Delivery of RIPK4 small interfering RNA for bladder cancer therapy using natural halloysite nanotubes.

Liu, Jianye; Zhang, Yi; Zeng, Qinghai; Zeng, Hongliang; Liu, Xiaoming; Wu, Pei; Xie, Hongyi; He, Leye et al. · Sci Adv · 2019

basic_science · Level V

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Abstract

RNA interference (RNAi) technology can specifically silence the expression of a target gene and has emerged as a promising therapeutic method to treat cancer. In the present study, we showed that natural halloysite nanotube (HNT)-assisted delivery of an active small interfering RNA (siRNA) targeting receptor-interacting protein kinase 4 ( <b><i>RIPK4</i></b> ) efficiently silenced its expression to treat bladder cancer. The HNTs/siRNA complex increased the serum stability of the siRNA, increased its circulation lifetime in blood, and promoted the cellular uptake and tumor accumulation of the siRNA. The siRNA markedly down-regulated <b><i>RIPK4</i></b> expression in bladder cancer cells and bladder tumors, thus inhibiting tumorigenesis and progression in three bladder tumor models (a subcutaneous model, an in situ bladder tumor model, and a lung metastasis model), with no adverse effects. Thus, we revealed a simple but effective method to inhibit bladder cancer using <b><i>RIPK4</i></b> silencing, indicating a promising therapeutic method for bladder cancer.

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