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| 1 | Clinical and biochemical indexes from 2019-nCoV infected patients linked to viral loads and lung injury显示文摘The outbreak of the 2019-nCoV infection began in December 2019 in Wuhan,Hubei province,and rapidly spread to many provinces in China as well as other countries.Here we report the epidemiological,clinical,laboratory,and radiological characteristics,as well as potential biomarkers for predicting disease severity in 2019-nCoV-infected patients in Shenzhen,China.All 12 cases of the 2019-nCoV-infected patients developed pneumonia and half of them developed acute respiratory distress syndrome (ARDS).The most common laboratory abnormalities were hypoalbuminemia,lymphopenia,decreased percentage of lymphocytes (LYM) and neutrophils (NEU),elevated C-reactive protein (CRP) and lactate dehydrogenase (LDH),and decreased CD8 count.The viral load of 2019-nCoV detected from patient respiratory tracts was positively linked to lung disease severity.ALB,LYM,LYM (%),LDH,NEU (%),and CRP were highly correlated to the acute lung injury.Age,viral load,lung injury score,and blood biochemistry indexes,albumin (ALB),CRP,LDH,LYM (%),LYM,and NEU (%),may be predictors of disease severity.Moreover,the Angiotensin Ⅱlevel in the plasma sample from 2019-nCoV infected patients was markedly elevated and linearly associated to viral load and lung injury.Our results suggest a number of potential diagnosis biomarkers and angiotensin receptor blocker (ARB) drugs for potential repurposing treatment of 2019-nCoV infection. | Yingxia Liu Yang Yang Cong Zhang Fengming Huang Fuxiang Wang Jing Yuan Zhaoqin Wang Jinxiu Li Jianming Li Cheng Feng Zheng Zhang Lifei Wang Ling Peng Li Chen Yuhao Qin Dandan Zhao Shuguang Tan Lu Yin Jun Xu Congzhao Zhou Chengyu Jiang Lei Liu | 2020 | Science China(Life Sciences)2020,63,3: | 157 |
| 2 | Cobalt-based metal-organic framework as a dual cooperative controllable release system for accelerating diabetic wound healing显示文摘Nano Research volume 13,pages2268–2279(2020)Cite this article 131 Accesses 1 Altmetric Metrics details Abstract Insufficient angiogenesis in the chronic wound of the diabetic is one of the most important causes that making the wound unable to heal itself.In this work,a cobalt-based metal–organic framework(ZIF-67)was introduced as a carrier for loading a pro-angiogenic small molecular drug(dimethyloxalylglycine,DMOG).To achieve a long-term angiogenic therapy on the diabetic wound beds,a dual cooperative controllable release system has been designed by incorporating the drug-loaded ZIF-67 nanoparticles into the micro-patterned PLLA/Gelatin nanofibrous scaffolds.The results showed that DMOG was incorporated into ZIF-67 with a high loading ratio(359.12 mg/g),and the drug-loaded ZIF-67 nanoparticles were well embedded in the circular patterned scaffold.Notably,the DMOG as well as Co ions could continuously release from the scaffold for more than 15 days.The in vitro studies showed that the released Co ions and DMOG from the micropatterned nanofibrous scaffolds could synergistically promote the proliferation,migration and tube formation of the human umbilical vein endothelial cells(HUVECs)by inducing a hypoxia response and upregulating the expression of angiogenesis-related genes such as HIF-1α,VEGF and e-NOS.Furthermore,the in vivo results demonstrated that the composite scaffolds could significantly enhance angiogenesis,collagen deposition and eliminate inflammation in the diabetes wounds.These results indicate that the cobalt-based metal–organic framework as a dual cooperative controllable release system provides a new strategy for enhancing angiogenesis and promoting diabetic wound healing. | Jiankai Li Fang Lv Jinxiu Li Yuxin Li Jingduo Gao Jian Luo Feng Xue Qinfei Ke He Xu | 2020 | Nano Research2020,13,8: | 1 |
