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Human Bladder Smooth Muscle Cell micro RNA

$ 245.50

4.9 (484) In stock

HBdSMC miRNA is for research use only. It is not approved for human or animal use, or for application in in vitro diagnostic procedures.Quantity: 1 μg

Human Bladder Smooth Muscle Cell microRNA (HBdSMC miRNA) is prepared from early passage Human Bladder Smooth Muscle Cells using Life Technologies' mirVanaTM miRNA Isolation Kit. The microRNA is purified by organic extraction and enriched by immobilization of RNA on glass-fiber filters. The microRNA is eluted and stored in nuclease-free water. MicroRNA from ScienCell Research Laboratories is a convenient and cost effective alternative to acquiring expensive tissues.

Primary Human Bladder Smooth Muscle Cells

Inhibition of microRNA-34c reduces detrusor ROCK2 expression and urinary bladder inflammation in experimental cystitis - ScienceDirect

Frontiers Bioinformatics Analysis Reveals MicroRNA-193a-3p Regulates ACTG2 to Control Phenotype Switch in Human Vascular Smooth Muscle Cells

The urothelium: a multi-faceted barrier against a harsh environment - Mucosal Immunology

Pharmaceutics, Free Full-Text

Frontiers A review of the biology and therapeutic implications of cancer-associated fibroblasts (CAFs) in muscle-invasive bladder cancer

Growth properties of immortalized human bladder smooth muscle cells.

Frontiers MicroRNA as an Important Target for Anticancer Drug Development

(HBdSMC) provided by Innoprot are isolated from human healthy bladder. HBdSMC are cryopreserved at passage one and delivered frozen. Each vial of

Human Bladder Smooth Muscle Cells

Growth properties of immortalized human bladder smooth muscle cells.

Urinary miRNA profiles discriminate between obstruction-induced bladder dysfunction and healthy controls

MicroRNA signature for estimating the survival time in patients with bladder urothelial carcinoma

Single-cell RNA sequencing reveals sexual diversity in the human bladder and its prospective impacts on bladder cancer and urinary tract infection, BMC Medical Genomics

Effect of miR-29b-1* and miR-29c knockdown on cell growth of the bladder cancer cell line T24 - Feng Xu, Qingling Zhang, Wen Cheng, Zhengyu Zhang, Jiandong Wang, Jingping Ge, 2013

Frontiers Improved contractile potential in detrusor microtissues from pediatric patients with end stage lower urinary tract dysfunction

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