| Literature DB >> 29508006 |
Morgan Grau1, Paul R Walker2, Madiha Derouazi3.
Abstract
Immunotherapies are increasingly used to treat cancer, with some outstanding results. Immunotherapy modalities include therapeutic vaccination to eliminate cancer cells through the activation of patient's immune system against tumor-derived antigens. Nevertheless, the full potential of therapeutic vaccination has yet to be demonstrated clinically because many early generation vaccines elicited low-level immune responses targeting only few tumor antigens. Cell penetrating peptides (CPPs) are highly promising tools to advance the field towards clinical success. CPPs efficiently penetrate cell membranes, even when linked to antigenic cargos, which can induce both CD8 and CD4 T-cell responses. Pre-clinical studies demonstrated that targeting multiple tumor antigens, even those considered to be poorly immunogenic, led to tumor regression. Therefore, CPP-based cancer vaccines represent a flexible and powerful means to extend therapeutic vaccination to many cancer indications. Here, we review recent findings in CPP development and discuss their use in next generation immunotherapies.Entities:
Keywords: Antigen processing; Cancer vaccines; Cell penetrating peptides; Immunotherapy; Tumor antigens
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Year: 2018 PMID: 29508006 PMCID: PMC6061156 DOI: 10.1007/s00018-018-2785-0
Source DB: PubMed Journal: Cell Mol Life Sci ISSN: 1420-682X Impact factor: 9.261
Fig. 1Ag processing and presentation pathways followed by CPP-Ag in dendritic cells. CPP-Ag mainly enters into the cells via endocytosis, although minor direct penetration across the plasma membrane cannot be ruled out. In the latter situation, antigenic cargo follows the MHC-I direct presentation pathway. Cytosolic antigenic cargo is processed by the proteasome into small antigenic peptides. The transporter associated with antigen processing (TAP) transfers these peptides into the endoplasmic reticulum (ER) where they are loaded onto MHC-I molecules. These complexes are transported to the plasma membrane and deliver the first signal for CD8 T-cell activation through their highly specific interaction with the T-cell receptor (TCR) of cognate CD8 T cells. Endocytosed CPP-Ag can be directed to different pathways. The MHC-I cross presentation pathway is reached by the antigenic cargo after its escape from the endosome due to the intrinsic properties of CPPs. Alternatively, the antigenic cargo can be degraded into small antigenic peptides in the endosome. As MHC-I molecules can be expressed in late endosomes (see Ref. [36]), some of these antigenic peptides can be loaded on these molecules, through the MHC-I cross presentation vacuolar pathway. Antigenic peptides also reach the MIIC compartment where they are loaded on MHC-II molecules that are then transported to the plasma membrane. These complexes deliver the first signal for CD4 T-cell activation through their highly specific interaction with the TCR of cognate CD4 T cells. The role of adjuvant is also depicted. It triggers pattern recognition receptors (PRR), leading to the activation and maturation of dendritic cells. In particular, adjuvant increases the MHC-I cross presentation activity of dendritic cells and also induce the expression of costimulatory molecules that are essential for T-cell activation through the delivery of costimulatory signals. Templates from Servier Medical Art image bank were used to draw this figure
Fig. 2CPP-based cancer vaccines elicit powerful anti-tumor T-cell responses. CPP vectors allow targeting of multi-epitopic antigenic cargos to processing and presentation machinery for both MHC-I and MHC-II. In the context of appropriate adjuvant, transduced dendritic cells are then able to strongly activate both CD8 and CD4 T cells specific for multiple tumor-derived antigens. The resulting poly-functional effector T-cells migrate to the tumor site, where they eliminate heterogenous tumor cells via cytotoxicity. For each step, the main advantages of CPP-based vaccines are indicated. Templates from Servier Medical Art image bank were used to draw this figure