Comparison of different gene addition strategies to modify placental derived-mesenchymal stromal cells to produce FVIII

比较不同的基因添加策略来修饰胎盘来源的间充质基质细胞以产生 FVIII

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作者:Ritu M Ramamurthy, Martin Rodriguez, Hannah C Ainsworth, Jordan Shields, Diane Meares, Colin Bishop, Andrew Farland, Carl D Langefeld, Anthony Atala, Christopher B Doering, H Trent Spencer, Christopher D Porada, Graça Almeida-Porada

Discussion

Although we did not achieve our primary objective, our results validate the utility of both PLCs and hLSECs as cell-based delivery vehicles for a fVIII transgene, and they highlight the hurdles that remain to be overcome before primary human cells can be gene-edited with sufficient efficiency for use in cell-based gene therapy to treat HA.

Methods

We used CRISPR/Cas9 to attempt to insert the bioengineered fVIII transgene "lcoET3" into the AAVS1 site of PLCs (CRISPR-lcoET3) and determined their subsequent levels of FVIII production, comparing

Results

PLCs and hLSECs can both be transduced (LV-lcoET3) with very high efficiency and produce high levels of biologically active FVIII. Surprisingly, both cell types were largely refractory to CRISPR/Cas9-mediated knockin of the lcoET3 fVIII transgene in the AAVS1 genome locus. However, successful insertion of an RFP reporter into this locus using an identical procedure suggests the failure to achieve knockin of the lcoET3 expression cassette at this site is likely a function of its large size. Importantly, using plasmids, alone or to introduce the CRISPR/Cas9 "machinery", resulted in dramatic upregulation of TLR 3, TLR 7, and BiP in PLCs, compromising their unique immune-inertness.

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