| 3 | Association of Hemoglobin Levels, CYP3AS, and NRII3 Gene Polymorphisms with Tacrolimus Pharmacokinet- ics in Liver Transplant Patients, Drug Metab 显示文摘 | Dawei Chen Feng Guo Jinxiu Shi | 2014 | Pharmacokinet2014,29,3: | 1 |
| 4 | Active-site and interface engineering of cathode materials for aqueous Zn–gas batteries显示文摘Aqueous rechargeable Zn–gas batteries are regarded as promising energy storage and conversion devices due to their high safety and inherent environmental friendliness.However,the energy efficiency and power density of Zn–gas batteries are restricted by the kinetically sluggish cathode reactions,such as oxygen evolution reaction(OER)during charging and oxygen reduction reaction(ORR)/carbon dioxide reduction reaction(CO_(2)RR)/nitrogen reduction reaction(NRR)/nitric oxide reduction reaction(NORR)during discharge.In this review,battery configurations and fundamental reactions in Zn–gas batteries are first introduced,including Zn–air,Zn-CO_(2),Zn-N_(2),and Zn-NO batteries.Afterward,recent advances in active site engineering for enhancing the intrinsic catalytic activities of cathode catalysts are summarized.Subsequently,the structure and surface regulation strategies of cathode materials for optimizing the three-phase interface and improving the performance of Zn–gas batteries are discussed.Finally,some personal perspectives for the future development of Zn–gas batteries are presented. | Wenxian Liu Jinxiu Feng Tianran Wei Qian Liu Shusheng Zhang Yang Luo Jun Luo Xijun Liu | 2023 | Nano Research2023,16,2: | 1 |
| 5 | Laboratory Diagnosis and Monitoring the Viral Shedding of SARS-CoV-2 Infection显示文摘The worldwide epidemic of coronavirus disease 2019(COVID-19)is ongoing.Rapid and accurate detection of the causative virus SARSCoV-2 is vital for the treatment and control of COVID-19.In this study,the comparative sensitivity of different respiratory specimen types were retrospectively analyzed using 3,552 clinical samples from 410 COVID-19 patients confirmed by Guangdong CDC(Center for Disease Control and Prevention).Except for bronchoalveolar lavage fluid(BALF),the sputum possessed the highest positive rate(73.4%–87.5%),followed by nasal swabs(53.1%–85.3%)for both severe and mild cases during the first 14 days after illness onset(d.a.o.).Viral RNA could be detected in all BALF samples collected from the severe group within 14 d.a.o.and lasted up to 46 d.a.o.Moreover,although viral RNA was negative in the upper respiratory samples,it was also positive in BALF samples in most cases from the severe group during treatment.Notably,no viral RNA was detected in BALF samples from the mild group.Despite typical ground-glass opacity observed via computed tomographic scans,no viral RNA was detected in the first three or all upper respiratory tract specimens from some COVID-19 patients.In conclusion,sputum is most sensitive for routine laboratory diagnosis of COVID-19,followed by nasal swabs.Detection of viral RNA in BALF improves diagnostic accuracy in severe COVID-19 patients. | Yang Yang Minghui Yang Jing Yuan Fuxiang Wang Zhaoqin Wang Jinxiu Li Mingxia Zhang Jinli Wei Ling Peng Gary Wong Haixia Zheng Weibo Wu Chenguang Shen Mingfeng Liao Kai Feng Jianming Li Qianting Yang Juanjuan Zhao Lei Liu Yingxia Liu | 2020 | The Innovation2020,1,3: | 1 |
