背景与目的:研究发现核糖体蛋白L8(ribosomal protein L8,RPL8)在黑色素瘤中表达能激活黑色素瘤患者外周血单个核细胞增殖并产生白细胞介素2,提示RPL8可能参与抗肿瘤免疫应答,有望成为抗肿瘤治疗的靶点。本研究通过RPL8蛋白负载树突状细...背景与目的:研究发现核糖体蛋白L8(ribosomal protein L8,RPL8)在黑色素瘤中表达能激活黑色素瘤患者外周血单个核细胞增殖并产生白细胞介素2,提示RPL8可能参与抗肿瘤免疫应答,有望成为抗肿瘤治疗的靶点。本研究通过RPL8蛋白负载树突状细胞(dentritic cell,DC),探讨负载RPL8蛋白的DC对黑色素瘤的免疫效应。方法:原核表达RPL8蛋白,纯化后致敏小鼠骨髓来源DC,流式细胞仪检测DC表面标志,MTT法检测细胞毒性T淋巴细胞对小鼠黑色素瘤细胞的杀伤作用;负载RPL8蛋白DC免疫治疗小鼠后,观察肿瘤体积变化及小鼠生存时间。结果:纯化蛋白经蛋白质印迹法(Western blot)分析见约28×103大小的特异性条带;DC经RPL8及细菌脂多糖(Lipoplysaccharide,LPS)诱导成熟后细胞表面CD11c、CD80、MHC-Ⅰ类、MHC-Ⅱ类分子表达增高,能激活T淋巴细胞,对B16细胞有抑制作用,RPL8-DC组的抑制率在效靶比为30∶1时高达70%,较PBS组和DC组明显增高;负载RPL8蛋白DC免疫治疗小鼠后,肿瘤体积缩小,小鼠的生存期明显延长。结论:负载RPL8的DC对黑色素瘤有生长抑制作用。展开更多
Like Xenopus laeuis, some species of the Rang genus are also used to study endocrine disrupting chemicals (EDCs). Although ribosomal protein L8 (rp18) is the most-used reference gene for analyzing gene expression ...Like Xenopus laeuis, some species of the Rang genus are also used to study endocrine disrupting chemicals (EDCs). Although ribosomal protein L8 (rp18) is the most-used reference gene for analyzing gene expression by quantitative reverse transcription polymerase chain reaction in Rang, its suitability as the reference gene has never been validated in any species of the Rana genus. We characterized rp18 cDNA in Rana nigromaculata, a promising native species in East Asia for assaying endocrine disrupting effects. We found that the rp18 cDNA consisted of 919 bp and encoded 257 amino acids, exhibiting high identities of amino acid sequence with known rp18 in other Rana species. Then, we examined the stability of mRNA expression during development. Compared with elongation factor 1 alpha 1, another common housekeeping gene, neither stage-specific nor tissue-specific expression of the rp18 gene was found in all tissues examined (brain, liver, intestine, tail, testis and ovary) during R. nigromaculata development. Finally, we investigated rp18 expression under exposure to hormones. No change in rp18 mRNA expression was found under exposure to thyroid hormone (T4) and estrogen (estradiol), whereas expression of the corresponding biomarker genes was induced. Our results show that rp18 is an appropriate reference gene for analyzing gene expression by quantitative reverse transcription polymerase chain reaction for assaying EDCs using R. nigromaculata, and might also provide support for using rp18 as a reference gene in other Rang species due to the high conservation of rp18 among the Rana genus.展开更多
Layer-by-layer(LBL)process has emerged as a promising method in the advancement of organic photovoltaics,emphasizing scalability and reproducibility.More importantly,it provides enhanced morphological control for boos...Layer-by-layer(LBL)process has emerged as a promising method in the advancement of organic photovoltaics,emphasizing scalability and reproducibility.More importantly,it provides enhanced morphological control for boosting carrier mobility(μ)and power conversion efficiency.By employing a multiscale approach that combined first-principles calculations,molecular dynamics simulations,and kinetic Monte Carlo methods,the relationship between LBL morphology engineering and carrier mobility in donor/acceptor(PM6/L8-BO)thin films is elucidated.During solvent evaporation,the order of solid-phase formation in LBL films was top surface,bottom region,and then the middle region.The early solid precipitation from precursor solutions was acceptor,resulting in a well-ordered molecular arrangement and reducing energy disorder of acceptor LUMO levels.Furthermore,the difference in energy disorders between the A/D blend region and the pure A or D domains enabled LBL morphology engineering to balance electron and hole mobilities,thereby mitigating charge accumulation and recombination.LBL-manufactured films presented higher carrier mobility(𝜇LBL e=𝜇LBL h=1.9×10−3 cm2 V−1 s−1)compared to bulk heterojunction(BHJ)films(𝜇BHJ e>𝜇BHJ h=0.1×10−3 cm2⋅V−1 s−1).These mechanisms provided insights into strategies for enhancing charge extraction of photo-generated charge carriers through LBL engineering,driving the development of efficient organic photovoltaic materials.展开更多
