terça-feira, 29 de novembro de 2016

Bibliografia atualizada em fatores prognósticos em câncer de mama.

1. Prognostic value of automated KI67 scoring in breast cancer: a centralised evaluation of 8088 patients from 10 study groups. Abubakar, Mustapha; Orr, Nick; Daley, Frances; Coulson, Penny; Ali, H Raza; Blows, Fiona; Benitez, Javier; Milne, Roger;Brenner, Herman; Stegmaier, Christa; Mannermaa, Arto; Chang-Claude, Jenny; Rudolph, Anja; Sinn, Peter; Couch, Fergus J; Devilee, Peter; Tollenaar, Rob A E M; Seynaeve, Caroline; Figueroa, Jonine; Sherman, Mark E; Lissowska, Jolanta; Hewitt, Stephen; Eccles, Diana; Hooning, Maartje J; Hollestelle, Antoinette; Martens, John W M; van Deurzen, Carolien H M; Investigators, kConFab; Bolla, Manjeet K; Wang, Qin; Jones, Michael; Schoemaker, Minouk; Wesseling, Jelle; van Leeuwen, Flora E; Van 't Veer, Laura; Easton, Douglas; Swerdlow, Anthony J; Dowsett, Mitch; Pharoah, Paul D;Schmidt, Marjanka K; Garcia-Closas, Montserrat. Breast Cancer Res; 18(1): 104, 2016 Oct 18. 2. CDK4 regulates cancer stemness and is a novel therapeutic target for triple-negative breast cancer. Dai, Meiou; Zhang, Chenjing; Ali, Ayad; Hong, Xinyuan; Tian, Jun; Lo, Chieh; Fils-Aimé, Nadège; Burgos, Sergio A; Ali, Suhad; Lebrun, Jean-Jacques. Sci Rep; 6: 35383, 2016 Oct 19. 3. The 21-gene recurrence score assay in node-negative early breast cancer: Prognostic, predictive or presumptuous? Jerzak, Katarzyna J; Pritchard, Kathleen I. Eur J Cancer; 68: 173-175, 2016 Oct 18. 4. Reproducibility of Digital PCR Assays for Circulating Tumor DNA Analysis in Advanced Breast Cancer. Hrebien, Sarah; O'Leary, Ben; Beaney, Matthew; Schiavon, Gaia; Fribbens, Charlotte; Bhambra, Amarjit; Johnson, Richard; Garcia-Murillas, Isaac; Turner, Nicholas. PLoS One; 11(10): e0165023, 2016. 5. Histological grade provides significant prognostic information in addition to breast cancer subtypes defined according to St Gallen 2013. Ehinger, Anna; Malmström, Per; Bendahl, Pär-Ola; Elston, Christopher W; Falck, Anna-Karin; Forsare, Carina; Grabau, Dorthe; Rydén, Lisa; Stål, Olle; Fernö, Mårten. Acta Oncol; : 1-7, 2016 Oct 20. 6. Prognostic Value of E-Cadherin and ß-Catenin in Triple-Negative Breast Cancer. Shen, Tiansheng; Zhang, Kui; Siegal, Gene P; Wei, Shi. Am J Clin Pathol; 2016 Oct 25. 7. Prognostic stratification of oestrogen receptor-positive HER2-negative lymph node-negative class of breast cancer. Rakha, Emad A; Agarwal, Devika; Green, Andrew R; Ashankyty, Ibraheem; Ellis, Ian O; Ball, Graham; Alaskandarany, Mohammed A. Histopathology; 2016 Oct 26. 8. Biomarker discovery to improve prediction of breast cancer survival: using gene expression profiling, meta-analysis, and tissue validation. Meng, Liwei; Xu, Yingchun; Xu, Chaoyang; Zhang, Wei. Onco Targets Ther; 9: 6177-6185, 2016. 