Upk3b-Dre
모델명
C57BL/6Smoc-Upk3bem1(Dre-Wpre-polyA)Smoc
카탈로그
NM-KI-200175
모델 상태
Sperm cryopreservation
유전자 요약
Gene Symbol
Upk3b
모델 설명
검증 데이터

Fig 1. Dre-mediated recombination in lung of Upk3bDre/+; Rosa26CAG-RSR-tdTomato-2A-DTR/+ mice.

Fig 2. Dre-mediated recombination in lung of Upk3bDre/+; Rosa26CAG-RSR-tdTomato-2A-DTR/+ male mice.

Fig 3. Dre-mediated recombination in heart of Upk3bDre/+; Rosa26CAG-RSR-tdTomato-2A-DTR/+ male mice.

Fig 4. Detection of tdTomato (red) in various tissues of Upk3bDre/+; Rosa26CAG-RSR-tdTomato-2A-DTR/+ mice.
In female mice, tdTomato expression was observed in the heart, lungs, liver, kidneys, bladder, vagina, and reproductive system. No obvious expression was detected in the brain, while a low level of expression was found in the spinal cord.
In male mice, tdTomato expression was observed in the heart, lungs, liver, kidneys, bladder, prostate, and reproductive system. No obvious expression was detected in the brain, while a low level of expression was found in the spinal cord.
(37-days old, female and male) (For more detailed information please contact our technical advisor.)

Fig 5. Detection of tdTomato (red) in various tissues of Upk3bDre/+; Rosa26CAG-RSR-tdTomato-2A-DTR/+ male mice.
In mice without DT induction, tdTomato expression was observed in the spinal cord, heart, lungs, liver, kidneys, bladder, prostate, and reproductive system.
Following DT induction, tdTomato expression was significantly reduced in the spinal cord, heart, lungs, liver, bladder, prostate, and reproductive system, while no significant change in expression was detected in the kidneys.
(59-days old, male) (For more detailed information please contact our technical advisor.)
당신은 또한 좋아할 수 있습니다
On Dec 16, 2018, Broad Institute and Shanghai Model Organisms Center Inc (SMOC) has entered into a non-exclusive license agreement under which Broad has granted SMOC worldwide rights to commercialize a service platform for genetically modified mouse models under Broad's intellectual property.
조회At GenoBioTX, we understand that the lengthy wait times for gene-modified mouse models can hinder your research progress. Traditional methods often require 6-9 months, leading to delays and increased costs. That’s why we’re thrilled to introduce our innovative service designed to streamline this process and deliver results faster.
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