| Literature DB >> 32122372 |
Marshall S Goodwin1,2, Cara L Croft1,2, Hunter S Futch1,2, Daniel Ryu1,2, Carolina Ceballos-Diaz1,2, Xuefei Liu1,2, Giavanna Paterno1,2, Catalina Mejia1,2, Doris Deng1,2, Kimberly Menezes1,2, Laura Londono1,2, Kefren Arjona1,2, Mary Parianos1,2, Van Truong1,2, Eva Rostonics1,2, Amanda Hernandez1,2, Sanford L Boye3, Shannon E Boye4, Yona Levites1,2,5, Pedro E Cruz6,7, Todd E Golde8,9,10.
Abstract
BACKGROUND: Recombinant adeno-associated virus (rAAV) is widely used in the neuroscience field to manipulate gene expression in the nervous system. However, a limitation to the use of rAAV vectors is the time and expense needed to produce them. To overcome this limitation, we evaluated whether unpurified rAAV vectors secreted into the media following scalable PEI transfection of HEK293T cells can be used in lieu of purified rAAV.Entities:
Keywords: AAV production; Adeno-associated virus; Capsid pseudo-type; Central nervous system; Gene delivery
Mesh:
Substances:
Year: 2020 PMID: 32122372 PMCID: PMC7053119 DOI: 10.1186/s13024-020-00361-z
Source DB: PubMed Journal: Mol Neurodegener ISSN: 1750-1326 Impact factor: 14.195
List of rAAVs with average titers in the media
| rAAV Name | Mutations | Average titer in Media (vg/mL) | Source |
|---|---|---|---|
| rAAV2/1 | 8.7E+ 10 | Plasmid Factory | |
| rAAV2/2 | 7.2E+ 10 | Plasmid Factory | |
| rAAV2/3 | 3.5E+ 11 | National Gene Vector Biorepository | |
| rAAV2/4 | 3.6E+ 11 | National Gene Vector Biorepository | |
| rAAV2/5 | 4.7E+ 10 | PlasmidFactory | |
| rAAV2/6 | 4.9E+ 11 | Plasmid Factory | |
| rAAV2/7 | 2.0E+ 11 | Provided by Sergei Zolotukhin, Ph.D., University of Florida | |
| rAAV2/8 | 6.3E+ 11 | PlasmidFactory | |
| rAAV2/9 | 4.2E+ 11 | Provided by Sergei Zolotukhin, Ph.D., University of Florida | |
| rAAV2/Rh10 | 2.4E+ 11 | Provided by Christian Mueller, Ph.D., University of Massachusetts | |
| rAAV2/12 | 5.1E+ 10 | Capsid gene provided by John A. Chiorini, Ph.D., NIH | |
| rAAV2/13 | 6.8E+ 10 | Capsid gene provided by John A. Chiorini, Ph.D., NIH | |
| rAAV2/Bovine | 2.1E+ 11 | Capsid gene provided by John A. Chiorini, Ph.D., NIH | |
| rAAV2/Avian | 5.2E+ 10 | Capsid gene provided by John A. Chiorini, Ph.D., NIH | |
| rAAV2/1-2Y + T | T492V + Y705F + Y731F | 9.5E+ 11 | Provided by Arun Srivastava, Ph.D., University of Florida |
| rAAV2/2-3Y | Y444F + Y500F + Y730F | 3.6E+ 11 | Provided by Shannon E. Boye, PH.D., University of Florida |
| rAAV2/2-4Y | Y272F + Y444F + Y500F + Y730F | 3.2E+ 11 | Provided by Shannon E. Boye, PH.D., University of Florida |
| rAAV2/2-5Y | Y272F + Y444F + Y500F + Y704F + Y730F | 1.5E+ 11 | Provided by Shannon E. Boye, PH.D., University of Florida |
| rAAV2/2-4Y + T + K | Y272F + Y444F + Y500F + Y730F + T491V + K556R | 3.6E+ 11 | Provided by Shannon E. Boye, PH.D., University of Florida |
| rAAV2/5-Y | Y719F | 2.1E+ 11 | Provided by Shannon E. Boye, PH.D., University of Florida |
| rAAV2/5-2Y | Y263F + Y719F | 3.1E+ 11 | Provided by Shannon E. Boye, PH.D., University of Florida |
| rAAV2/6-T + S | T492V + S663V | 7.8E+ 11 | Provided by Arun Srivastava, Ph.D., University of Florida |
| rAAV2/6-2Y + T | T492V + Y705F + Y731F | 5.0E+ 11 | Provided by Arun Srivastava, Ph.D., University of Florida |
| rAAV2/6-2S | S663V + S551V | 6.7E+ 11 | Provided by Arun Srivastava, Ph.D., University of Florida |
| rAAV2/8-Y | Y733F | 2.0E+ 12 | Provided by Shannon E. Boye, PH.D., University of Florida |
