Key result
Adenovirus vector doses above 10^8 infectious units resulted in acute cytotoxicity, chronic inflammation, and an inverse correlation with transgene expression persistence at 30 days.
Why the study?
Does adenoviral vector dose affect transgene expression persistence and inflammation in the brain of adult rats?
Does adenoviral vector dose affect transgene expression persistence and inflammation in the brain of adult rats?
High doses of adenoviral vectors in the brain cause acute cytotoxicity and chronic inflammation, which correlate with decreased transgene expression persistence.
High adenoviral doses may limit transgene persistence via inflammation in rat brain; hypothesis-generating for CNS vector dosing.
The potential utility of adenoviruses for the treatment of chronic neurological disease is controversial due to reports of vector-associated toxicity, inflammation, and transient transgene expression. To focus upon the mechanism by which transgene expression is lost, we injected increasing doses [1 x 10(6) to 1 x 10(9) infectious units (iu)] of a first-generation adenovirus vector expressing beta-galactosidase into the brains of immune-competent adult rats. Transgene expression was evaluated simultaneously with acute neuronal and glial cell cytotoxicity, and acute and chronic inflammation using immunohistochemistry, at 3 and 30 days post-vector administration. Our results show a clear threshold effect of viral dose upon the amount of transgene expression persisting by 30 days after vector administration. Below 10(8) iu, transgene expression remained stable over the 30-day period. Following infection of more than 10(8) iu, the extent of transgene expression at 30 days was inversely correlated with increasing viral dose. The severity of acute inflammation increased proportionally with increasing vector dose from 10(6) to 10(9) infectious units. In contrast, acute vector-mediated cytotoxicity and chronic inflammation were observed only above the threshold level of vector dose. Above 10(8) iu both the extent of the acute toxicity and the severity of the chronic inflammation were inversely correlated with transgene expression at 30 days. Thus, our data suggest that both an acute loss of cells through direct vector-mediated toxicity and the elicitation of chronic inflammation (but not acute inflammation) may account for the decline in transduction persistence at high vector doses.
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Thomas et al. (2001) studied Adenovirus vector toxicity and transgene expression. First-generation adenovirus vector expressing beta-galactosidase was evaluated on Transgene expression, acute neuronal and glial cell cytotoxicity, and acute and chronic inflammation. Adenovirus vector doses above 10^8 infectious units resulted in acute cytotoxicity, chronic inflammation, and an inverse correlation with transgene expression persistence at 30 days.
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