Гастроинтестинальные стромальные опухоли GIST
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Гастроинтестинальные стромальные опухоли — GIST →Первоисточник и дополнительные подробности
Gastrointestinal Stromal Tumors Treatment (PDQ®) - NCI
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Ссылка и библиографический список извлечены: 2026-09-10. Это не дата проверки каждой публикации.
Библиография · 132 публикаций
Miettinen M, Lasota J: Gastrointestinal stromal tumors--definition, clinical, histological, immunohistochemical, and molecular genetic features and differential diagnosis. Virchows Arch 438 (1): 1-12, 2001. (откроется в новой вкладке)
Miettinen M, Sarlomo-Rikala M, Lasota J: Gastrointestinal stromal tumors: recent advances in understanding of their biology. Hum Pathol 30 (10): 1213-20, 1999. (откроется в новой вкладке)
Ma GL, Murphy JD, Martinez ME, et al.: Epidemiology of gastrointestinal stromal tumors in the era of histology codes: results of a population-based study. Cancer Epidemiol Biomarkers Prev 24 (1): 298-302, 2015. (откроется в новой вкладке)
Søreide K, Sandvik OM, Søreide JA, et al.: Global epidemiology of gastrointestinal stromal tumours (GIST): A systematic review of population-based cohort studies. Cancer Epidemiol 40: 39-46, 2016. (откроется в новой вкладке)
Kawanowa K, Sakuma Y, Sakurai S, et al.: High incidence of microscopic gastrointestinal stromal tumors in the stomach. Hum Pathol 37 (12): 1527-35, 2006. (откроется в новой вкладке)
Agaimy A, Wünsch PH, Hofstaedter F, et al.: Minute gastric sclerosing stromal tumors (GIST tumorlets) are common in adults and frequently show c-KIT mutations. Am J Surg Pathol 31 (1): 113-20, 2007. (откроется в новой вкладке)
Benesch M, Wardelmann E, Ferrari A, et al.: Gastrointestinal stromal tumors (GIST) in children and adolescents: A comprehensive review of the current literature. Pediatr Blood Cancer 53 (7): 1171-9, 2009. (откроется в новой вкладке)
Joensuu H, Hohenberger P, Corless CL: Gastrointestinal stromal tumour. Lancet 382 (9896): 973-83, 2013. (откроется в новой вкладке)
Corless CL, Heinrich MC: Molecular pathobiology of gastrointestinal stromal sarcomas. Annu Rev Pathol 3: 557-86, 2008. (откроется в новой вкладке)
Miettinen M, Lasota J: Gastrointestinal stromal tumors: review on morphology, molecular pathology, prognosis, and differential diagnosis. Arch Pathol Lab Med 130 (10): 1466-78, 2006. (откроется в новой вкладке)
DeMatteo RP, Lewis JJ, Leung D, et al.: Two hundred gastrointestinal stromal tumors: recurrence patterns and prognostic factors for survival. Ann Surg 231 (1): 51-8, 2000. (откроется в новой вкладке)
Maynard MA, Marino-Enriquez A, Fletcher JA, et al.: Thyroid hormone inactivation in gastrointestinal stromal tumors. N Engl J Med 370 (14): 1327-34, 2014. (откроется в новой вкладке)
Janeway KA, Pappo A: Treatment guidelines for gastrointestinal stromal tumors in children and young adults. J Pediatr Hematol Oncol 34 (Suppl 2): S69-72, 2012. (откроется в новой вкладке)
Miettinen M, Lasota J, Sobin LH: Gastrointestinal stromal tumors of the stomach in children and young adults: a clinicopathologic, immunohistochemical, and molecular genetic study of 44 cases with long-term follow-up and review of the literature. Am J Surg Pathol 29 (10): 1373-81, 2005. (откроется в новой вкладке)
Nickl NJ: Gastrointestinal stromal tumors: new progress, new questions. Curr Opin Gastroenterol 20 (5): 482-7, 2004. (откроется в новой вкладке)