9. Current advances in biomarkers for targeted therapy in triple-negative breast cancer. Fleisher, Brett; Clarke, Charlotte; Ait-Oudhia, Sihem. Breast Cancer (Dove Med Press); 8: 183-197, 2016. 10. Evaluation of human epidermal growth factor receptor 2 (HER2) single nucleotide polymorphisms (SNPs) in normal and breast tumor tissues and their link with breast cancer prognostic factors. Furrer, Daniela; Lemieux, Julie; Côté, Marc-André; Provencher, Louise; Laflamme, Christian; Barabé, Frédéric; Jacob, Simon; Michaud, Annick; Diorio, Caroline. Breast; 30: 191-196, 2016 Oct 24. 11. The analytical validation of the Oncotype DX Recurrence Score assay. Baehner, Frederick L. Ecancermedicalscience; 10: 675, 2016. 12. Assessment of pathologic response and long-term outcome in locally advanced breast cancers after neoadjuvant chemotherapy: comparison of pathologic classification systems. Choi, Misun; Park, Yeon Hee; Ahn, Jin Seok; Im, Young-Hyuck; Nam, Seok Jin; Cho, Soo Youn; Cho, Eun Yoon. Breast Cancer Res Treat; 2016 Oct 11. 13. Prognostic Impact of HER2 and ER Status of Circulating Tumor Cells in Metastatic Breast Cancer Patients with a HER2-Negative Primary Tumor. Beije, Nick; Onstenk, Wendy; Kraan, Jaco; Sieuwerts, Anieta M; Hamberg, Paul; Dirix, Luc Y; Brouwer, Anja; de Jongh, Felix E; Jager, Agnes; Seynaeve, Caroline M; Van, Ngoc M; Foekens, John A; Martens, John W M; Sleijfer, Stefan. Neoplasia; 18(11): 647-653, 2016 Oct 17. 14. Angiogenesis and Antiangiogenesis in Triple-Negative Breast cancer. Ribatti, Domenico; Nico, Beatrice; Ruggieri, Simona; Tamma, Roberto; Simone, Giovanni; Mangia, Anita. Transl Oncol; 9(5): 453-457, 2016 Oct. Artigo em ENG | MEDLINE | ID: mdl-27751350 15. Expression of Programmed Death Receptor Ligand 1 with High Tumor-Infiltrating Lymphocytes Is Associated with Better Prognosis in Breast Cancer. Bae, Sang Byung; Cho, Hyun Deuk; Oh, Mee-Hye; Lee, Ji-Hye; Jang, Si-Hyong; Hong, Soon Auck; Cho, Junhun; Kim, Sung Yong; Han, Sun Wook; Lee, Jong Eun; Kim, Han Jo; Lee, Hyun Ju. J Breast Cancer; 19(3): 242-251, 2016 Sep. 16. BCL2 as a Subtype-Specific Prognostic Marker for Breast Cancer. Eom, Yong Hwa; Kim, Hyung Suk; Lee, Ahwon; Song, Byung Joo; Chae, Byung Joo. J Breast Cancer; 19(3): 252-260, 2016 Sep. 17. Patients with Concordant Triple-Negative Phenotype between Primary Breast Cancers and Corresponding Metastases Have Poor Prognosis. Shin, Hee-Chul; Han, Wonshik; Moon, Hyeong-Gon; Park, In-Ae; Noh, Dong-Young. J Breast Cancer; 19(3): 268-274, 2016 Sep. 18. Low Ki67/high ATM protein expression in malignant tumors predicts favorable prognosis in a retrospective study of early stage hormone receptor positive breast cancer. Feng, Xiaolan; Li, Haocheng; Kornaga, Elizabeth N; Dean, Michelle; Lees-Miller, Susan P; Riabowol, Karl; Magliocco, Anthony M; Morris, Don; Watson, Peter H; Enwere, Emeka K; Bebb, Gwyn; Paterson, Alexander. Oncotarget; 2016 Oct 12. 