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Creative Biolabs

HOT AAV-EF1a-mCherry-flex-dtA

[CAT#: NRZP-0622-ZP616] Review(5) Q&As(3)

Tracer Type:
Fluorescent labeling
Applications:
Neural Circuit Mapping

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To download a Certificate of Analysis, please enter a lot number in the search box below. Note: Certificate of Analysis not available for kit components.
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Product Overview

Description

The purity of these AAV preparations is suitable for injection into animals.

Tracer Type

Fluorescent labeling

Serotype

AAV2/1; AAV2/2; AAV2/4; AAV2/5; AAV2/6; AAV2/7; AAV2/8; AAV2/9; AAV2/DJ; AAV2/DJ8; AAV2/PHP.B; AAV2/PHP.eB; AAV2/PHP.S; AAV2/PHP.N; AAV2/PHP.V1; AAV2/retro; AAV2/rh10

Virus Type

Adeno-Associated Virus (AAV)

Applications

Neural Circuit Mapping

Research Areas

Neural Circuit Mapping

Promoter

EF1a
Properites

Fluorophore

mCherry

Shipping

Viral particles are shipped frozen on dry ice. Plasmid DNA (≥ 200ng) will also be included in the shipment.

Handling Advice

The lentivirus is generally referred to as BSL-2. AAV is usually considered BSL-1, but may require BSL-2 handling depending on the insert.

Storage

Store at -80°C. Thaw just before use and keep on ice.

Quality Control

Creative Biolabs ensures high-quality viral vectors by optimizing and standardizing production plans and implementing strict quality control (QC). The specific QC analysis performed for each virus batch is different.

Titer: The precise titer of the sample will be reported on the test tube. The potency you see on this page is the guaranteed minimum potency.

Research Use Only

For research use only.
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Publications (0)

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Customer Reviews and Q&As
Customer Reviews Average Customer Ratings Overall
5.0
user
Excellent
For our neural circuit mapping projects
The clarity of the mCherry fluorescence is exceptional, allowing for precise visualization of targeted neurons. The flex system ensures high specificity, and we've seen consistent expression across different brain regions. It has significantly streamlined our workflow, and the results have been reproducible across multiple experiments.
user
Excellent
Robust expression and ease of use
The mCherry signal is bright and stable, making it ideal for long-term studies. The dtA toxin ensures effective ablation of targeted cells, providing clear insights into neural circuit function. This product has greatly enhanced our research capabilities.
user
Excellent
Overall, it's a reliable tool for our experiments
We've been using AAV-EF1a-mCherry-flex-dtA in our lab for the past year to map neural circuits in mouse models. The specificity and efficiency of the viral vector have significantly improved our results.
user
Excellent
Worked as expected
We've been able to achieve highly specific and reproducible results using AAV-EF1a-mCherry-flex-dtA in our neural circuit mapping studies. It's a bit pricey, but the results justify the cost.
user
Excellent
This product has helped us obtain high-quality data and improved the overall outcomes of our experiments
AAV-EF1a-mCherry-flex-dtA has significantly improved our ability to map neural circuits in mouse models. The product is well-designed and has provided consistent results in our experiments.
Q&As
What are the recommended injection techniques for AAV-EF1a-mCherry-flex-dtA in neural circuit mapping?
For optimal results in neural circuit mapping, we recommend stereotaxic injection techniques targeting specific brain regions. This approach ensures precise localization and uniform distribution of viral particles for accurate tracing and imaging studies.
How does the AAV-EF1a-mCherry-flex-dtA vector compare with similar products in terms of expression kinetics and toxicity?
Our vector exhibits rapid onset of expression post-transduction and minimal cytotoxicity, ensuring reliable experimental outcomes and preserving neuronal viability for extended observation periods in neural circuit mapping studies.
Can AAV-EF1a-mCherry-flex-dtA be used alongside other viral vectors or fluorescent proteins in dual-labeling experiments?
Yes, researchers have successfully co-expressed AAV-EF1a-mCherry-flex-dtA with other vectors and fluorescent proteins in dual-labeling experiments. This flexibility allows for complex neural circuit analyses and multiplexed imaging studies.
For Research Use Only. Not For Clinical Use.
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