| rAAV2/8-2Y | Y447F + Y733F | 2.0E+ 12 | Provided by Shannon E. Boye, PH.D., University of Florida |
| rAAV2/8-3Y | Y275F + Y447F + Y733F | 1.3E+ 12 | Provided by Shannon E. Boye, PH.D., University of Florida |
| rAAV2/8-2Y + T | Y447F + T494V + Y733F | 1.3E+ 12 | Provided by Shannon E. Boye, PH.D., University of Florida |
| rAAV2/9-PHP.B | Insertion at AA588 (TLAVPFKA) | 2.0E+ 11 | Synthesized from Genscript based on reference ( |
| rAAV2/9-PHP.eB | A587D + Q588G and insertion at AA588 (TLAVPFKA) | 3.8E+ 11 | Synthesized from Genscript based on reference ( |
Titers of rAAVs used for in vivo injection
| rAAV Name | genomic titer vg/mL | total genomes injected per ventricle |
|---|---|---|
| rAAV2/1 | 1.6E+ 10 | 3.1E+ 07 |
| rAAV2/2 | 1.5E+ 09 | 3.0E+ 06 |
| rAAV2/3 | 9.5E+ 10 | 1.9E+ 08 |
| rAAV2/4 | 5.9E+ 10 | 1.2E+ 08 |
| rAAV2/5 | 7.0E+ 08 | 1.4E+ 06 |
| rAAV2/6 | 8.4E+ 10 | 1.7E+ 08 |
| rAAV2/7 | 3.5E+ 10 | 6.9E+ 07 |
| rAAV2/8 | 5.2E+ 10 | 1.0E+ 08 |
| rAAV2/9 | 6.3E+ 10 | 1.3E+ 08 |
| rAAV2/Rh10 | 3.6E+ 10 | 7.2E+ 07 |
| rAAV2/12 | 8.4E+ 09 | 1.7E+ 07 |
| rAAV2/13 | 2.6E+ 10 | 5.2E+ 07 |
| rAAV2/Bovine | 4.2E+ 10 | 8.4E+ 07 |
| rAAV2/Avian | 3.2E+ 10 | 6.4E+ 07 |
| rAAV2/1-2Y + T | 1.1E+ 11 | 2.2E+ 08 |
| rAAV2/2-3Y | 1.2E+ 11 | 2.4E+ 08 |
| rAAV2/2-4Y | 1.4E+ 11 | 2.8E+ 08 |
| rAAV2/2-5Y | 6.8E+ 10 | 1.4E+ 08 |
| rAAV2/2-4Y + T + K | 1.7E+ 11 | 3.3E+ 08 |
| rAAV2/5-Y | 3.9E+ 10 | 7.8E+ 07 |
| rAAV2/5-2Y | 1.4E+ 11 | 2.8E+ 08 |
| rAAV2/6-2S | 2.4E+ 11 | 4.7E+ 08 |
| rAAV2/6-T + S | 1.1E+ 11 | 2.2E+ 08 |
| rAAV2/6-2Y + T | 1.4E+ 11 | 2.9E+ 08 |
| rAAV2/8-Y | 2.0E+ 11 | 3.9E+ 08 |
| rAAV2/8-2Y | 2.4E+ 11 | 4.8E+ 08 |
| rAAV2/8-3Y | 5.6E+ 10 | 1.1E+ 08 |
| rAAV2/8-2Y + T | 1.7E+ 11 | 3.3E+ 08 |
| rAAV2/9-PHP.B | 7.4E+ 10 | 1.5E+ 08 |
| rAAV2/9-PHP.eB | 1.8E+ 11 | 3.6E+ 08 |
PEI transfection to produce rAAV in 6-well plate
| AAV double transfection | AAV triple transfection | PEI solution | |||
|---|---|---|---|---|---|
| Transgene plasmid | 675 ng | Transgene plasmid | 675 ng | PEI | 30 μl |
| Capsid-helper plasmid | 2025 ng | Capsid-helper plasmid | 675 ng | 1.5 M NaCl | 10 μl |
| 1.5 M NaCl | 10 μl | Adeno helper plasmid | 1350 ng | Water | 60 μl |
| Water | to 100 μl | 1.5 M NaCl | 10 μl | Total | 100 μl |
| Total | 100 μl | Water | to 100 μl | ||
| Total | 100 μl | ||||
PEI Transfection to produce concentrated rAAV preparations
| AAV double transfection | AAV triple transfection | PEI solution | |||
|---|---|---|---|---|---|
| Transgene plasmid | 12.5 μg | Transgene plasmid | 12.5 μg | PEI | 0.5 mL |
| Capsid-helper plasmid | 37.5 μg | Capsid-helper plasmid | 25 μg | 1.5 M NaCl | 0.1 mL |
| 1.5 M NaCl | 0.1 mL | Adeno helper plasmid | 12.5 μg | Water | 0.4 mL |
| Water | to 1 mL | 1.5 M NaCl | 0.1 mL | Total | 1 mL |
| Total | 1 mL | Water | to 1 mL | ||
| Total | 1 mL | ||||
Fig. 1Scalable PEI transfection of HEK293T cells produces secreted rAAV. a Schematic diagram of method for production of secreted rAAV. b Single-stranded (ss) rAAV2 vectors used in this study contained the cytomegalovirus (CMV) enhancer, hybrid chicken β-actin (hCBA) promoter, truncated CBA intron, rabbit beta-globin splice acceptor, woodchuck hepatitis virus post-transcriptional regulatory element (WPRE), bovine growth hormone polyadenylation signal, and transgene encoding either red fluorescent protein (TurboRFP) or enhanced green fluorescent protein (EGFP). c Only co-transfection of both rAAV2/1 capsid helper (pDP.rs) and transgene (pAAV-hCBA-RFP) produces rAAV in the media capable of transducing PNGC. Bar, 100 μm d Genomic titers of all secreted rAAVs at 72 h post-transfection quantified as vector genomes/mL of culture media (Mean ± SEM N = 3)
