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| 1 | Menthol-modified casein nanoparticles loading 10-hydroxycamptothecin for glioma targeting therapy显示文摘Chemotherapy outcomes for the treatment of glioma remains unsatisfactory due to the inefficient drug transport across the blood–brain barrier(BBB) and insufficient drug accumulation in the tumor region. Although many approaches, including various nanosystems, have been developed to promote the distribution of chemotherapeutics in the brain tumor, the delivery efficiency and the possible damage to the normal brain function still greatly restrict the clinical application of the nanocarriers.Therefore, it is urgent and necessary to discover more safe and effective BBB penetration and gliomatargeting strategies. In the present study, menthol, one of the strongest BBB penetration enhancers screened from traditional Chinese medicine, was conjugated to casein, a natural food protein with brain targeting capability. Then the conjugate self-assembled into the nanoparticles to load anti-cancer drugs.The nanoparticles were characterized to have appropriate size, spheroid shape and high loading drug capacity. Tumor spheroid penetration experiments demonstrated that penetration ability of mentholmodified casein nanoparticles(M-CA-NP) into the tumor were much deeper than that of unmodified nanoparticles. In vivo imaging further verified that M-CA-NPs exhibited higher brain tumor distribution than unmodified nanoparticles. The median survival time of glioma-bearing mice treated with HCPT-MCA-NPs was significantly prolonged than those treated with free HCPT or HCPT-CA-NPs. HE staining ofthe organs indicated the safety of the nanoparticles. Therefore, the study combined the advantages of traditional Chinese medicine strategy with modern delivery technology for brain targeting, and provide a safe and effective approach for glioma therapy. | Caifang Gao Jianming Liang Ying Zhu Chengli Ling Zhekang Cheng Ruixiang Li Jing Qin Weigen Lu Jianxin Wang | 2019 | Acta Pharmaceutica Sinica B2019,9,4: | 12 |
| 2 | 胃食管反流病:内镜评估与治疗方面的革新显示文摘内镜技术的创新为胃食管反流病(GERD)的诊治带来了巨大进步。作为世界上最常见的胃肠疾病之一,GERD一直是内镜介入治疗的前沿。目前,GERD的初步诊断是基于症状和质子泵抑制剂(PPI)初期治疗有效,但这对治疗策略的指导价值有限。然而,内镜检查和病理活检可直接观察和判断食管的异常结构和病理生理损伤;同时,内镜治疗的出现给PPI治疗依从性较差或治疗反应不佳以及不适合行胃底折叠抗反流手术的患者提供了新的治疗选择。本综述对内镜检查和活检在经过恰当的抗反流药物治疗后持续存在GERD相关临床表现的患者中的应用情况进行了概述,并介绍了目前内镜治疗GERD的各项新技术及其优缺点。今后的研究需要对GERD患者进行分层研究,并力图阐明该疾病的主要病理生理机制。 | Sheng Chen Feng Du Changqing Zhong Caifang Liu Xiaoying Wang Yan Chen Gang Wang Xiaopei Gao Lu Zhang Lianyong Li Wei Wu | 2021 | Gastroenterology Report2021,9,5: | 4 |
| 3 | Surface modification of PGP for a neutrophil–nanoparticle co-vehicle to enhance the anti-depressant effect of baicalein显示文摘Exploiting cells as vehicles combined with nanoparticles combined with therapy has attracted increasing attention in the world recently. Red blood cells, leukocytes and stem cells have been used for tumor immunotherapy, tissue regeneration and inflammatory disorders, and it is known that neutrophils can accumulate in brain lesions in many brain diseases including depression. N-Acetyl Pro–Gly–Pro(PGP) peptide shows high specific binding affinity to neutrophils through the CXCR2 receptor. In this study, PGP was used to modify baicalein-loaded solid lipid nanoparticles(PGP-SLNs) to facilitate binding to neutrophils in vivo. Brain-targeted delivery to the basolateral amygdala(BLA) was demonstrated by enhanced concentration of baicalein in the BLA. An enhanced anti-depressant effect was observed in vitro and in vivo. The mechanism involved inhibition of apoptosis and a decrease in lactate dehydrogenase release. Behavioral evaluation carried out with rats demonstrated that anti-depression outcomes were achieved. The results indicate that PGP-SLNs decrease immobility time, increase swimming time and climbing time and attenuate locomotion in olfactory-bulbectomized(OB) rats. In conclusion, PGP modification is a strategy for targeting the brain with a cell–nanoparticle delivery system for depression therapy. | Baoyu Chen Man Luo Jianming Liang Chun Zhang Caifang Gao Jue Wang Jianxin Wang Yongji Li Desheng Xu Lina Liu Ning Zhang Huijun Chen Jing Qin | 2018 | Acta Pharmaceutica Sinica B2018,8,1: | 4 |
