Intrathecal administration of adeno-associated-viral vectors for gene therapy
A composition comprising at least one AAV vector formulated for intrathecal delivery to the central nervous system is described. The composition comprises at least one expression cassette which contains sequences encoding an immunoglobulin construct linked to expression control sequences therefor and a pharmaceutically acceptable carrier. The immunoglobulin construct may be an immunoglobulin modified to have decreased or no measurable affinity for neonatal Fc receptor (FcRn).
1. A composition for treatment of Alzheimer's Disease, wherein said composition comprises:
at least one recombinant AAV (rAAV) vector stock comprising an AAV capsid which targets a cell of the central nervous system and a vector genome packaged in the AAV capsid, wherein the vector genome comprises AAV inverted terminal repeat sequences and nucleic acid sequences encoding an immunoglobulin operably linked to expression control sequences which direct expression of the immunoglobulin; and
a pharmaceutically acceptable carrier and/or an excipient for intrathecal delivery,
wherein the immunoglobulin is a single chain variable fragment antibody (scFv), wherein the scFv is the amino acid sequence of SEQ ID NO: 8.
2. A composition useful for treatment of Alzheimer's Disease comprising at least one AAV vector stock comprising an AAV capsid which targets a cell of the central nervous system, the capsid having packaged therein at least one AAV inverted terminal repeat sequence and sequences encoding an immunoglobulin construct operably linked to expression control sequences therefor, wherein the at least one AAV vector stock expresses an immunoglobulin specific for a Aβ protein, and the composition further comprises a pharmaceutically acceptable carrier and/or excipient suitable for intrathecal delivery, wherein the immunoglobulin is a scFv, wherein the scFv is the amino acid sequence of SEQ ID NO: 8.
3. The composition according to claim 1 , wherein excipient excludes chemical and physical disruptors of blood brain barrier.
4. The composition according to claim 2 , wherein excipients excludes chemical and physical disruptors of blood brain barrier.
5. The composition according to claim 1 , wherein the composition further comprises of the pharmaceutically acceptable carrier selected from one or more of Elliot's B, sterile saline, lactose, sucrose, maltose, and water.
6. The composition according to claim 2 , wherein the composition further comprises of the pharmaceutically acceptable carrier selected from one or more of Elliot's B, sterile saline, lactose, sucrose, maltose, and water.
7. The composition according to claim 1 , wherein the vector genome further comprises a coding sequence for a secretion signal peptide, wherein the secretion signal peptide is interleukin-2 secretion signal peptide and wherein the secretion signal peptide is located at the 5′ end of the nucleic acid sequence encoding the immunoglobulin.
8. The composition according to claim 2 , wherein sequences further comprises a coding sequence for a secretion signal peptide, wherein the secretion signal peptide is interleukin-2 secretion signal peptide and wherein the secretion signal peptide is located at the 5′ end of the sequences encoding the immunoglobulin.