19. Breast Cancer Survival Analysis Based on Immunohistochemistry Subtypes (ER/PR/HER2): a Retrospective Cohort Study. Poorolajal, Jalal; Nafissi, Nahid; Akbari, Mohammad Esmaeil; Mahjub, Hossein; Esmailnasab, Nader; Babaee, Ebrahim. Arch Iran Med; 19(10): 680-686, 2016 Oct. 20. Prognostic and predictive value of tumor infiltrating lymphocytes in early breast cancer. Criscitiello, Carmen; Esposito, Angela; Trapani, Dario; Curigliano, Giuseppe. Cancer Treat Rev; 50: 205-207, 2016 Oct 6. 21. Low expression of miR-409-3p is a prognostic marker for breast cancer. Cao, G-H; Sun, X-L; Wu, F; Chen, W-F; Li, J-Q; Hu, W-C. Eur Rev Med Pharmacol Sci; 20(18): 3825-3829, 2016 Sep. 22. Human epidermal growth factor receptor 4 (HER4) is a favorable prognostic marker of breast cancer: a systematic review and meta-analysis. Wang, Jue; Yin, Jun; Yang, Qing; Ding, Feng; Chen, Xiao; Li, Bingjie; Tian, Xingsong. Oncotarget; 2016 Oct 5. 23. Clinicopathological Significance of the Proliferation Markers Ki67, RacGAP1, and Topoisomerase 2 Alpha in Breast Cancer. Sahin, Sevinç; Isik Gönül, Ipek; Çakir, Asli; Seçkin, Selda; Uluoglu, Ömer. Int J Surg Pathol; 24(7): 607-13, 2016 Oct. 24. ß1 Integrin as a Prognostic and Predictive Marker in Triple-Negative Breast Cancer. Yin, Hsin-Ling; Wu, Chun-Chieh; Lin, Chih-Hung; Chai, Chee-Yin; Hou, Ming-Feng; Chang, Shu-Jyuan; Tsai, Hung-Pei;Hung, Wen-Chun; Pan, Mei-Ren; Luo, Chi-Wen. Int J Mol Sci; 17(9)2016. 25. Prognostic significance of androgen receptor expression in invasive breast cancer: transcriptomic and protein expression analysis. Aleskandarany, Mohammad A; Abduljabbar, Rezvan; Ashankyty, Ibraheem; Elmouna, Ahmed; Jerjees, Dena; Ali, Simak;Buluwela, Laki; Diez-Rodriguez, Maria; Caldas, Carlos; Green, Andrew R; Ellis, Ian O; Rakha, Emad A. Breast Cancer Res Treat; 159(2): 215-27, 2016 Sep. 26. St Gallen 2015 subtyping of luminal breast cancers: impact of different Ki67-based proliferation assessment methods. Focke, Cornelia M; van Diest, Paul J; Decker, Thomas. Breast Cancer Res Treat; 159(2): 257-63, 2016 Sep. 27. Validated biomarkers: The key to precision treatment in patients with breast cancer. Duffy, Michael J; O'Donovan, Norma; McDermott, Enda; Crown, John. Breast; 29: 192-201, 2016 Oct. 28. Standardized evaluation of tumor-infiltrating lymphocytes in breast cancer: results of the ring studies of the international immuno-oncology biomarker working group. Denkert, Carsten; Wienert, Stephan; Poterie, Audrey; Loibl, Sibylle; Budczies, Jan; Badve, Sunil; Bago-Horvath, Zsuzsanna; Bane, Anita; Bedri, Shahinaz; Brock, Jane; Chmielik, Ewa; Christgen, Matthias; Colpaert, Cecile; Demaria, Sandra; Van den Eynden, Gert; Floris, Giuseppe; Fox, Stephen B; Gao, Dongxia; Ingold Heppner, Barbara; Kim, S Rim;Kos, Zuzana; Kreipe, Hans H; Lakhani, Sunil R; Penault-Llorca, Frederique; Pruneri, Giancarlo; Radosevic-Robin, Nina;Rimm, David