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Density functional theory for selecting modifiers for enhanced adsorption of tetracycline in water by biochar
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作者 Sayeda Ummeh Masrura Tauqeer Abbas +3 位作者 Hamed Heidari Shams Razzak Rothee Ahsan Javed Eakalak Khan 《Waste Disposal and Sustainable Energy》 EI CSCD 2023年第1期25-35,共11页
Antibiotics and their metabolic byproducts are found in wastewater and natural water as a result of increased consumption,posing a major threat to humans and other living organisms.One of the most promising methods fo... Antibiotics and their metabolic byproducts are found in wastewater and natural water as a result of increased consumption,posing a major threat to humans and other living organisms.One of the most promising methods for their removal is adsorption using biochar because it offers excellent adsorption potential and is both affordable and environmentally beneficial.However,raw biochar frequently has a low adsorption capacity due to its limited pore structure and unfavorable surface characteristics.Biochar surface modifications using modifiers such as H3PO4,KOH,and NaOH have improved the surface area and thereby the adsorption capacity.Experimental methods for assessing the effectiveness and adsorption mechanism of modified biochar are costly and time-consuming.Density functional theory(DFT)was used to investigate the interfacial interactions and adsorption mechanism of tetracycline(TC),a widely used antibiotic for personal care and veterinary medication,on unmodified and modified biochar.The DFT calculations showed that the adsorption energy of TC on unmodified and modified biochar is in the following order:KOH-modified biochar(−2.38 eV)<NaOH-modified biochar(−2.20 eV)<unmodified biochar(−1.56 eV)<H3PO4-modified biochar(5.48 eV).The lower adsorption energy is associated with a stronger and more stable interaction between the adsorbent and the contaminant.This suggests that the adsorption of TC on KOH-modified biochar is more prolific and stable compared to the other biochar.This study provides an understanding of the mechanism underlying the adsorption of TC by modified biochar and can be used as a guide to screen for biochar with promising adsorption potential prior to experimental efforts. 展开更多
关键词 Tetracycline adsorption Modified biochar Density functional theory Adsorption energy modifier screening
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组蛋白去乙酰化酶3参与调控Hippo信号通路
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作者 张伉 冯颖 +1 位作者 林鑫华 戚昀 《复旦学报(自然科学版)》 CAS CSCD 北大核心 2022年第4期395-404,共10页
Hippo信号通路在器官大小、组织再生和肿瘤发生发展等方面发挥重要作用,且它在进化上高度保守。Hippo信号通路的失调和多种癌症密切相关。果蝇中Hippo信号通路上游的级联激酶通过磷酸化效应因子Yki,进而调控Yki和转录因子Sd的结合以及... Hippo信号通路在器官大小、组织再生和肿瘤发生发展等方面发挥重要作用,且它在进化上高度保守。Hippo信号通路的失调和多种癌症密切相关。果蝇中Hippo信号通路上游的级联激酶通过磷酸化效应因子Yki,进而调控Yki和转录因子Sd的结合以及下游靶基因的表达。为了寻找Hippo信号通路新的调控因子,我们以过表达Yki造成果蝇眼睛过度增生的表型为基础,进行修饰因子筛选。通过筛选,我们发现组蛋白去乙酰化酶3(HDAC3)参与调控Hippo信号通路,敲除HDAC3特异性地抑制由过表达Yki引起的组织增生,导致果蝇眼睛变小。之后我们通过免疫荧光染色发现HDAC3的缺失激活了Hippo信号通路,进而影响器官发育。进一步地,我们利用遗传学实验和双萤光素酶报告系统分析探究到HDAC3作用于Sd上游,在体外条件下HDAC3的失活能够显著抑制Sd-Yki转录复合体的转录活性。这为探索Hippo信号通路新的调控机制奠定基础,也为HDAC3抑制剂的抗肿瘤治疗提供新的理论支持。 展开更多
关键词 HIPPO Yki 修饰因子筛选 组蛋白去乙酰化酶3(HDAC3) 抑制因子
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改良锰矿渣中木本植物筛选及锰的亚细胞分布和化学形态 被引量:5
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作者 何蔚 陈永华 +2 位作者 梁希 汤春芳 吴晓芙 《环境工程》 CAS CSCD 北大核心 2018年第9期154-160,共7页
针对锰矿矿渣土壤结构不良、养分少、重金属含量高的特点,及修复植物大多为草本植物的问题,在改良锰矿矿渣(对照CK:100%矿渣+0.1 kg磷肥;改良A:80%矿渣+20%泥炭土+0.1 kg磷肥;改良B:70%矿渣+30%泥炭土+0.1 kg磷肥;改良C:60%矿渣+40%泥炭... 针对锰矿矿渣土壤结构不良、养分少、重金属含量高的特点,及修复植物大多为草本植物的问题,在改良锰矿矿渣(对照CK:100%矿渣+0.1 kg磷肥;改良A:80%矿渣+20%泥炭土+0.1 kg磷肥;改良B:70%矿渣+30%泥炭土+0.1 kg磷肥;改良C:60%矿渣+40%泥炭土+0.1 kg磷肥)种植条件下,对湖南本土的14种木本植物进行耐性筛选,并对长势良好的耐性植物的亚细胞分布和化学形态进行了分析。结果表明:1)植物长势、生物量、株高增量、重金属的吸收量及转移量系数均呈现改良组>对照组的规律,但改良组之间不同的植物品种存在差异,总体上泡桐、夹竹桃、栾树、乌桕表现出较好的耐性。2)Mn在泡桐、夹竹桃各部位的亚细胞分布以细胞壁为主,在栾树、乌桕各部位以细胞壁和可溶性组分为主,两者共占总量的85%~99%,在线粒体、叶绿体和细胞核等细胞器中分布均很少。3)Mn在植物各部位的化学形态以氯化钠、水提取态为主,共占47%~81%,其次是醋酸态。相比于对照组,改良组对各部位Mn的化学形态的影响因植物品种不同而存在差异。 展开更多
关键词 锰矿渣 改良剂 耐性植物筛选 亚细胞分布 化学形态
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