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| 1 | 帕博利珠单抗单用或与放疗联用治疗转移性非小细胞肺癌:两个随机试验的汇总分析显示文摘背景放疗可以提高整个机体对免疫治疗的应答。在Ⅱ期PEMBRO-RT研究和Ⅰ/Ⅱ期MDACC研究中,患有转移性非小细胞肺癌(NSCLC)的患者被随机分配入组,接受免疫治疗(帕博利珠单抗)+放疗联合疗法,或免疫治疗单一疗法。当上述2个研究单独分析时,联合疗法组显示出潜在获益。由于每个研究的样本量较小,缓解率和结局并未显示出统计学意义,然而却有显著的临床获益。因此,本研究进行汇总分析,来判断放疗是否会改善转移性NSCLC患者的免疫治疗应答。方法PEMBRO-RT和MDACC研究纳入标准:患者年龄≥18岁,患有转移性NSCLC,且有≥1处未经放疗照射的病灶,以便进行射野外应答监测。PEMBRO-RT研究纳入曾接受过化疗患者,MDACC研究纳入曾接受过治疗或新诊断患者。2个研究中的患者均未接受过免疫治疗。在PEMBRO-RT研究中患者被等比例随机分配入组,并根据吸烟状态进行分层(分为<10年组和≥10年组)。MDACC研究的患者根据放疗计划可行性被等比例随机分配入2个受试组。由于联合治疗组的干预本质,每个研究中的放疗均不适用盲法。在2个研究中,不论是否进行放疗,均静脉滴入帕博利珠单抗(每3周200 mg)。在PEMBRO-RT研究中,在放疗(24 Gy 3次分割照射)结束后1周给予第1剂帕博利珠单抗。在MDACC研究中,在第1次放疗(50 Gy 4次分割照射或45 Gy 15次分割照射)同时给予帕博利珠单抗。仅检测未经照射病灶的应答。本研究的终点为最佳射野外(远隔)应答率(ARR)、最佳射野外疾病控制率(ACR)、12周时ARR、12周时ACR、无进展生存期(PFS)和总生存期(OS)。2个研究的意向治疗(ITT)人群均纳入分析。PEMBRO-RT研究(NCT02492568)和MDACC研究(NCT02444741)均在ClinicalTrials.gov上注册。发现纳入148例患者,76例接受帕博利珠单抗治疗,72例接受帕博利珠单抗+放疗治疗。所有患者随访时间中位数为33个月[四分位距(IQR):32.4~33.6]。148例患者中124例(84%)组织学特征为非鳞癌,111例(75%)患者曾经接受过化疗。组间没有基线特征差异,包括PD-L1表达状态和转移灶体积。最常见的照射部位为肺转移灶(39%,28/72)、胸腔内淋巴结(21%,15/72)和非原发灶(17%,12/72)。帕博利珠单抗组和联合治疗组的最佳ARR分别为19.7%(15/76)和41.7%(30/72),OR=2.96,95%CI:1.42~6.20,P=0.0039;最佳ACR分别为43.4%(33/76)和65.3%(47/72),OR=2.51,95%CI:1.28~4.91,P=0.0071;PFS中位数分别为4.4(IQR:2.9~5.9)和9.0个月(IQR:6.8~11.2),HR=0.67,95%CI:0.45~0.99,P=0.045;OS中位数分别为8.7(IQR:6.4~11.0)和19.2个月(IQR:14.6~23.8),OR=0.67,95%CI:0.54~0.84,P=0.0004。在汇总分析中没有发现新的安全问题。解读帕博利珠单抗免疫疗法+放疗显著提高转移性NSCLC患者的应答和改善治疗结局。这些结果需要在三期临床试验中进行验证。 | 陈大卫(翻译) 于金明(校对) Willemijn S M E Theelen Vivek Verma Brian P Hobbs Heike M U Peulen Joachim G J V Aerts Idris Bahce Anna Larissa N Niemeijer Joe Y Chang Patricia M de Groot Quynh-Nhu Nguyen Nathan I Comeaux George R Simon Ferdinandos Skoulidis Steven H Lin Kewen He Roshal Patel John Heymach Paul Baas James W Welsh | 2021 | 中华肿瘤防治杂志2021,28,24: | 49 |
| 2 | 使用cDNA微阵列和组织微阵列对三种上皮性卵巢肿瘤基因表达的分析显示文摘背景与目的卵巢癌是在妇科恶性肿瘤中死亡率最高的肿瘤,主要原因是由于缺乏有效的早期诊断方法。为了发现新的、特异性癌基因和进一步探索上皮性卵巢癌的临床意义,本文探索出一种新方法,通过结合cDNA微阵列和RNA原位杂交冰冻组织微阵列的方法寻找特异性卵巢癌基因。方法利用cDNA微阵列筛选在3种不同卵巢癌中(卵巢浆液性交界性肿瘤、卵巢浆液性腺癌和卵巢子宫内膜样腺癌)显示有意义表达的基因,并由RNA原位杂交冰冻组织微阵列证实其结果。结果40个基因和ESTs显示出在卵巢浆液性交界性肿瘤、浆液性和子宫内膜样卵巢癌3种类型之间基因表达有明显的差异;EPHB6、PTPRF、GFER、ERG25、PLRP1,FLJ22060和WISP2被进一步用于RNA原位杂交冰冻组织微阵列研究,其结果与cDNA微阵列研究结果相符合。结论cDNA微阵列和RNA原位杂交冰冻组织微阵列相结合是一种理想的寻找癌相关基因的方法,EPHB6,PTPRF,GFER,ERG25,PLRP1,FLJ22060和WISP2有可能成为新的上皮性卵巢癌候选基因。 | 郑敏 Simon R Kononen J Sauter G Mihatsch MJ Moch H | 2004 | 癌症2004,23,7: | 8 |
| 3 | Evidence for the involvement of NOD2 in regulating colonic epithelial cell growth and survival显示文摘AIM: To investigate the function of NOD2 in colonic epithelial cells (CEC). METHODS: A combination of in vivo and in vitro analyses of epithelial cell turnover in the presence and absence of a functional NOD2 protein and, in response to enteric Salmonella typhimurium infection, were used. shRNA interference was also used to investigate the consequences of knocking down NOD2 gene expression on the growth and survival of colorectal carcinoma cell lines. RESULTS:In the colonic mucosa the highest levels of NOD2 expression were in proliferating crypt epithelial cells. Muramyl dipeptide (MDP), that is recognized by NOD2, promoted CEC growth in vitro . By contrast,the growth of NOD2-deficient CECs was impaired. In vivo CEC proliferation was also reduced and apoptosis increased in Nod2-/- mice, which were also evident following enteric Salmonella infection. Furthermore, neutralization of NOD2 mRNA expression in human colonic carcinoma cells by shRNA interference resulted in decreased survival due to increased levels of apoptosis. CONCLUSION: These findings are consistent with the involvement of NOD2 protein in promoting CEC growth and survival. Defects in proliferation by CECs in cases of CD may contribute to the underlying pathology of disrupted intestinal homeostasis and excessive inflammation. | Sheena M Cruickshank Louise Wakenshaw John Cardone Peter D Howdle Peter J Murray Simon R Carding | 2008 | World Journal of Gastroenterology2008,14,38: | 3 |