L; Schnitt, Stuart J; Sinn, Bruno V; Sinn, Peter; Sirtaine, Nicolas; O'Toole, Sandra A; Viale, Giuseppe; Van de Vijver, Koen; de Wind, Roland; von Minckwitz, Gunter; Klauschen, Frederick; Untch, Michael; Fasching, Peter A; Reimer, Toralf; Willard-Gallo, Karen; Michiels, Stefan; Loi, Sherene; Salgado, Roberto. Mod Pathol; 29(10): 1155-64, 2016 Oct. 29. Downregulation of androgen receptor is strongly associated with diabetes in triple negative breast cancer patients. Collina, Francesca; Cerrone, Margherita; Peluso, Valentina; Laurentiis, Michelino De; Caputo, Roberta; Cecio, Rossella De; Liguori, Giuseppina; Botti, Gerardo; Cantile, Monica; Bonito, Maurizio Di. Am J Transl Res; 8(8): 3530-9, 2016. 30. Prognostic values of negative estrogen or progesterone receptor expression in patients with luminal B HER2-negative breast cancer. Park, Chansub; Park, Kyeongmee; Kim, Jiyoung; Sin, Youngjoo; Park, Inseok; Cho, Hyunjin; Yang, Keunho; Bae, Byung Noe; Kim, Ki Whan; Ahn, Sookyung; Gwak, Geumhee. World J Surg Oncol; 14(1): 244, 2016. 31. Prognostic and predictive value of Ki-67 in triple-negative breast cancer. Wang, Wei; Wu, Jiayi; Zhang, Peifeng; Fei, Xiaochun; Zong, Yu; Chen, Xiaosong; Huang, Ou; He, Jian-Rong; Chen, Weiguo; Li, Yafen; Shen, Kunwei; Zhu, Li. Oncotarget; 7(21): 31079-87, 2016 May 24. 32. Genomic profiling of breast cancer in African-American women using MammaPrint. Nunes, Raquel A; Wray, Lynette; Mete, Mihriye; Herbolsheimer, Pia; Smith, Karen L; Bijelic, Lana; Boisvert, Marc E; Swain, Sandra M. Breast Cancer Res Treat; 159(3): 481-8, 2016 Oct. 33. Ki-67 is a prognostic marker for hormone receptor positive tumors. Pérez-López, M E; García-Gómez, J; Alves, M T; Paradela, A; García-Mata, J; García-Caballero, T. Clin Transl Oncol; 18(10): 996-1002, 2016 Oct. 34. Quantitative proteomics revealed novel proteins associated with molecular subtypes of breast cancer. Suman, Shankar; Basak, Trayambak; Gupta, Prachi; Mishra, Sanjay; Kumar, Vijay; Sengupta, Shantanu; Shukla, Yogeshwer. J Proteomics; 148: 183-93, 2016 Oct 4. 35. Discovery of potential prognostic long non-coding RNA biomarkers for predicting the risk of tumor recurrence of breast cancer patients. Zhou, Meng; Zhong, Lei; Xu, Wanying; Sun, Yifan; Zhang, Zhaoyue; Zhao, Hengqiang; Yang, Lei; Sun, Jie. Sci Rep; 6: 31038, 2016. 36. Comparison between Ki67 labeling index determined using image analysis software with virtual slide system and that determined visually in breast cancer. Maeda, Ichiro; Abe, Kayoko; Koizumi, Hirotaka; Nakajima, Chika; Tajima, Shinya; Aoki, Hiromi; Tsuchiya, Junichi;Tsuchiya, Seiko; Tsuchiya, Kyoko; Shimo, Arata; Tsugawa, Koichiro; Ueno, Takahiko; Tatsunami, Shinobu; Takagi, Masayuki. Breast Cancer; 23(5): 745-51, 2016 Sep. 37. New insight on the biological role of p53 protein as a tumor suppressor: re-evaluation of its