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Transcriptional Targeting of Dendritic Cells Using an Optimized Human Gene Promoter. | LitMetric

AI Article Synopsis

  • Research on the tumor microenvironment (TME) has led to new cancer treatment approaches like gene-based immunotherapy, which targets immune responses against tumors.
  • DNA vaccines aim to stimulate anti-tumor T cell responses by activating antigen-presenting cells, and optimizing their delivery and effectiveness is essential.
  • A study tested a novel DNA construct (pFscnLuc) designed for dendritic cells, showing increased activity in these immune cells compared to a standard vector in both cell culture and mouse models, particularly in the spleen.

Article Abstract

Deeper knowledge about the role of the tumor microenvironment (TME) in cancer development and progression has resulted in new strategies such as gene-based cancer immunotherapy. Whereas some approaches focus on the expression of tumoricidal genes within the TME, DNA-based vaccines are intended to be expressed in antigen-presenting cells (e.g., dendritic cells, DCs) in secondary lymphoid organs, which in turn induce anti-tumor T cell responses. Besides effective delivery systems and the requirement of appropriate adjuvants, DNA vaccines themselves need to be optimized regarding efficacy and selectivity. In this work, the concept of DC-focused transcriptional targeting was tested by applying a plasmid encoding for the luciferase reporter gene under the control of a derivative of the human gene promoter (pFscnLuc), comprising the proximal core promoter fused to the normally more distantly located DC enhancer region. DC-focused activity of this reporter construct was confirmed in cell culture in comparison to a standard reporter vector encoding for luciferase under the control of the strong ubiquitously active cytomegalovirus promoter and enhancer (pCMVLuc). Both plasmids were also compared upon intravenous administration in mice. The organ- and cell type-specific expression profile of pFscnLuc versus pCMVLuc demonstrated favorable activity especially in the spleen as a central immune organ and within the spleen in DCs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10706967PMC
http://dx.doi.org/10.3390/ijms242316938DOI Listing

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