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| 1 | Beclin-1/LC3-II dependent macroautophagy was uninfluenced in ischemia-challenged vascular endothelial cells显示文摘Autophagy has been extensively studied and occurs in many biological settings.However,a question remains as to whether ischemia enhances Beclin-1/LC3-II-dependent macroautophagy in vascular endothelial cells,as has been previously thought.Furthermore,the effect of the level of autophagy on cell or skin flap survival still requires elucidation.We created a lethal ischemia model in human umbilical vascular endothelial cells(HUVECs),performed quantitative proteomics and bioinformatics analyses,and verified the autophagic status and effect both in vitro and in vivo.The significantly upregulated proteins encoded by autophagy-related genes(ATGs)included ATG2A,ATG3,ATG4B,ATG5,ATG7,ATG9A,ATG12,ATG16,and ATG101.The significantly enhanced lysosomal proteins were cathepsin B,cathepsin D,lysosome-associated membrane protein 1(LAMP1),and LAMP2.However,the differentially expressed proteins excluded Beclin-1,microtubule-associated protein light chain 3(LC3)-I,and LC3-II.Western blot analyses verified that the protein expression levels of Beclin-1,LC3-I,and LC3-II were neither upregulated nor downregulated in ischemia-challenged HUVECs.The autophagic status was not enhanced by rapamycin in ischemic HUVECs but appeared to be inhibited by chloroquine.Our in vivo study on rats showed that a downregulation in autophagic status jeopardized skin flap survival.In conclusion,Ischemia neither enhanced nor inhibited Beclin-1/LC3-II-dependent canonical macroautophagy both in vitro and in vivo,in contradiction to previous studies.An appropriate autophagic homeostasis can minimize cell or skin flap damage. | Yaping Ma Chaofan Li Yan He Tiwei Fu Li Song Qingsong Ye Fugui Zhang | 2022 | Genes & Diseases2022,9,2: | 3 |
| 2 | Existing tests vs. novel non-invasive assays for detection of invasive aspergillosis in patients with respiratory diseases显示文摘Background: Although existing mycological tests (bronchoalveolar lavage [BAL] galactomannan [GM], serum GM, serum (1,3)-β-D-glucan [BDG], and fungal culture) are widely used for diagnosing invasive pulmonary aspergillosis (IPA) in non-hematological patients with respiratory diseases, their clinical utility in this large population is actually unclear. We aimed to resolve this clinical uncertainty by evaluating the diagnostic accuracy and utility of existing tests and explore the efficacy of novel sputum-basedAspergillus assays.Methods: Existing tests were assessed in a prospective and consecutive cohort of patients with respiratory diseases in West China Hospital between 2016 and 2019 while novel sputum assays (especially sputum GM andAspergillus-specific lateral-flow device [LFD]) in a case-controlled subcohort. IPA was defined according to the modified European Organization for Research and Treatment of Cancer/Mycoses Study Group criteria. Sensitivity and specificity were computed for each test and receiver operating characteristic (ROC) curve analysis was performed.Results: The entire cohort included 3530 admissions (proven/probable IPA=66, no IPA=3464) and the subcohort included 127 admissions (proven/probable IPA=38, no IPA=89). Sensitivity of BAL GM (≥1.0 optical density index [ODI]: 86% [24/28]) was substantially higher than that of serum GM (≥0.5 ODI: 38% [39/102]) (χ^(2)=19.83,P<0.001), serum BDG (≥70 pg/mL: 33% [31/95]) (χ^(2)=24.65,P<0.001), and fungal culture (33% [84/253]) (χ^(2)=29.38,P<0.001). Specificity varied between BAL GM (≥1.0 ODI: 94% [377/402]), serum GM (≥0.5 ODI: 95% [2130/2248]), BDG (89% [1878/2106]), and culture (98% [4936/5055]). Sputum GM (≥2.0 ODI) had similar sensitivity (84% [32/38]) (Fisher’s exactP=1.000) to and slightly lower specificity (87% [77/89]) (χ^(2)=5.52,P=0.019) than BAL GM (≥1.0 ODI). Area under the ROC curve values were comparable between sputum GM (0.883 [0.812-0.953]) and BAL GM (0.901 [0.824-0.977]) (P=0.734). Sputum LFD had similar specificity (91% [81/89]) (χ^(2)=0.89,P=0.345) to and lower sensitivity (63% [24/38]) (χ^(2)=4.14,P=0.042) than BAL GM (≥1.0 ODI), but significantly higher sensitivity than serum GM (≥0.5 ODI) (χ^(2)=6.95,P=0.008), BDG (χ^(2)=10.43,P=0.001), and fungal culture (χ^(2)=12.70,P<0.001).Conclusions: Serum GM, serum BDG, and fungal culture lack sufficient sensitivity for diagnosing IPA in respiratory patients. Sputum GM and LFD assays hold promise as rapid, sensitive, and non-invasive alternatives to the BAL GM test. | Wei Xiao Longyi Du Linli Cai Tiwei Miao Bing Mao Fuqiang Wen Peter Gerard Gibso Deying Gong Yan Zeng Mei Kang Xinmiao Du Junyan Qu Yan Wang Xuemei Liu Ruizhi Feng Juanjuan Fu | 2022 | Chinese Medical Journal2022,,13: | 0 |
| 3 | Mechanisms of immune regulation for acupuncture on chronic respiratory diseases显示文摘Chronic respiratory diseases(CRDs)are among the most common noncommunicable diseases globally,with high morbidity and mortality rates.Acupuncture,a treatment method derived from Traditional Chinese Medicine,has been shown to be effective at treating CRDs,with little risk of adverse effects.Scientific research on the mechanisms underlying the effects of acupuncture,especially,its immune regulatory function,has rapidly advanced in recent years.Herein,the diverse immune regulatory mechanisms underlying the beneficial effects of acupuncture are summarized from the perspectives of innate immunity,adaptive immunity,and neuroimmunity.A better understanding of these mechanisms will ultimately provide a scientific basis for the clinical use of acupuncture for the treatment of CRDs. | WEI Meng LI Yu XIONG Chan LIU Yefang LIANG Fanrong MAO Bing MIAO Tiwei HUANG Ying ZHUYijing FU Juanjuan | 2022 | Journal of Traditional Chinese Medicine2022,42,2: | 0 |