| 6 | Non-noble-metal electrocatalysts for oxygen evolution reaction toward seawater splitting: A review显示文摘The direct electrolytic splitting of abundant seawater instead of scarce freshwater is an ideal strategy for producing clean and renewable hydrogen(H 2)fuels.The oxygen evolution reaction(OER)is a vital half-reaction that occurs during electrochemical seawater splitting.However,OER suffers from sluggish four-electron transfer kinetics and competitive chlorine evolution reactions in seawater.Noble metal-based catalysts such as IrO_(2) and RuO_(2) are considered to have state-of-the-art OER electrocatalytic activity,but the low reserves and high prices of these noble metals significantly limit their large-scale application.Recently,efforts have been made to explore efficient,robust,and anti-chlorine-corrosion non-noble-metal OER electrocatalysts for seawater splitting such as oxides,hydroxides,phosphides,nitrides,chalcogenides,alloys,and composites.An in-depth understanding of the fundamentals of seawater electrolysis and the design principle of electrode materials is important for promoting seawater-splitting technology.In this review,we first introduce fundamental reactions in seawater electrolytes.Subsequently,construction strategies for OER electrocatalysts for seawater splitting are introduced.Finally,present challenges and perspectives regarding non-noble-metal OER electrocatalysts for commercial H 2 production by seawater splitting are discussed. | Zhengguang Qin Wenxian Liu Wenbin Que Jinxiu Feng Wenhui Shi Fangfang Wu Xiehong Cao | 2023 | ChemPhysMater2023,2,3: | 0 |
| 7 | TRIM31 facilitates K27-linked polyubiquitination of SYK to regulate antifungal immunity显示文摘Spleen tyrosine kinase(SYK)is a non-receptor tyrosine kinase,which plays an essential role in both innate and adaptive immunity.However,the key molecular mechanisms that regulate SYK activity are poorly understood.Here we identified the E3 ligase TRIM31 as a crucial regulator of SYK activation.We found that TRIM31 interacted with SYK and catalyzed K27-linked polyubiquitination at Lys375 and Lys517 of SYK.This K27-linked polyubiquitination of SYK promoted its plasma membrane translocation and binding with the C-type lectin receptors(CLRs). | Xueer Wang Honghai Zhang Zhugui Shao Wanxin Zhuang Chao Sui Feng Liu Xiaorong Chen Jinxiu Hou Lingli Kong Hansen Liu Yi Zheng Bingyu Liu Tian Chen Lei Zhang Xinming Jia Chengjiang Gao | 2021 | Signal Transduction and Targeted Therapy2021,6,9: | 0 |
| 8 | A nanocomposite competent to overcome cascade drug resistance in ovarian cancer via mitochondria dysfunction and NO gas synergistic therapy显示文摘Ovarian cancer(OC)is one of the most common and recurring malignancies in gynecology.Patients with relapsed OC always develop'cascade drug resistance'(CDR)under repeated chemotherapy,leading to subsequent failure of chemotherapy.To overcome this challenge,amphiphiles(P1)carrying a nitric oxide(NO)donor(Isosorbide 5-mononitrate,ISMN)and high-density disulfide are synthesized for encapsulatingmitochondria-targeted tetravalent platinum prodrug(TPt)to construct a nanocomposite(INP@TPt).Mechanism studies indicated that INP@TPt significantly inhibited drug-resistant cells by increasing cellular uptake and mitochondrial accumulation of platinum,depleting glutathione,and preventing apoptosis escape through generating highly toxic peroxynitrite anion(ONOO−).To better replicate the microenvironmental and histological characteristics of the drug resistant primary tumor,an OC patient-derived tumor xenograft(PDXOC)model in BALB/c nude mice was established.INP@TPt showed the best therapeutic effects in the PDXOC model.The corresponding tumor tissues contained high ONOO−levels,which were attributed to the simultaneous release of O_(2)^(·−)and NO in tumor tissues.Taken together,INP@TPtbased systematic strategy showed considerable potential and satisfactory biocompatibility in overcoming platinum CDR,providing practical applications for ovarian therapy. | Min Zhong Peiqin Liang Zhenzhen Feng Xin Yang Guang Li Rui Sun Lijuan He Jinxiu Tan Yangpengcheng Xiao Zhiqiang Yu Muhua Yi Xuefeng Wang | 2023 | Asian Journal of Pharmaceutical Sciences2023,18,6: | 0 |