clinical significance in triple-negative breast cancer. Jin, Min-Sun; Park, In Ae; Kim, Ji Young; Chung, Yul Ri; Im, Seock-Ah; Lee, Kyung-Hun; Moon, Hyeong-Gon; Han, Wonshik; Noh, Dong-Young; Ryu, Han Suk. Tumour Biol; 37(8): 11017-24, 2016 Aug. 38. Affluence and Breast Cancer. Lehrer, Steven; Green, Sheryl; Rosenzweig, Kenneth E. Breast J; 22(5): 564-7, 2016 Sep. 39. Immunohistochemical expression of human epidermal growth factor receptor (HER)-4 and prognosis in patients with metastatic breast cancer. Deligonul, Adem; Evrensel, Turkkan; Avci, Nilufer; Ugras, Nesrin; Ture, Mehmet; Cubukcu, Erdem; Hartavi, Mustafa; Fatih Olmez, Omer; Kurt, Ender; Tolunay, Sahsine; Kanat, Ozkan; Manavoglu, Osman. J BUON; 21(3): 564-9, 2016 May-Jun. 40. Circulating Tumor Cells in Breast Cancer Patients. Hall, Carolyn; Valad, Lily; Lucci, Anthony. Crit Rev Oncog; 21(1-2): 125-39, 2016. 41. Prognostic value of microRNA-203a expression in breast cancer. Gomes, Bruno Costa; Martins, Manuela; Lopes, Paulina; Morujão, Inês; Oliveira, Mário; Araújo, António; Rueff, José;Rodrigues, António Sebastião. Oncol Rep; 36(3): 1748-56, 2016 Sep. 42. uPAR enhances malignant potential of triple-negative breast cancer by directly interacting with uPA and IGF1R. Huber, Michaela C; Mall, Rebecca; Braselmann, Herbert; Feuchtinger, Annette; Molatore, Sara; Lindner, Katrin; Walch, Axel; Gross, Eva; Schmitt, Manfred; Falkenberg, Natalie; Aubele, Michaela. BMC Cancer; 16: 615, 2016. 43. The inconsistency of molecular subtypes between primary foci and metastatic axillary lymph nodes in Luminal A breast cancer patients among Chinese women, an indication for chemotherapy? Sun, Yadong; Liu, Xiaofeng; Cui, Shude; Li, Lianfang; Tian, Peiqi; Liu, Shanqing; Li, Yong; Yin, Mengmeng; Zhang, Chongjian; Mao, Qixin; Wang, Jiaxiang. Tumour Biol; 37(7): 9555-63, 2016 Jul. 44. Comparison of HER2 Dual-Color and Fluorescence In Situ Hybridization in Breast Cancer: A Cohort Study Emphasizing Equivocal Cases. Shao, Tiffany; Wood, Martha; Wing, Anthony; Hnatovska, Marta; Mendes, Maria; Brendan Mullen, J; Chang, Martin C. Am J Clin Pathol; 146(3): 339-45, 2016 Sep. 45. p53, cathepsin D, Bcl-2 are joint prognostic indicators of breast cancer metastatic spreading. Guerra, Emanuela; Cimadamore, Alessia; Simeone, Pasquale; Vacca, Giovanna; Lattanzio, Rossano; Botti, Gerardo;Gatta, Valentina; D'Aurora, Marco; Simionati, Barbara; Piantelli, Mauro; Alberti, Saverio. BMC Cancer; 16: 649, 2016. 