Target intelligence / Profile preview

Tumor-associated antigens (delivered by DRibble vaccine) (TAA (DRibble))

Target
TAA (DRibble)
Molecular classification
Antigen, Protein, Vesicle-associated protein
01

Overview

Tumor-associated antigens delivered by the DRibble vaccine represent a diverse pool of immunogenic proteins, including defective ribosomal products (DRiPs), misfolded proteins, and heat shock proteins, sequestered within autophagosome-enriched microvesicles (Hu et al., 2011, J Immunother). Unlike traditional vaccines that target a single antigen, the DRibble platform captures the entire antigenic fingerprint of a tumor cell, including neoantigens and short-lived proteins that are usually degraded by the proteasome (Sanborn et al., 2013, Cancer J). These vesicles are produced by treating tumor cells with proteasome inhibitors and autophagy inducers, which causes the accumulation of ubiquitinated proteins within autophagosomes (Li et al., 2011, Cancer Res). When administered as a vaccine, these vesicles are specialized for cross-presentation by professional antigen-presenting cells, particularly Clec9A+ dendritic cells, leading to the activation of a broad repertoire of T cells (Yi et al., 2012, J Immunother). This approach is designed to overcome tumor heterogeneity and prevent immune escape by targeting multiple antigens simultaneously (Ye et al., 2014, Clin Cancer Res). Clinical investigations have primarily focused on its application in solid tumors such as non-small cell lung cancer and breast cancer (NCT00850785).

Other names
DRibblesDefective Ribosomal Products-containing blebsAutophagosome-enriched vesiclesDRP-containing blebsUbi-40 vaccine
02

Mechanism of action

The DRibble vaccine delivers a broad spectrum of tumor-associated antigens, including defective ribosomal products (DRiPs) and short-lived proteins, encapsulated within autophagosome-enriched vesicles. These vesicles are efficiently captured by professional antigen-presenting cells, such as dendritic cells, via receptors like CLEC9A. Once internalized, the antigens undergo cross-presentation to both CD4+ and CD8+ T cells, triggering a robust and polyvalent anti-tumor immune response (Hu et al., 2011; Li et al., 2011).

03

Biological functions

Immune responseAntigen presentationAutophagyT cell activationCross-presentation
04

Disease associations

CancerNon-small cell lung cancerBreast cancerSolid tumor
05

Safety considerations

Injection site reactionFlu-like symptomsPotential for autoimmunity (theoretical)Tumor heterogeneity
06

Interacting drugs

DRP-1 vaccine

1 more in the full profile.

07

Biomarkers

IFN-gamma productionAntigen-specific T-cell frequencyCD8+ T-cell activationCD4+ T-cell activation

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