| 4 | Characterization of colonic dendritic cells in normal and colitic mice显示文摘AIM: Recent studies demonstrating the direct involvement of dendritic cells (DC) in the activation of pathogenic T cells in animal models of inflammatory bowel disease identify DC as important antigen presenting cells in the colon. However, very little is known about the properties of colonic DC.METHODS: Using immunohistochemistry, electron microscopy and flow cytometry we have characterized and compared colonic DC in the colon of healthy animals and interleukin-2-deficient (IL2-/-) mice that develop colitis.RESULTS: In the healthy colon, DC resided within the lamina propria and in close association with the basement membrane of colonic villi. Type 1 myeloid (CD11c+, CD11b+,B220-, CD8α-) DC made up the largest (40-45%) population and all DC expressed low levels of CD80, CD86, and CD40,and had high endocytic activity consistent with an immature phenotype. In colitic IL2-/- mice, colonic DC numbers increased four- to five-fold and were localized within the epithelial layer and within aggregates of T and B cells. They were also many more DC in mesenteric lymph nodes (MLN).The majority (>85%) of DC in the colon and MLN of IL2-/-mice were type 1 myeloid, and expressed high levels of MHC class Ⅱ, CD80, CD86, CD 40, DEC 205, and CCR5molecules and were of low endocytic activity consistent with mature DC.CONCLUSION: These findings demonstrate striking changes in the number, distribution and phenotype of DC in the inflamed colon. Their intimate association with lymphocytes in the colon and draining lymph nodes suggest that they may contribute directly to the ongoing inflammation in the colon. | Sheena M Cruickshank Nicholas R English Peter J Felsburg Simon R Carding | 2005 | World Journal of Gastroenterology2005,11,40: | 3 |
| 5 | The Index of a Projection 显示文摘 | Avron J Seiler R Simon B | 1994 | J Funct Anal1994,120,1: | 2 |
| 6 | Priori strain discrimination using luminescent conjugated polymers显示文摘 | Christina J Sigurdson K Peter R Nilsson Simone Hornemann | 2007 | Nature Metheds2007,1,12: | 1 |
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| 14 | P0tential of low- molecular chitosan as a DNAdelivery system : biocompatility, bo- dydistribution and ability to complex and protect DNA显示文摘 | Simon C W R Hanno V J K Ruth D | 1999 | Inter- national Journal of Pharrnacentics1999,178,: | 1 |
| 15 | Two-phase n-butenes dimerization by nickel complexes in molten salt media显示文摘 | Dupont J de Souza R F | 1998 | Appl Catal A:General1998,775,: | 1 |
| 16 | Managing Competing Values: Leadership Orientations of Mayors and CEOs 显示文摘 | MARTIN J SIMONS R | 2002 | Australian Journal of Public Administration2002,61,3: | 1 |
| 17 | Active barrier to reduce phosphorus re- lease from sediments:Effectiveness of three forms of CaCO3 显示文摘 | Barry T H Simon R Robert J | 2003 | Aus- tralian Journal of Chemistry2003,56,3: | 1 |
| 18 | Constraints on the redshift dependence of the dark energy potential 显示文摘 | Simon J Verde L Jimenez R | 2005 | Phys Rev D2005,71,12: | 1 |
| 19 | A review of ac- celerated carbonation technology in the treatment of cement- based materials and sequestration 'of CO2 显示文摘 | Fernandez Bertos M Simons S J R Hills C D | 2004 | Journal of Hazard- ous Materia/s2004,112,3: | 1 |
| 20 | Endoscopic pituitary tumor surgery显示文摘 | Jankowski R Auque J Simon C | 1992 | Laryngoscope1992,102,2: | 1 |