Fig. 2Efficient transduction of PNGC by rAAV secreted into the media. Primary mixed neuroglial cultures (PNGCs) were transduced at 3 DIV with rAAV2-EGFP vectors packaged in thirty different capsid serotypes (1 × 1010 vg/mL of PNC culture media). At 10 DIV, cultures were fixed and EGFP expression was imaged. Representative images of PNC transduction by rAAV2-EGFP vectors pseudo-typed with wild-type capsids (a) or mutant capsids (b) Bar, 50 μm. Images were taken with the same exposure time to directly compare transduction efficiency (c) Quantification of transduction efficiency in PNC (Mean ± SEM n = 3)
Fig. 3Transduction of BSC by secreted rAAV from select capsids. Organotypic BSCs were prepared and transduced at 0 DIV with rAAV (1 × 1010 vg/mL of BSC culture media). BSCs were maintained in culture until 14 DIV, fixed, and fluorescence of EGFP throughout the BSC was imaged. Representative images of BSC transduction by rAAV2-EGFP vectors pseudotyped with wild-type capsids (a) or mutant capsids (b) Bar, 100 μm. Images were taken with the same exposure time to directly compare transduction efficiency. c BSCs were transduced with rAAV2/8-WT-htau or rAAV2/8-P301L-S320F-htau under the hCBA promoter (1 × 1010 vg/mL of BSC culture media) at 0 DIV and maintained in culture until 28 DIV. Lysates were sequentially extracted and immunoblotted for total human tau (CP27), tau phosphorylated at Ser396/404 (PHF-1), and GAPDH as a loading control. Representative western blots of tau in the low-speed supernatant and sarkosyl insoluble fraction are shown. e Transduced slice cultures were fixed, stained with 0.0125% Thioflavin S, and imaged to identify any β-sheet structures in these sections Bar, 25 μm
Fig. 4In vivo transduction via somatic brain transgenesis. Media containing rAAV2-EGFP vectors was injected directly into each lateral ventricle of non-transgenic mice at postnatal day 0 (P0). a Representative brain sections from mice aged P30 stained with an anti-EGFP antibody (n = 3–5). Bar, 500 μm. b Higher magnification (10X) images show transduction by select mutant rAAV2/2, 2/8, and 2/9 capsids. Bar, 150 μm (c) Immuno-fluorescent co-staining for EGFP expression (green) and cell-type specific markers (red) reveals transduction of astrocytes (anti-GFAP) and neurons (anti-MAP2) but not microglia (anti-IBA1) Bar, 50 μm. Additional co-localization data can be found in Fig. S3
Fig. 5rAAV-mediated expression of mIL6 and mIL10 in vivo. Media containing either rAAV2/8-3Y-EGFP, mIL6, or mIL10 was injected directly into each lateral ventricle of non-transgenic mice at P0. (a) Representative brain sections from mice aged P30 stained with an anti-IBA1 antibody to assess microgliosis (a) or an anti-GFAP antibody to assess astrogliosis (b). Brains injected with media containing no rAAV or rAAV2/8-3Y-EGFP were used as controls. Bar, 500 μm (hemi-brain) or 100 μm (10X magnification)
rAAV titers before and after media concentration
| Construct / Preparation # | Non-concentrated titer vg/mL | 100X concentrated titer vg/mL |
|---|---|---|
| rAAV2/8-EGFP-Prep #1 | 2.8E+ 11 | 3.4E+ 13 |
| rAAV2/8-EGFP-Prep #2 | 7.0E+ 10 | 2.5E+ 12 |
| rAAV2/8-EGFP-Prep #3 | 5.5E+ 11 | 4.8E+ 13 |
| rAAV2/8-3Y-EGFP-Prep #1 | 2.5E+ 12 | 1.3E+ 14 |
| rAAV2/8-3Y-EGFP-Prep #2 | 1.8E+ 12 | 2.1E+ 14 |
| rAAV2/8-3Y-EGFP-Prep #3 | 6.1E+ 11 | 1.7E+ 13 |