Results 111 to 120 of about 2,802,342 (335)
Feasibility of a ctDNA multigenic panel for non‐small‐cell lung cancer early detection and disease surveillance
Molecular Oncology, EarlyView.Plasma‐based detection of actionable mutations is a promising approach in lung cancer management. Analysis of ctDNA with a multigene NGS panel identified TP53, KRAS, and EGFR as the most frequently altered, with TP53 and KRAS in treatment‐naïve patients and TP53 and EGFR in previously treated patients.Giovanna Maria Stanfoca Casagrande, Marcela de Oliveira Silva, Mariana Bisarro dos Reis, Rodrigo de Oliveira Cavagna, Luciane Sussuchi, Icaro Alves Pinto, Natalia Zampieri Pontes, Rodrigo Sampaio Chiarantano, Flavio Augusto Ferreira da Silva, Pedro de Marchi, Letícia Ferro Leal, Rui M. Reis +11 morewiley +1 more sourceAggressive prostate cancer is associated with pericyte dysfunction
Molecular Oncology, EarlyView.Tumor‐produced TGF‐β drives pericyte dysfunction in prostate cancer. This dysfunction is characterized by downregulation of some canonical pericyte markers (i.e., DES, CSPG4, and ACTA2) while maintaining the expression of others (i.e., PDGFRB, NOTCH3, and RGS5).Anabel Martinez‐Romero, Ane Martinez‐Larrinaga, Joaquim Grego‐Bessa, Saioa Garcia‐Longarte, Hielke van Splunder, Ianire Astobiza, Amaia Ercilla, Laura Bozal‐Basterra, Isabel Mendizabal, Pilar Villacampa, Arkaitz Carracedo, Mariona Graupera +11 morewiley +1 more sourcePATHOLOGY [PDF]
Neuro-Oncology, 1992 J.-i. Adachi, K. Totake, M. Shirahata, K. Mishima, T. Suzuki, T. Yanagisawa, K. Fukuoka, R. Nishikawa, A. Arimappamagan, N. Manoj, A. Mahadevan, D. Bhat, H. Arvinda, B. Indiradevi, S. Somanna, B. Chandramouli, S. A. Petterson, S. K. Hermansen, R. H. Dahlrot, S. Hansen, B. W. Kristensen, F. Carvalho, S. Jalali, S. Singh, S. Croul, K. Aldape, G. Zadeh, J. Choi, S.-H. Park, S. K. Khang, Y.-L. Suh, S. P. Kim, Y. S. Lee, S. H. Kim, S. Coberly, K. Samayoa, Y. Liu, P. Kiaei, J. Hill, S. Patterson, M. Damore, S. Dahiya, R. Emnett, J. Phillips, D. Haydon, J. Leonard, A. Perry, D. Gutmann, S. Epari, S. Ahmed, M. Gurav, S. Raikar, A. Moiyadi, P. Shetty, T. Gupta, R. Jalali, J. Georges, A. Zehri, E. Carlson, N. Martirosyan, A. Elhadi, J. Nichols, L. Ighaffari, J. Eschbacher, B. Feuerstein, T. Anderson, M. Preul, K. Jensen, P. Nakaji, H. Girardi, F. Monville, S. Carpentier, M. Giry, J. Voss, R. Jenkins, B. Boisselier, V. Frayssinet, C. Poggionovo, A. Catteau, K. Mokhtari, M. Sanson, H. Peyro-Saint-Paul, C. Giannini, T. Hide, H. Nakamura, K. Makino, S. Yano, S. Anai, N. Shinojima, J.-i. Kuroda, T. Takezaki, J.-i. Kuratsu, F. Higuchi, H. Matsuda, K. Iwata, K. Ueki, P. Kim, J. Kong, L. Cooper, F. Wang, J. Gao, G. Teodoro, L. Scarpace, T. Mikkelsen, M. Schniederjan, C. Moreno, J. Saltz, D. Brat, U. Cho, Y.-K. Hong, Y. S. Lee, R. Lober, L. Lu, M. H. Gephart, P. Fisher, M. Miyazaki, H. Nishihara, T. Itoh, M. Kato, S. Fujimoto, T. Kimura, M. Tanino, S. Tanaka, N. Nguyen, G. Moes, J. L. Villano, H. Nishihara, H. Kanno, Y. Kato, S. Tanaka, T. Ohnishi, H. Harada, S. Ohue, S. Kouno, A. Inoue, D. Yamashita, S. Okamoto, M. Nitta, Y. Muragaki, T. Maruyama, T. Sawada, T. Komori, T. Saito, Y. Okada, S. B. Omay, J. M. Gunel, V. E. Clark, J. Li, E. Z. E. Omay, A. Serin, L. E. Kolb, R. M. Hebert, K. Bilguvar, K. Ozduman, M. N. Pamir, T. Kilic, J. Baehring, J. M. Piepmeier, C. W. Brennan, J. Huse, P. H. Gutin, K. Yasuno, A. Vortmeyer, M. Gunel, A. Perry, S. Pugh, C. L. Rogers, D. Brachman, W. McMillan, J. Jenrette, I. Barani, D. Shrieve, A. Sloan, M. Mehta, A. Prabowo, A. Iyer, T. Veersema, J. Anink, A. S.-v. Meeteren, W. Spliet, P. van Rijen, T. Ferrier, D. Capper, M. Thom, E. Aronica, T. Chharchhodawala, M. Sable, M. C. Sharma, C. Sarkar, V. Suri, M. Singh, V. Santosh, B. Thota, M. Srividya, K. Sravani, S. Shwetha, A. Arivazhagan, K. Thennarasu, B. Chandramouli, A. Hegde +199 moreopenaire +1 more sourceTumor and germline testing with next generation sequencing in epithelial ovarian cancer: a prospective paired comparison using an 18‐gene panel
Molecular Oncology, EarlyView.Genetic testing in epithelial ovarian cancer includes both germline and tumor‐testing. This approach often duplicates resources. The current prospective study assessed the feasibility of tumor‐first multigene testing by comparing tumor tissue with germline testing of peripheral blood using an 18‐gene NGS panel in 106 patients.Elisabeth Spenard, Cristina Mitric, Melanie Care, Tracy L. Stockley, Raymond H. Kim, Jeanna McCuaig, Blaise Clarke, Laura Ranich, Clare Sheen, Sarah E. Ferguson, Liat Hogen, Taymaa May, Marcus Q. Bernardini +12 morewiley +1 more sourceVEGF-mediated tight junctions pathological fenestration enhances doxorubicin-loaded glycolipid-like nanoparticles traversing BBB for glioblastoma-targeting therapy
Drug Delivery, 2017 The existence of blood–brain barrier (BBB) greatly hindered the penetration and accumulation of chemotherapeutics into glioblastoma (GBM), accompany with poor therapeutic effects.Lijuan Wen, Yanan Tan, Suhuan Dai, Yun Zhu, Tingting Meng, Xiqin Yang, Yupeng Liu, Xuan Liu, Hong Yuan, Fuqiang Hu +9 moredoaj +1 more sourceSemantic Segmentation of Pathological Lung Tissue with Dilated Fully
Convolutional Networks
, 2018 Early and accurate diagnosis of interstitial lung diseases (ILDs) is crucial
for making treatment decisions, but can be challenging even for experienced
radiologists. The diagnostic procedure is based on the detection and
recognition of the different ILD Anthimopoulos, Marios, Christe, Andreas, Christodoulidis, Stergios, Ebner, Lukas, Geiser, Thomas, Mougiakakou, Stavroula +5 morecore +1 more source