Breaking Entry-and Species Barriers: LentiBOOST ® Plus Polybrene Enhances Transduction Efficacy of Dendritic Cells and Monocytes by Adenovirus 5.
Astrid StrackAndrea DeinzerChristian ThirionSilke SchrödelJan DörrieTatjana SauererAlexander SteinkassererIlka KnippertzPublished in: Viruses (2022)
Due to their ability to trigger strong immune responses, adenoviruses (HAdVs) in general and the serotype5 (HAdV-5) in particular are amongst the most popular viral vectors in research and clinical application. However, efficient transduction using HAdV-5 is predominantly achieved in coxsackie and adenovirus receptor (CAR)-positive cells. In the present study, we used the transduction enhancer LentiBOOST ® comprising the polycationic Polybrene to overcome these limitations. Using LentiBOOST ® /Polybrene, we yielded transduction rates higher than 50% in murine bone marrow-derived dendritic cells (BMDCs), while maintaining their cytokine expression profile and their capability to induce T-cell proliferation. In human dendritic cells (DCs), we increased the transduction rate from 22% in immature (i)DCs or 43% in mature (m)DCs to more than 80%, without inducing cytotoxicity. While expression of specific maturation markers was slightly upregulated using LentiBOOST ® /Polybrene on iDCs, no effect on mDC phenotype or function was observed. Moreover, we achieved efficient HAdV5 transduction also in human monocytes and were able to subsequently differentiate them into proper iDCs and functional mDCs. In summary, we introduce LentiBOOST ® comprising Polybrene as a highly potent adenoviral transduction agent for new in-vitro applications in a set of different immune cells in both mice and humans.
Keyphrases
- dendritic cells
- immune response
- regulatory t cells
- cell proliferation
- endothelial cells
- poor prognosis
- type diabetes
- binding protein
- gene therapy
- mesenchymal stem cells
- cell cycle
- escherichia coli
- pluripotent stem cells
- peripheral blood
- metabolic syndrome
- signaling pathway
- cell death
- bone marrow
- long non coding rna
- adipose tissue
- anti inflammatory
- cell cycle arrest
- high fat diet induced
- endoplasmic reticulum stress