46. Disseminated and circulating tumor cells in bone marrow and blood of breast cancer patients: properties, enrichment, and potential targets. Schindlbeck, C; Andergassen, U; Jueckstock, J; Rack, B; Janni, W; Jeschke, U. J Cancer Res Clin Oncol; 142(9): 1883-95, 2016 Sep. 47. Nottingham Prognostic Index Plus: Validation of a clinical decision making tool in breast cancer in an independent series. Green, Andrew R; Soria, Daniele; Stephen, Jacqueline; Powe, Desmond G; Nolan, Christopher C; Kunkler, Ian; Thomas, Jeremy; Kerr, Gillian R; Jack, Wilma; Cameron, David; Piper, Tammy; Ball, Graham R; Garibaldi, Jonathan M; Rakha, Emad A; Bartlett, John Ms; Ellis, Ian O. J Pathol Clin Res; 2(1): 32-40, 2016 Jan. 48. Prognostic significance of inflammatory factors expression by stroma from breast carcinomas. Fernandez-Garcia, Belen; Eiro, Noemi; Miranda, Maria-Angeles; Cid, Sandra; González, Luis O; Domínguez, Francisco;Vizoso, Francisco J. Carcinogenesis; 37(8): 768-76, 2016 Aug. 49. Prognostic Impact of Discordance in Hormone Receptor Status Between Primary and Recurrent Sites in Patients With Recurrent Breast Cancer. Shiino, Sho; Kinoshita, Takayuki; Yoshida, Masayuki; Jimbo, Kenjiro; Asaga, Sota; Takayama, Shin; Tsuda, Hitoshi. Clin Breast Cancer; 16(4): e133-40, 2016 Aug. 50. New insights into the prognostic value of Ki-67 labeling index in patients with triple-negative breast cancer. Hao, Shuang; He, Zhi-Xian; Yu, Ke-Da; Yang, Wen-Tao; Shao, Zhi-Min. Oncotarget; 7(17): 24824-31, 2016 Apr 26. 51. PD-L1 expression in human cancers and its association with clinical outcomes. Wang, Xin; Teng, Feifei; Kong, Li; Yu, Jinming. Onco Targets Ther; 9: 5023-39, 2016. 52. Prognostic value of androgen receptor expression in triple negative breast carcinomas: personal experience and comments on a review about "Triple-negative breast cancer: treatment challenges and solutions" by Collignon et al. Ieni, Antonio; Barresi, Valeria; Ricciardi, Giuseppina Rosaria Rita; Adamo, Barbara; Adamo, Vincenzo; Tuccari, Giovanni. Breast Cancer (Dove Med Press); 8: 157-9, 2016. 53. West German Study Group Phase III PlanB Trial: First Prospective Outcome Data for the 21-Gene Recurrence Score Assay and Concordance of Prognostic Markers by Central and Local Pathology Assessment. Gluz, Oleg; Nitz, Ulrike A; Christgen, Matthias; Kates, Ronald E; Shak, Steven; Clemens, Michael; Kraemer, Stefan; Aktas, Bahriye; Kuemmel, Sherko; Reimer, Toralf; Kusche, Manfred; Heyl, Volker; Lorenz-Salehi, Fatemeh; Just, Marianne;Hofmann, Daniel; Degenhardt, Tom; Liedtke, Cornelia; Svedman, Christer; Wuerstlein, Rachel; Kreipe, Hans H; Harbeck, Nadia. J Clin Oncol; 34(20): 2341-9, 2016 Jul 10. 54. Prognostic factor analysis for breast cancer using gene expression profiles. Joe, Soobok; Nam, Hojung. BMC Med Inform Decis Mak; 16 Suppl 1: 56, 2016. 55. The Prognostic Impact of Molecular Subtypes and Very Young Age on Breast Conserving Surgery in Early Stage Breast Cancer. Ordu, Cetin; McGuire, Kandace; Alco, Gul; Nur Pilanci, Kezban; Koksal, Ulkuhan I; Elbüken, Filiz; Erdogan, Zeynep;Agacayak, Filiz; Ilgun, Serkan; Sarsenov, Dauren; Öztürk, Alper; Igdem, Sefik; Okkan, Sait; Eralp, Yesim; Dincer, Maktav;Ozmen, Vahit. Cureus; 8(6): e633, 2016. 