation of peptide-specific T-cells. By adding in vitro an excess of peptide to the APC/T cell co-cultures, we observed an adjuvant-enhanced co-stimulation or antigen presentation by APC after CFA- but not MF59-injection. After TDB-injection this effect was observed only at 72 hpi, but not 24 hpi. Thus the cellular influx profile and the local cytokine and chemokine micro-milieu in the muscle were strongly influenced by the type of adjuvant. Additionally, the capacity of muscle APC to load and present antigen was affected by the adjuvant. These findings may assist the development of novel adjuvanted vaccines in a more rational manner. (C) 2017 Elsevier Ltd. All rights reserved.
Syntheses and Functional Studies of Self-Adjuvanting Anti-HER2 Cancer Vaccines
CHEMISTRY-AN ASIAN JOURNAL
Authors: Feng, Qi; Manabe, Yoshiyuki; Kabayama, Kazuya; Aiga, Taku; Miyamoto, Asuka; Ohshima, Shino; Kametani, Yoshie; Fukase, Koichi
Abstract
The 9-mer peptide MFCH401 (N: 165-173: DTILWKDIF), which is located in the extracellular domain of HER2, has been predicted to be a novel epitope. Self-adjuvanting anti-HER2 vaccine constructs were designed and synthesized via covalently attaching MFCH401 or its linear tandem repeats (2xMFCH401, 3xMFCH401) to a lipopeptide Pam(3)CSK(4) via iterative condensation reaction. The in vivo results showed the Pam(3)CSK(4)-MFCH401 vaccine construct can induce higher antibody titers of IgG and IgM than those of other conjugates, and the analysis of changes in plasma cytokines level indicate the activation of Th1 cells and NK cells. In addition, the Pam(3)CSK(4)-MFCH401 vaccine conjugate induced a specific immune response to HER2-overexpressing human BT474 cells. Our data clearly indicated that MFCH401 is a promising epitope; moreover, its linear tandem repeats were unsuitable for anticancer vaccine design when conjugating with Pam(3)CSK(4), which provided useful evidence for developing further anti-HER2 cancer vaccines.