4.6 Article

Transduction Enhancers Enable Efficient Human Adenovirus Type 5-Mediated Gene Transfer into Human Multipotent Mesenchymal Stromal Cells

期刊

VIRUSES-BASEL
卷 13, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/v13061136

关键词

hMSC; mesenchymal stromal cells; mesenchymal stem cells; adenovirus; gene therapy; transduction enhancer; viral vectors; good manufacturing practice; GMP

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资金

  1. German Federal Ministry of Education and Research (BMBF)
  2. Federal States of Germany Grant Innovative Hochschule [FKZ 3IHS024D]
  3. European Commission [241879, 643809]
  4. Sanitatsakademie der Bundeswehr [E/U2AD/ID018/IF557]

向作者/读者索取更多资源

This study introduces several enhancers that greatly improve the efficiency of HAdV-5-mediated gene transfer in hMSCs derived from bone marrow and adipose tissue. The migration behavior of hMSCs treated with enhancers was not affected, which is essential for many therapeutic applications. Enhancer-mediated HAdV-5 vector transduction is a valuable method for engineering hMSCs and developing innovative hMSC therapeutics.
Human multipotent mesenchymal stromal cells (hMSCs) are currently developed as cell therapeutics for different applications, including regenerative medicine, immune modulation, and cancer treatment. The biological properties of hMSCs can be further modulated by genetic engineering. Viral vectors based on human adenovirus type 5 (HAdV-5) belong to the most frequently used vector types for genetic modification of human cells in vitro and in vivo. However, due to a lack of the primary attachment receptor coxsackievirus and adenovirus receptor (CAR) in hMSCs, HAdV-5 vectors are currently not suitable for transduction of this cell type without capsid modification. Here we present several transduction enhancers that strongly enhance HAdV-5-mediated gene transfer into both bone marrow- and adipose tissue-derived hMSCs. Polybrene, poly-l-lysine, human lactoferrin, human blood coagulation factor X, spermine, and spermidine enabled high eGFP expression levels in hMSCs. Importantly, hMSCs treated with enhancers were not affected in their migration behavior, which is a key requisite for many therapeutic applications. Exemplary, strongly increased expression of tumor necrosis factor (TNF)-stimulated gene 6 (TSG-6) (a secreted model therapeutic protein) was achieved by enhancer-facilitated HAdV-5 transduction. Thus, enhancer-mediated HAdV-5 vector transduction is a valuable method for the engineering of hMSCs, which can be further exploited for the development of innovative hMSC therapeutics.

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