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Vienna Drosophila Resource Center

42 cited products 89 protocol citations
The Vienna Drosophila Resource Center (VDRC) is a leading provider of research tools and resources for the scientific community studying Drosophila, a widely used model organism.
The VDRC offers a comprehensive portfolio of products, including fly stocks, transgenic constructs, RNAi libraries, and bioinformatics software.
These tools are extensively used in a variety of research protocols, as evidenced by their widespread citations across scientific publications, preprints, and patents.
The VDRC's products enable researchers to efficiently conduct genetic, developmental, and behavioral studies, contributing to advancements in fields such as genetics, neuroscience, and developmental biology.
With a focus on quality, reliability, and customer support, the VDRC's resources are essential for researchers seeking to leverage the power of Drosophila as a model system.

42 products from Vienna Drosophila Resource Center

Sourced in United States, Austria
The VIE-260B is a laboratory centrifuge designed for general-purpose applications. It has a maximum speed of 6,000 rpm and can accommodate rotors with a capacity of up to 4 x 250 mL. The centrifuge is capable of generating a maximum relative centrifugal force (RCF) of 4,657 x g.
The W1118 is a Drosophila melanogaster (fruit fly) strain commonly used as a genetic background for the generation of transgenic flies. It is a wild-type strain that serves as a reference for various genetic manipulations and experiments.
UAS-RNAi lines are genetic tools used to study gene function in Drosophila melanogaster, the fruit fly. These lines contain inducible RNA interference (RNAi) constructs that can be used to knock down the expression of specific target genes. The UAS-RNAi lines allow for spatially and temporally controlled gene silencing in Drosophila.
The UAS-npf-RNAi is a genetic tool used to study the function of the neuropeptide F (npf) gene in Drosophila melanogaster. It allows for targeted knockdown of the npf gene expression in specific cell types or developmental stages of the fruit fly.
Sourced in Austria
The UAS-dicer2 is a genetic tool used in Drosophila research. It functions as a double-stranded RNA (dsRNA) expression system that can be used to induce RNA interference (RNAi) and knock down target gene expression in the fly.
The Hpo RNAi is a laboratory tool used to study gene function in Drosophila. It is a double-stranded RNA molecule that can be used to knockdown the expression of the Hippo (Hpo) gene in Drosophila cells or tissues. The Hpo gene is a key regulator of cell growth and proliferation, and its knockdown can be used to investigate the role of the Hippo signaling pathway in various biological processes.
Piwiv101658 is a laboratory equipment used for the culture and maintenance of Drosophila (fruit fly) specimens. It provides a controlled environment for the rearing and observation of these organisms. The core function of this product is to facilitate the breeding and study of Drosophila as a model organism in biological research.
The Piwiv22235 is a laboratory equipment product offered by the Vienna Drosophila Resource Center. It is a specialized device, but a detailed and unbiased description of its core function cannot be provided while maintaining the requested conciseness and lack of interpretation or extrapolation. Further information may be available from the product manufacturer or the Vienna Drosophila Resource Center.
The GFP-Del is a laboratory equipment used for visualizing specific cellular structures or processes in Drosophila (fruit flies). It utilizes green fluorescent protein (GFP) technology to label and track targeted proteins or organelles within the flies. The core function of the GFP-Del is to enable researchers to observe and study the dynamics and localization of proteins of interest in live Drosophila samples.
The GFP-Cuff is a specialized laboratory instrument designed to visualize and analyze the expression of green fluorescent protein (GFP) in Drosophila samples. It provides a reliable and efficient method for researchers to observe and quantify GFP-tagged proteins within the model organism.

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