Haemophilia B curative FIX production from a low dose UCOE-based lentiviral vector following hepatic pre-natal delivery.

Curr Gene Ther

Gene Expression and Therapy Group, King`s College London, Faculty of Life Sciences and Medicine, Department of Medical and Molecular Genetics, 8th Floor Tower Wing, Guy's Hospital, London SE1 9RT, UK.

Published: November 2016

The ubiquitous chromatin opening element from the human HNRPA2B1-CBX3 housekeeping gene locus (A2UCOE) is able to provide stable and cell-to-cell reproducible levels of transgene expression regardless of target cell genome integration site with efficacy demonstrated in adult, embryonic and induced pluripotent stem cells and their differentiated progeny in vitro and in vivo. Here we evaluate the ability of A2UCOE-based lentiviral vectors to confer stable expression following pre-natal delivery in mice. Our results show stable post-natal A2UCOE-eGFP and A2UCOE-luciferase lentiviral vector presence in both the liver and haematopoietic system with concomitant persistence of expression demonstrating efficient transduction of both fetal hepatocytes and haematopoietic stem cells. In addition, we find that an A2UCOE-FIX lentiviral vector produces comparable amounts of plasma FIX protein to that obtained from a SFFV-FIX construct. Furthermore, the A2UCOE-FIX vector shows that at a low (0.19) average vector copy number per liver cell, it can provide stable levels of plasma FIX production, which would convert severe haemophilia B ("pii">CGT-EPUB-lt;1%) to a mild phenotype (≈20%). Our results provide proof-of-principle for low dose pre-natal A2UCOE-based LV delivery to the liver as a therapeutic option for haemophilia B and potentially other metabolic conditions.

Download full-text PDF

Source

Publication Analysis

Top Keywords

lentiviral vector
12
low dose
8
pre-natal delivery
8
provide stable
8
stem cells
8
vector
5
haemophilia curative
4
curative production
4
production low
4
dose ucoe-based
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!