1.Cause and management of delayed hemorrhage after minimally invasive percutaneous nephrolithotomy
Muchun ZHANG ; Jihong ZHU ; Qiyan PIAO ; Gang ZHANG ; Yonggang WANG ; Ji GAO ; Yun ZHANG ; Lin LIU ; Jiwen WANG
Chinese Journal of Urology 2010;31(12):822-824
Objective To discuss the cause and management of delayed hemorrhage after minimally invasive percutaneous nephrolithotomy (PCNL). Methods From 2004 to 2009,there were 13 cases (10 men and 3 women, mean age 47 years) developed severe bleeding following PCNL. The cause of hemorrhage and treatments were retrospectively analyzed and summarized. Results The time of hemorrhage was 5-40 d. In 7 of 13 cases, the bleeding were was controlled by complete bed rest,hemostatic,balloon compression and clamped nephrostomy tube. Six of 13 underwent selective renal arteriography after ineffective with conservative treatment. The DSA showed 4 were false aneurysm and 2 were arteriovenous fistula. All the 6 cases were treated by the super-selective arteriolar embolization. The hematuria was disappeared 1- 3 d later. The intravenous pyelogram revealed the renal function kept well during follow-up visit. Conclusions Delayed hemorrhage is one of the severe complications, which may be caused when the renal puncture passage established as forming false aneurysm and arteriovenous fistula. The renal arteriography and super-selective arteriolar embolization could be a safe and effective treatment for the severe hemorrhage after PCNL.
2.Preparation of mesoporous silica nanoparticles with different sizes and study on the correlation between size and toxicity
Xiao-wei XIE ; Meng-ying CHENG ; Wei-xiang FANG ; Xue LIN ; Wen-ting GU ; Kai-ling YU ; Ting-xian YE ; Wei-yi CHENG ; Li HE ; Hang-sheng ZHENG ; Ying-hui WEI ; Ji-gang PIAO ; Fan-zhu LI
Acta Pharmaceutica Sinica 2023;58(8):2512-2521
To investigate the crucial role of particle size in the biological effects of nanoparticles, a series of mesoporous silica nanoparticles (MSNs) were prepared with particle size gradients (50, 100, 150, 200 nm) with the traditional Stober method and adjusting the type and ratio of the silica source. The correlation between toxicity and size-caused biological effects were then further examined both
3.Photothermal/matrix metalloproteinase-2 dual-responsive gelatin nanoparticles for breast cancer treatment.
Xiaojie CHEN ; Jiafeng ZOU ; Ke ZHANG ; Jingjing ZHU ; Yue ZHANG ; Zhihong ZHU ; Hongyue ZHENG ; Fanzhu LI ; Ji-Gang PIAO
Acta Pharmaceutica Sinica B 2021;11(1):271-282
The chemotherapy combined with photothermal therapy has been a favorable approach for the treatment of breast cancer. In present study, nanoparticles with the characteristics of photothermal/matrix metalloproteinase-2 (MMP-2) dual-responsive, tumor targeting, and size-variability were designed for enhancing the antitumor efficacy and achieving "on-demand" drug release markedly. Based on the thermal sensitivity of gelatin, we designed a size-variable gelatin nanoparticle (GNP) to encapsulate indocyanine green (ICG) and doxorubicin (DOX). Under an 808 nm laser irradiation, GNP-DOX/ICG responded photothermally and swelled in size from 71.58 ± 4.28 to 160.80 ± 9.51 nm, which was beneficial for particle retention in the tumor sites and release of the loaded therapeutics. Additionally, GNP-DOX/ICG showed a size reduction of the particles to 33.24 ± 4.11 nm and further improved drug release with the degradation of overexpressed MMP-2 in tumor. In the subsequently performed
4.Preparation of mitochondrial targeted calcium arsenite/doxorubicin lipid nanoparticles and the in vitro study in reversing tumor drug resistance
Ke ZHANG ; Tian-xiang YUE ; Meng-ying CHENG ; Zeng-ying LIANG ; Ji-gang PIAO ; Hong-yue ZHENG ; Heng-wu XU ; Fan-zhu LI
Acta Pharmaceutica Sinica 2021;56(12):3243-3251
This study aims at the critical role of P-glycoprotein (P-gp) in tumor drug resistance, taking advantage of the adenosine triphosphate (ATP) dependence of P-gp mediated drug transport and efflux across the cell membrane. Mitochondrial targeted calcium arsenite/doxorubicin (DOX) lipid nanoparticles were constructed
5.Cooperative coordination-mediated multi-component self-assembly of "all-in-one" nanospike theranostic nano-platform for MRI-guided synergistic therapy against breast cancer.
Xiaojie CHEN ; Xudong FAN ; Yue ZHANG ; Yinghui WEI ; Hangsheng ZHENG ; Dandan BAO ; Hengwu XU ; Ji-Gang PIAO ; Fanzhu LI ; Hongyue ZHENG
Acta Pharmaceutica Sinica B 2022;12(9):3710-3725
Carrier-free multi-component self-assembled nano-systems have attracted widespread attention owing to their easy preparation, high drug-loading efficiency, and excellent therapeutic efficacy. Herein, MnAs-ICG nanospike was generated by self-assembly of indocyanine green (ICG), manganese ions (Mn2+), and arsenate (AsO4 3-) based on electrostatic and coordination interactions, effectively integrating the bimodal imaging ability of magnetic resonance imaging (MRI) and fluorescence (FL) imaging-guided synergistic therapy of photothermal/chemo/chemodynamic therapy within an "all-in-one" theranostic nano-platform. The as-prepared MnAs-ICG nanospike had a uniform size, well-defined nanospike morphology, and impressive loading capacities. The MnAs-ICG nanospike exhibited sensitive responsiveness to the acidic tumor microenvironment with morphological transformation and dimensional variability, enabling deep penetration into tumor tissue and on-demand release of functional therapeutic components. In vitro and in vivo results revealed that MnAs-ICG nanospike showed synergistic tumor-killing effect, prolonged blood circulation and increased tumor accumulation compared to their individual components, effectively resulting in synergistic therapy of photothermal/chemo/chemodynamic therapy with excellent anti-tumor effect. Taken together, this new strategy might hold great promise for rationally engineering multifunctional theranostic nano-platforms for breast cancer treatment.