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5-Aminolevulinic acid against strawberry Fusarium wilt:Bidirectional regulation of biocontrol agents and pathogens
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作者 Hao Yang jianting zhang +3 位作者 Haiwen zhang Rongxiang Cao Donglan Tang Liangju Wang 《Horticultural Plant Journal》 SCIE CAS CSCD 2024年第6期1349-1361,共13页
Strawberry Fusarium wilt (SFW) is a systematic soil-borne disease caused by Fusarium oxysporum f.sp.fragaria (Fof),which infects the vascular bundles,blocking water and nutrient transport from roots to the aboveground... Strawberry Fusarium wilt (SFW) is a systematic soil-borne disease caused by Fusarium oxysporum f.sp.fragaria (Fof),which infects the vascular bundles,blocking water and nutrient transport from roots to the aboveground.It is a severe pathogen which spreads rapidly and destroys strawberry production.Finding a way to control this disease is of great scientific value and practical importance.In this study,three fungi were isolated from the vascular tissues of sick strawberries in the field.After DNA sequencing,they were identified as Fof,Aspergillus fumigatus and Trichoderma harzianum,respectively,among which the first two are pathogens and the third is a probiotic.All fungi were controlled by thiophanate-methyl (TM),a commercial fungicide.On PDA medium,20 mg·L^(-1)5-aminolevulinic acid (ALA),a natural non-protein amino acid,promoted T.harzianum proliferation,but inhibited Fof and A.fumigatus.In confrontation test,the growth of Fof or A.fumigatus was inhibited by T.harzianum and exogenous ALA promoted T.harzianum growth but significantly inhibited the pathogen growth.When three species of fungi were separately or combinedly inoculated on healthy strawberry plants,T.harzianum promoted plant growth and development while Fof or A.fumigatus caused growth retardation,where Fof directly caused leaf yellowing and plant wilting.When the plants inoculated with different fungus were treated with ALA,the results turned out that ALA alleviated SFW symptoms by bidirectionally promoting T.harzianum proliferation and inhibiting Fof and A.fumigatus.Thus,ALA might be used in comprehensively controlling SFW in strawberry industry. 展开更多
关键词 5-Aminolevulinic acid Antagonistic effect Disease control Fusarium oxysporum f.sp.fragaria(Fof) Strawberry Fusarium wilt(SFW) Trichoderma harzianum
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甲磺酸伏美替尼一线治疗1例EGFR 20号外显子插入突变肺腺癌患者
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作者 李正国 魏婷 +3 位作者 曾多 赵丽 张建婷 陈来秀 《中国肺癌杂志》 CAS CSCD 北大核心 2024年第3期241-244,共4页
随着基因组学、蛋白组学和分子生物检测技术的不断创新,晚期非小细胞肺癌(non-small cell lung cancer,NSCLC)的治疗模式逐渐多样化,已经从传统的化疗逐渐过渡到免疫治疗及靶向治疗。其中,以靶向酪氨酸激酶通路为靶点的分子肿瘤标志物... 随着基因组学、蛋白组学和分子生物检测技术的不断创新,晚期非小细胞肺癌(non-small cell lung cancer,NSCLC)的治疗模式逐渐多样化,已经从传统的化疗逐渐过渡到免疫治疗及靶向治疗。其中,以靶向酪氨酸激酶通路为靶点的分子肿瘤标志物在临床中发挥着越来越重要的作用。针对NSCLC患者表皮生长因子受体(epidermal growth factor receptor,EGFR)突变阳性,现阶段市面上已经有众多一线治疗药物上市,且均有较为明显的治疗效果。在中国患者中EGFR常见的变异位点位于19、20和21号外显子上,其中19和21号外显子突变是较为常见的突变类型,除此以外,EGFR突变还有一种亚型,被称为EGFR 20号外显子插入(EGFR exon 20 insertion,EGFR20ins)突变。我们针对1例EGFR20ins突变肺腺癌患者接受甲磺酸伏美替尼治疗进行总结,以期为临床诊疗提供有效借鉴。 展开更多
关键词 肺肿瘤 甲磺酸伏美替尼 表皮生长因子受体 20号外显子插入突变
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Targeting fatty acid synthase sensitizes human nasopharyngeal carcinoma cells to radiationvia downregulating frizzled class receptor 10 被引量:5
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作者 Jiongyu Chen Fan zhang +4 位作者 Xiaosha Ren Yahui Wang Wenhe Huang jianting zhang Yukun Cui 《Cancer Biology & Medicine》 SCIE CAS CSCD 2020年第3期740-752,共13页