| 4 | A polyphenol-assisted IL-10 mRNA delivery system for ulcerative colitis显示文摘With the development of synthesis technology, modified messenger RNA(mRNA) has emerged as a novel category of therapeutic agents for a broad of diseases. However, effective intracellular delivery of mRNA remains challenging, especially for its sensitivity to enzymatic degradation. Here, we propose a polyphenol-assisted handy delivery strategy for efficient in vivo delivery of IL-10 mRNA.IL-10 mRNA binds to polyphenol ellagic acid through supramolecular binding to yield a negatively charged core, followed by complexing with linear polyetherimide and coating with bilirubin-modified hyaluronic acid to obtain a layer-by-layer nanostructure. The nanostructure specifically up-regulated the level of IL-10, effectively inhibited the expression of inflammatory factors, promoted mucosal repair, protected colonic epithelial cells against apoptosis, and exerted potent therapeutic efficacy in dextran sulfate sodium salt-induced acute and chronic murine models of colitis. The designed delivery system without systemic toxicity has the potential to facilitate the development of a promising platform for mRNA delivery in ulcerative colitis treatment. | Zhejie Chen Wei Hao Caifang Gao Yangyang Zhou Chen Zhang Jinming Zhang Ruibing Wang Yitao Wang Shengpeng Wang | 2022 | Acta Pharmaceutica Sinica B2022,12,8: | 2 |
| 5 | Van der Waals ferroelectric transistors:the all-round artificial synapses for high-precision neuromorphic computing显示文摘State number,operation power,dynamic range and conductance weight update linearity are key synaptic device performance metrics for high-accuracy and low-power-consumption neuromorphic com-puting in hardware.However,high linearity and low power consump-tion couldn’t be simultaneously achieved by most of the reported synaptic devices,which limits the performance of the hardware.This work demonstrates van der Waals(vdW)stacked ferroelectric field-effect transistors(FeFET)with single-crystalline ferroelectric nanoflakes.Ferroelectrics are of fine vdW interface and partial polar-ization switching of multi-domains under electric field pulses,which makes the FeFETs exhibit multi-state memory characteristics and ex-cellent synaptic plasticity.They also exhibit a desired linear conduc-tance weight update with 128 conductance states,a sufficiently high dynamic range of G_(max)/G_(min)>120,and a low power consumption of 10 fJ/spike using identical pulses.Based on such an all-round device,a two-layer artificial neural network was built to conduct Modified Na-tional Institute of Standards and Technology(MNIST)digital num-bers and electrocardiogram(ECG)pattern-recognition simulations,with the high accuracies reaching 97.6%and 92.4%,respectively.The remarkable performance demonstrates that vdW-FeFET is of obvious advantages in high-precision neuromorphic computing applications. | Zhongwang Wang Xuefan Zhou Xiaochi Liu Aocheng Qiu Caifang Gao Yahua Yuan Yumei Jing Dou Zhang Wenwu Li Hang Luo Junhao Chu Jian Sun | 2023 | Chip2023,2,2: | 0 |
| 6 | PINK1-mediated Drp1^(S616) phosphorylation modulates synaptic development and plasticity via promoting mitochondrial fission显示文摘Dynamic change of mitochondrial morphology and distribution along neuronal branches are essential for neural circuitry formation and synaptic efficacy.However,the underlying mechanism remains elusive.We show here that Pink1 knockout(KO)mice display defective dendritic spine maturation,reduced axonal synaptic vesicles,abnormal synaptic connection,and attenuated long-term synaptic potentiation(LTP).Drp1 activation via ^(S616) phosphorylation rescues deficits of spine maturation in Pink1 KO neurons. | Qingtao Gao Runyi Tian Hailong Han Jesse Slone Caifang Wang Xiao Ke Tongmei Zhang Xiangyu Li Yuhong He Panlin Liao Fang Wang Ye Chen Shiqing Fu Kexuan Zhang Fangfang Zeng Yingxuan Yang Zhuo Li Jieqiong Tan Jiada Li Youming Lu Taosheng Huang Zhonghua Hu Zhuohua Zhang | 2022 | Signal Transduction and Targeted Therapy2022,7,5: | 0 |