qPCR AAV Titer Kit

Cat. No.
G931
Unit
100 rxn
Price
$212.00
Cat. No. G931
Name qPCR AAV Titer Kit
Unit 100 rxn
Category qPCR Virus Titer Kits
Description

abm’s qPCR AAV Titer Kit is a one-step assay featuring a rapid lysis step followed by qPCR, providing high sensitivity and specificity for accurate AAV titer quantification. Designed to minimize non-specific background, the kit outperforms similar products in both reliability and performance. The MasterMix contains a dye similar to SYBR Green™ and EvaGreen®, enhancing amplification efficiency, while the ROX reference dye is provided separately to ensure compatibility with most qPCR instruments. For detailed instrument compatibility, refer to our ROX Machine Compatibility Chart.

Product Component Quantity
BlasTaq™ 2X qPCR Titer MasterMix 1.25 ml
Primer Mix 100 rxn (200 µl)
Virus Lysis Buffer 800 µl
Standard Control DNA 50 µl
DNase I Reaction Mix 2 x 1.0 ml
ROX Reference Dye 15 µl
Nuclease-Free H2O 2 x 1.0 ml
ISO 13485:2016 MDSAP Certified

ISO 13485:2016 MDSAP Certified
Our PCR Products are manufactured under a Quality Management System conforming with ISO 13485:2016 as certified by Intertek (a MDSAP recognized auditing organization).

Storage Condition

Store at -20°C. This product is stable for 2 years from the date of shipping if stored and handled properly. 

Note

qPCR AAV Titer Kit comes with a separate vial of ROX Reference Dye which can be added depending on the qPCR machine type, as listed in the table below.

MACHINE TYPE MACHINE
High ROX Machines
  • ABI ® 7000, 7300, 7700, 7900, 7900HT, StepOnePlus™, StepOne™, OpenArray, PRISM™ Sequencing Detection Series
  • Biometra TOptical
  • Fluidigm BioMark™
  • Wafergene SmartChip System
  • TianLong TL998 System
Low ROX Machines
  • ABI® 7500, 7500 Fast, Viia™ 7, QuantStudio, QuantStudio 3/5/6/7
  • BioGene InSyte™
  • Illumina Eco
  • Analytikjena qTower Series
  • Stratagene® Mx3000, Mx3005, Mx4000
No ROX machines
  • BioRad® CFX96, CFX384, Chromo4™, CFX Connect™, Opticon 2, MiniOpticon™
  • Roche LightCycler® (480, 1536, Nano)
  • MJ Research Opticon™, Opticon™ 2, Chromo® 4
  • Eppendorf™ Realplex 4
  • BioGene SynChron™
  • Corbett Rotor-gene® (3000, 6200, 62H0, 6500, 65H0, 6600)
  • Eppendorf Mastercycler® realplex (s, 4 , 4s), Pro (S, 384), Nexus (gradient, eco, flat)
  • Cepheid SmartCyler, GeneXpert
  • Enigma™ ML
  • Idaho LightScanner® (24, 32), RapidCycler®2, R.A.P.I.D (LT, LT Food), RAZOR EX, JBAIDS
  • Qiagen Rotor-Gene™ (Q, 6000)
  • Takara Dice™
  • Thermo Scientific PikoReal
  • DNA-Technology DT96, DTlite, DT-322
  • Bioer LineGene (3310/3320, K FQD-48A, I, II, 9620, 9640, 9660, 9680)
  • Bioneer Exicycler™
Material Citation If use of this material results in a scientific publication, please cite the material in the following manner: Applied Biological Materials Inc, Cat. No. G931
Search CoA here
MSDS
Supporting Protocol
  • Tanaka, Y., Kadota, S., Zhao, J. et al. Mature human induced pluripotent stem cell-derived cardiomyocytes promote angiogenesis through alpha-B crystallin. Stem Cell Res Ther 14, 240 (2023). https://doi.org/10.1186/s13287-023-03468-4
  • Boss‐Kennedy, A., Kim, D., Barai, P., Maldonado, C., Reyes‐Ordoñez, A., & Chen, J. (2024). Muscle cell‐derived Ccl8 is a negative regulator of skeletal muscle regeneration. The FASEB Journal, 38(14), e23841. https://doi.org/10.1096/fj.202400184R

    Deroyer, C., Poulet, C., Paulissen, G. et al. CEMIP (KIAA1199) regulates inflammation, hyperplasia and fibrosis in osteoarthritis synovial membrane. Cell. Mol. Life Sci. 79, 260 (2022). https://doi.org/10.1007/s00018-022-04282-6

    Ishiwata, R., & Morimoto, Y. (2022). Hyperphosphatemia-induced degradation of transcription factor EB exacerbates vascular calcification. Biochimica et Biophysica Acta (BBA)-Molecular Basis of Disease, 1868(3), 166323. https://doi.org/10.1016/j.bbadis.2021.166323

    Kirk, R. W., Sun, L., Xiao, R., Clark, E. A., & Nelson, S. (2025). Multiplexed CRISPRi Reveals a Transcriptional Switch Between KLF Activators and Repressors in the Maturing Neocortex. bioRxiv, 2025-02. https://doi.org/10.1101/2025.02.07.636951

    Li, Y., Nguyen, J. T., Ammanamanchi, M., Zhou, Z., Harbut, E. F., Mondaza-Hernandez, J. L., ... & Bleris, L. (2023). Reduction of Tumor Growth with RNA-Targeting Treatment of the NAB2–STAT6 Fusion Transcript in Solitary Fibrous Tumor Models. Cancers, 15(12), 3127. https://doi.org/10.3390/cancers15123127

    McGinnis, J. P., Ortiz-Guzman, J., Guevara, M. C., Mallannagari, S., Belfort, B. D., Bao, S., ... & Arenkiel, B. R. (2024). Common AAV gene therapy vectors show indiscriminate transduction of living human brain cell types. bioRxiv. https://doi.org/10.1101/2024.11.14.623624

    Tanaka, Y., Kadota, S., Zhao, J. et al. Mature human induced pluripotent stem cell-derived cardiomyocytes promote angiogenesis through alpha-B crystallin. Stem Cell Res Ther 14, 240 (2023). https://doi.org/10.1186/s13287-023-03468-4 

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