56. Detection of circulating tumor cells using manually performed immunocytochemistry (MICC) does not correlate with outcome in patients with early breast cancer - Results of the German SUCCESS-A- trial. Jueckstock, Julia; Rack, Brigitte; Friedl, Thomas W P; Scholz, Christoph; Steidl, Julia; Trapp, Elisabeth; Tesch, Hans;Forstbauer, Helmut; Lorenz, Ralf; Rezai, Mahdi; Häberle, Lothar; Alunni-Fabbroni, Marianna; Schneeweiss, Andreas;Beckmann, Matthias W; Lichtenegger, Werner; Fasching, Peter A; Pantel, Klaus; Janni, Wolfgang. BMC Cancer; 16: 401, 2016. 57. Expression and methylation patterns partition luminal-A breast tumors into distinct prognostic subgroups. Netanely, Dvir; Avraham, Ayelet; Ben-Baruch, Adit; Evron, Ella; Shamir, Ron. Breast Cancer Res; 18(1): 74, 2016. 58. Prognostic impact of circulating tumor cell apoptosis and clusters in serial blood samples from patients with metastatic breast cancer in a prospective observational cohort. Jansson, Sara; Bendahl, Pär-Ola; Larsson, Anna-Maria; Aaltonen, Kristina E; Rydén, Lisa. BMC Cancer; 16: 433, 2016. 59. Extra-nodal extension of sentinel lymph node metastasis is a marker of poor prognosis in breast cancer patients: A systematic review and an exploratory meta-analysis. Nottegar, A; Veronese, N; Senthil, M; Roumen, R M; Stubbs, B; Choi, A H; Verheuvel, N C; Solmi, M; Pea, A; Capelli, P;Fassan, M; Sergi, G; Manzato, E; Maruzzo, M; Bagante, F; Koç, M; Eryilmaz, M A; Bria, E; Carbognin, L; Bonetti, F;Barbareschi, M; Luchini, C. Eur J Surg Oncol; 42(7): 919-25, 2016 Jul. 60. Cancer Hallmarks, Biomarkers and Breast Cancer Molecular Subtypes. Dai, Xiaofeng; Xiang, Liangjian; Li, Ting; Bai, Zhonghu. J Cancer; 7(10): 1281-94, 2016. 61. PD-L1 expression and CD274 gene alteration in triple-negative breast cancer: implication for prognostic biomarker. Guo, Lei; Li, Wenbin; Zhu, Xinxin; Ling, Yun; Qiu, Tian; Dong, Lin; Fang, Yi; Yang, Hongying; Ying, Jianming. Springerplus; 5(1): 805, 2016. 62. Prognostic and predictive impacts of tumor-infiltrating lymphocytes differ between Triple-negative and HER2-positive breast cancers treated with standard systemic therapies. Hida, Akira I; Sagara, Yasuaki; Yotsumoto, Daisuke; Kanemitsu, Shuichi; Kawano, Junko; Baba, Shinichi; Rai, Yoshiaki;Oshiro, Yumi; Aogi, Kenjiro; Sagara, Yoshiaki; Ohi, Yasuyo. Breast Cancer Res Treat; 158(1): 1-9, 2016 Jul. 63. HER2 intratumoral heterogeneity analyses by concurrent HER2 gene and protein assessment for the prognosis of HER2 negative invasive breast cancer patients. Kurozumi, Sasagu; Padilla, Mary; Kurosumi, Masafumi; Matsumoto, Hiroshi; Inoue, Kenichi; Horiguchi, Jun; Takeyoshi, Izumi; Oyama, Tetsunari; Ranger-Moore, Jim; Allred, D Craig; Dennis, Eslie; Nitta, Hiroaki. Breast Cancer Res Treat; 158(1): 99-111, 2016 Jul. 64. Ki67, PCNA, and MCM proteins: Markers of proliferation in the diagnosis of breast cancer. Juríková, Miroslava; Danihel, Ludovít; Polák, Stefan; Varga, Ivan. Acta