Gradient Release Drug Composite Nanofibrous Membrane Designed for Preventing Tumor Recurrence and Repair of Postoperative Bladder Cancer Defect

Author:

Huang Yiqiao1,Mao Yun-Yi2,Zeng Guohao1,You Huimin3,Lai Dehui1,Bian Jun1,Chen Jiahui1,Zhao Shuo4,Ren Congling4,Pan Xiaolin4,Liang Xue1,Dong Weimin1,Zhang Zhiming1,Jin Lin1,Jiang Xianhan1

Affiliation:

1. Department of Urology, The Fifth Affiliated Hospital of Guangzhou Medical University, Key Laboratory of Biological Targeting Diagnosis, Therapy and Rehabilitation of Guangdong Higher Education Institutes, Guangzhou, 510700, PR China

2. Department of Urology, Jiangxi Provincial People’s Hospital, The First Affiliated Hospital of Nanchang Medical College, Nanchang, 330006, China

3. Department of Endocrinology, The Fifth Affiliated Hospital of Guangzhou Medical University, 510700, PR China

4. International Joint Research Laboratory for Biomedical Nanomaterials of Henan, Zhoukou Normal University, Zhoukou, 466001, PR China

Abstract

Bladder tumor is the most common tumor in urology. Tumor resection as a conventional therapy is usually used in the clinical treatment. However, the electric incision wound produced during the operation is generally deep into the muscle layer. In addition, the multiple tumors and the large wound sites will bring complications. These outcomes increase the pain and the economic burden of patients. Herein, a composite nanofibers-drug release system (CNFs-DRS) was designed based on the various degradable nanofibers. The experimental results show that the prepared CNFs-DRS exhibits good biocompatibility, and the anti-tumor drugs (pirarubicin) carried by the first layer are released rapidly within 2–4 h with the ability to kill tumor cells. The second layer consists of slow-degrading material and basic fibroblast growth factor (bFGF), which shows a long-term and stable release, and promotes the proliferation of smooth muscle cells and the proliferation of urine-derived stem cells (USCs). The third layer (PLLA layer) can maintain the morphology of the composite membrane. The obtained CNFs-DRS can replace and simplify the clinical operation of bladder chemical drug perfusion within 24 h after operation, immediately kill the residual tumor cells in the bladder, and support and repair the wound after tumor resection.

Publisher

American Scientific Publishers

Subject

Pharmaceutical Science,General Materials Science,Biomedical Engineering,Medicine (miscellaneous),Bioengineering

Reference39 articles.

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