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Merck
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主要文件

EHU064831

Sigma-Aldrich

MISSION® esiRNA

targeting human IFT88

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About This Item

分類程式碼代碼:
41105324
NACRES:
NA.51

描述

Powered by Eupheria Biotech

品質等級

產品線

MISSION®

形狀

lyophilized powder

esiRNA cDNA 標靶序列

ATTATGAGAAGGCCGCTGAATTCTATAAAGAGGCTCTAAGAAATGATTCTTCTTGTACTGAAGCACTTTATAATATTGGCCTTACCTATGAGAAACTAAATCGGCTAGATGAGGCTTTGGACTGTTTCCTGAAACTTCACGCAATCCTACGAAACAGTGCCGAAGTTCTTTACCAGATAGCAAATATATATGAATTAATGGAAAATCCCAGTCAAGCTATTGAATGGCTAATGCAGGTGGTCAGTGTTATTCCAACCGATCCTCAAGTTTTATCTAAGCTAGGAGAATTATATGATCGTGAAGGAGATAAATCTCAAGCATTTCAATATTACTATGAGTCATATAGGTATTTTCCTTGTAATATTGAAGTCATTGAGTGGCTTGGAGCCTATTACATTGACACCCAATTTTGGGA

Ensembl | 人類登錄號

NCBI登錄號

運輸包裝

ambient

儲存溫度

−20°C

基因資訊

一般說明

MISSION® esiRNA are endoribonuclease prepared siRNA. They are a heterogeneous mixture of siRNA that all target the same mRNA sequence. These multiple silencing triggers lead to highly-specific and effective gene silencing.

For additional details as well as to view all available esiRNA options, please visit SigmaAldrich.com/esiRNA.

法律資訊

MISSION is a registered trademark of Merck KGaA, Darmstadt, Germany

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儲存類別代碼

10 - Combustible liquids

閃點(°F)

Not applicable

閃點(°C)

Not applicable


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Chondroprogenitors and hypertrophic chondrocytes, which are the first and last stages of the chondrocyte differentiation process, respectively, are sensitive to mechanical signals. We hypothesize that the mechanical sensitivity of these cells depends on the cell surface primary cilia. To test
Daolu Zhan et al.
Molecular medicine reports, 16(5), 6590-6599 (2017-09-14)
Intraflagellar transport protein 88 (IFT88) is protein crucial for the assembly and maintenance of primary cilia in chondrocytes. Primary cilia regulate mechanical and chemical signals in chondrocytes; however, the effects of cytokines on IFT88 expression and cilia formation and maintenance
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Endocrine gland-derived vascular endothelial growth factor (EG-VEGF) is a critical factor that facilitates trophoblast invasion in placenta. Plasma miR-141 and miR-200a levels were elevated, while EG-VEGF was decreased in peripheral blood and placenta of preeclamptic patients. Furthermore, numbers of cilia
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It is well documented that microgravity in space environment leads to bone loss in astronauts. These physiological changes have also been validated by human and animal studies and modeled in cell-based analogs. However, the underlying mechanisms are elusive. In the

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