Histochem; 118(5): 544-52, 2016 Jun. 65. Predictive Value of Molecular Subtyping for Locoregional Recurrence in Early-Stage Breast Cancer with N1 without Postmastectomy Radiotherapy. Wen, Ge; Zhang, Jin-Shan; Zhang, Yu-Jing; Zhu, Yu-Jia; Huang, Xiao-Bo; Guan, Xun-Xing. J Breast Cancer; 19(2): 176-84, 2016 Jun. 66. Galectin signatures contribute to the heterogeneity of breast cancer and provide new prognostic information and therapeutic targets. Grosset, Andrée-Anne; Labrie, Marilyne; Vladoiu, Maria Claudia; Yousef, Einas M; Gaboury, Louis; St-Pierre, Yves. Oncotarget; 7(14): 18183-203, 2016 Apr 5. 67. HER2/CEP17 Ratios and Clinical Outcome in HER2-Positive Early Breast Cancer Undergoing Trastuzumab-Containing Therapy. Stocker, Albina; Hilbers, Marie-Luise; Gauthier, Claire; Grogg, Josias; Kullak-Ublick, Gerd A; Seifert, Burkhardt; Varga, Zsuzsanna; Trojan, Andreas. PLoS One; 11(7): e0159176, 2016. 68. The effects of lymph node status on predicting outcome in ER+ /HER2- tamoxifen treated breast cancer patients using gene signatures. Cockburn, Jessica G; Hallett, Robin M; Gillgrass, Amy E; Dias, Kay N; Whelan, T; Levine, M N; Hassell, John A; Bane, Anita. BMC Cancer; 16: 555, 2016. 69. Value of Ki-67 expression in triple-negative breast cancer before and after neoadjuvant chemotherapy with weekly paclitaxel plus carboplatin. Wang, Ruo-Xi; Chen, Sheng; Jin, Xi; Shao, Zhi-Ming. Sci Rep; 6: 30091, 2016. 70. Improved Risk Stratification for Breast Cancer Samples Based on the Expression Ratio of the Estrogen and Progesterone Receptor. Bendrat, Klaus; Fritz, Peter; Müller, Simon; Brockmöller, Sylvia; Debus, Annegret; Friedrichs, Kay; Lindner, Christoph;Brinkmann, Friedhelm; Heidemann, Else; Niendorf, Axel. Anticancer Res; 36(8): 3855-63, 2016 Aug. 71. Immunotherapy in Breast Cancer. Marmé, Frederik. Oncol Res Treat; 39(6): 335-45, 2016. 72. Prognostic Factors for Breast Cancer: an Immunomorphological Update. Roncati, Luca; Barbolini, Giuseppe; Piacentini, Federico; Piscioli, Francesco; Pusiol, Teresa; Maiorana, Antonio. Pathol Oncol Res; 22(3): 449-52, 2016 Jul. 73. Androgen receptor and metastasis-associated protein-1 are frequently expressed in estrogen receptor negative/HER2 positive breast cancer. Zhao, Lin; Niu, Fengting; Shen, Honghong; Liu, Xiaozhen; Chen, Lijuan; Niu, Yun. Virchows Arch; 468(6): 687-96, 2016 Jun. 74. Biological subtyping of early breast cancer: a study comparing RT-qPCR with immunohistochemistry. Wirtz, Ralph M; Sihto, Harri; Isola, Jorma; Heikkilä, Päivi; Kellokumpu-Lehtinen, Pirkko-Liisa; Auvinen, Päivi;Turpeenniemi-Hujanen, Taina; Jyrkkiö, Sirkku; Lakis, Sotiris; Schlombs, Kornelia; Laible, Mark; Weber, Stefan; Eidt, Sebastian; Sahin, Ugur; Joensuu, Heikki. Breast Cancer Res Treat; 157(3): 437-46, 2016 Jun. 75. 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