文摘背景与目的:研究发现核糖体蛋白L8(ribosomal protein L8,RPL8)在黑色素瘤中表达能激活黑色素瘤患者外周血单个核细胞增殖并产生白细胞介素2,提示RPL8可能参与抗肿瘤免疫应答,有望成为抗肿瘤治疗的靶点。本研究通过RPL8蛋白负载树突状细胞(dentritic cell,DC),探讨负载RPL8蛋白的DC对黑色素瘤的免疫效应。方法:原核表达RPL8蛋白,纯化后致敏小鼠骨髓来源DC,流式细胞仪检测DC表面标志,MTT法检测细胞毒性T淋巴细胞对小鼠黑色素瘤细胞的杀伤作用;负载RPL8蛋白DC免疫治疗小鼠后,观察肿瘤体积变化及小鼠生存时间。结果:纯化蛋白经蛋白质印迹法(Western blot)分析见约28×103大小的特异性条带;DC经RPL8及细菌脂多糖(Lipoplysaccharide,LPS)诱导成熟后细胞表面CD11c、CD80、MHC-Ⅰ类、MHC-Ⅱ类分子表达增高,能激活T淋巴细胞,对B16细胞有抑制作用,RPL8-DC组的抑制率在效靶比为30∶1时高达70%,较PBS组和DC组明显增高;负载RPL8蛋白DC免疫治疗小鼠后,肿瘤体积缩小,小鼠的生存期明显延长。结论:负载RPL8的DC对黑色素瘤有生长抑制作用。
基金supported by the National High Technology Research and Development Program (863) of China (No. 2012AA06A302)the Public Welfare Research Project for Environmental Protection (No. 201109048)the National Natural Science Foundation of China (No. 21077125)
文摘Like Xenopus laeuis, some species of the Rang genus are also used to study endocrine disrupting chemicals (EDCs). Although ribosomal protein L8 (rp18) is the most-used reference gene for analyzing gene expression by quantitative reverse transcription polymerase chain reaction in Rang, its suitability as the reference gene has never been validated in any species of the Rana genus. We characterized rp18 cDNA in Rana nigromaculata, a promising native species in East Asia for assaying endocrine disrupting effects. We found that the rp18 cDNA consisted of 919 bp and encoded 257 amino acids, exhibiting high identities of amino acid sequence with known rp18 in other Rana species. Then, we examined the stability of mRNA expression during development. Compared with elongation factor 1 alpha 1, another common housekeeping gene, neither stage-specific nor tissue-specific expression of the rp18 gene was found in all tissues examined (brain, liver, intestine, tail, testis and ovary) during R. nigromaculata development. Finally, we investigated rp18 expression under exposure to hormones. No change in rp18 mRNA expression was found under exposure to thyroid hormone (T4) and estrogen (estradiol), whereas expression of the corresponding biomarker genes was induced. Our results show that rp18 is an appropriate reference gene for analyzing gene expression by quantitative reverse transcription polymerase chain reaction for assaying EDCs using R. nigromaculata, and might also provide support for using rp18 as a reference gene in other Rang species due to the high conservation of rp18 among the Rana genus.
基金supported by the National Science Foundation of China(Grant Nos.22033006,92372105,and 52073005)Beijing Natural Science Foundation(Grant No.JQ23020).
文摘Layer-by-layer(LBL)process has emerged as a promising method in the advancement of organic photovoltaics,emphasizing scalability and reproducibility.More importantly,it provides enhanced morphological control for boosting carrier mobility(μ)and power conversion efficiency.By employing a multiscale approach that combined first-principles calculations,molecular dynamics simulations,and kinetic Monte Carlo methods,the relationship between LBL morphology engineering and carrier mobility in donor/acceptor(PM6/L8-BO)thin films is elucidated.During solvent evaporation,the order of solid-phase formation in LBL films was top surface,bottom region,and then the middle region.The early solid precipitation from precursor solutions was acceptor,resulting in a well-ordered molecular arrangement and reducing energy disorder of acceptor LUMO levels.Furthermore,the difference in energy disorders between the A/D blend region and the pure A or D domains enabled LBL morphology engineering to balance electron and hole mobilities,thereby mitigating charge accumulation and recombination.LBL-manufactured films presented higher carrier mobility(𝜇LBL e=𝜇LBL h=1.9×10−3 cm2 V−1 s−1)compared to bulk heterojunction(BHJ)films(𝜇BHJ e>𝜇BHJ h=0.1×10−3 cm2⋅V−1 s−1).These mechanisms provided insights into strategies for enhancing charge extraction of photo-generated charge carriers through LBL engineering,driving the development of efficient organic photovoltaic materials.