Objective:Our aim was to test the hypothesis that fatty acid synthase(FASN)expression contributes to radioresistance of nasopharyngeal carcinoma(NPC)cells and that inhibiting FASN enhances radiosensitivity.Methods:Tar... Objective:Our aim was to test the hypothesis that fatty acid synthase(FASN)expression contributes to radioresistance of nasopharyngeal carcinoma(NPC)cells and that inhibiting FASN enhances radiosensitivity.Methods:Targeting FASN using epigallocatechin gallate(EGCG)or RNA interference in NPC cell lines that overexpress endogenous FASN was performed to determine their effects on cellular response to radiationin vitro using MTT and colony formation assays,andin vivo using xenograft animal models.Western blot,immunohistochemistry,real-time PCR arrays,and real-time RT-PCR were used to determine the relationship between FASN and frizzled class receptor 10(FZD10)expression.FZD10 knockdown and overexpression were used to determine its role in mediating FASN function in cellular response to radiation.Immunohistochemical staining was used to determine FASN and FZD10 expressions in human NPC tissues,followed by analysis of their association with the overall survival of patients.Results:FASN knockdown or inhibition significantly enhanced radiosensitivity of NPC cells,bothin vitro andin vivo.There was a positive association between FASN and FZD10 expression in NPC cell lines grown as monolayers or xenografts,as well as human tissues.FASN knockdown reduced FZD10 expression,and rescue of FZD10 expression abolished FASN knockdown-induced enhancement of radiosensitivity.FASN and FZD10 were both negatively associated with overall survival of NPC patients.Conclusions:FASN contributes to radioresistance,possiblyvia FZD10 in NPC cells.Both FZD10 and FASN expressions were associated with poor outcomes of NPC patients.EGCG may sensitize radioresistance by inhibiting FASN and may possibly be developed as a radiosensitizer for better treatment of NPCs. 展开更多
关键词 Epigallocatechin gallate fatty acid synthase frizzled class receptor 10 nasopharyngeal carcinoma RADIORESISTANCE
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NIR-switchable local hydrogen generation by tandem bimetallic MOFs nanocomposites for enhanced chemodynamic therapy 被引量:1
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作者 Jun Zhong Xiang Zheng +5 位作者 Yuan Wen Yuewei Li jianting zhang Ranjith Kumar Kankala Shibin Wang Aizheng Chen 《Regenerative Biomaterials》 SCIE EI CSCD 2024年第1期58-68,共11页
The inadequate quantity of hydrogen peroxide(H_(2)O_(2))in cancer cells promptly results in the constrained success of chemodynamic therapy(CDT).Significant efforts made throughout the years;nevertheless,researchers a... The inadequate quantity of hydrogen peroxide(H_(2)O_(2))in cancer cells promptly results in the constrained success of chemodynamic therapy(CDT).Significant efforts made throughout the years;nevertheless,researchers are still facing the great challenge of designing a CDT agent and securing H_(2)O_(2) supply within the tumor cell.In this study,taking advantage of H_(2)O_(2) level maintenance mechanism in cancer cells,a nanozyme-based bimetallic metal-organic frameworks(MOFs)tandem reactor is fabricated to elevate intracellular H_(2)O_(2) levels,thereby enhancing CDT.In addition,under nearinfrared excitation,the upconversion nanoparticles(UCNPs)loaded into the MOFs can perform photocatalysis and generate hydrogen,which increases cellular susceptibility to radicals induced from H_(2)O_(2),inhibits cancer cell energy,causes DNA damages and induces tumor cell apoptosis,thus improving CDT therapeutic efficacy synergistically.The proposed nanozyme-based bimetallic MOFs-mediated CDT and UCNPs-mediated hydrogen therapy act as combined therapy with high efficacy and low toxicity. 展开更多
关键词 chemodynamic therapy nanozyme bimetallic MOFs gas therapy
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