Vander Noot MR, Eloubeidi MA, Chen VK, et al.: Diagnosis of gastrointestinal tract lesions by endoscopic ultrasound-guided fine-needle aspiration biopsy. Cancer 102 (3): 157-63, 2004. (откроется в новой вкладке)
Joensuu H: Gastrointestinal stromal tumor (GIST). Ann Oncol 17 (Suppl 10): x280-6, 2006. (откроется в новой вкладке)
Miettinen M, Sobin LH, Lasota J: Gastrointestinal stromal tumors of the stomach: a clinicopathologic, immunohistochemical, and molecular genetic study of 1765 cases with long-term follow-up. Am J Surg Pathol 29 (1): 52-68, 2005. (откроется в новой вкладке)
Miettinen M, Makhlouf H, Sobin LH, et al.: Gastrointestinal stromal tumors of the jejunum and ileum: a clinicopathologic, immunohistochemical, and molecular genetic study of 906 cases before imatinib with long-term follow-up. Am J Surg Pathol 30 (4): 477-89, 2006. (откроется в новой вкладке)
Miettinen M, Kopczynski J, Makhlouf HR, et al.: Gastrointestinal stromal tumors, intramural leiomyomas, and leiomyosarcomas in the duodenum: a clinicopathologic, immunohistochemical, and molecular genetic study of 167 cases. Am J Surg Pathol 27 (5): 625-41, 2003. (откроется в новой вкладке)
Miettinen M, Furlong M, Sarlomo-Rikala M, et al.: Gastrointestinal stromal tumors, intramural leiomyomas, and leiomyosarcomas in the rectum and anus: a clinicopathologic, immunohistochemical, and molecular genetic study of 144 cases. Am J Surg Pathol 25 (9): 1121-33, 2001. (откроется в новой вкладке)
Miettinen M, Lasota J: Gastrointestinal stromal tumors: pathology and prognosis at different sites. Semin Diagn Pathol 23 (2): 70-83, 2006. (откроется в новой вкладке)
Hohenberger P, Ronellenfitsch U, Oladeji O, et al.: Pattern of recurrence in patients with ruptured primary gastrointestinal stromal tumour. Br J Surg 97 (12): 1854-9, 2010. (откроется в новой вкладке)
Hølmebakk T, Bjerkehagen B, Boye K, et al.: Definition and clinical significance of tumour rupture in gastrointestinal stromal tumours of the small intestine. Br J Surg 103 (6): 684-691, 2016. (откроется в новой вкладке)
Joensuu H: Risk stratification of patients diagnosed with gastrointestinal stromal tumor. Hum Pathol 39 (10): 1411-9, 2008. (откроется в новой вкладке)
Chun HJ, Byun JY, Chun KA, et al.: Gastrointestinal leiomyoma and leiomyosarcoma: CT differentiation. J Comput Assist Tomogr 22 (1): 69-74, 1998 Jan-Feb. (откроется в новой вкладке)
Levy AD, Remotti HE, Thompson WM, et al.: Gastrointestinal stromal tumors: radiologic features with pathologic correlation. Radiographics 23 (2): 283-304, 456; quiz 532, 2003 Mar-Apr. (откроется в новой вкладке)
Ghanem N, Altehoefer C, Furtwängler A, et al.: Computed tomography in gastrointestinal stromal tumors. Eur Radiol 13 (7): 1669-78, 2003. (откроется в новой вкладке)
Burkill GJ, Badran M, Al-Muderis O, et al.: Malignant gastrointestinal stromal tumor: distribution, imaging features, and pattern of metastatic spread. Radiology 226 (2): 527-32, 2003. (откроется в новой вкладке)
Demetri GD, Benjamin RS, Blanke CD, et al.: NCCN Task Force report: management of patients with gastrointestinal stromal tumor (GIST)--update of the NCCN clinical practice guidelines. J Natl Compr Canc Netw 5 (Suppl 2): S1-29; quiz S30, 2007. (откроется в новой вкладке)
Casali PG, Jost L, Reichardt P, et al.: Gastrointestinal stromal tumors: ESMO clinical recommendations for diagnosis, treatment and follow-up. Ann Oncol 19 (Suppl 2): ii35-8, 2008. (откроется в новой вкладке)
Hirota S, Isozaki K, Moriyama Y, et al.: Gain-of-function mutations of c-kit in human gastrointestinal stromal tumors. Science 279 (5350): 577-80, 1998. (откроется в новой вкладке)
Kindblom LG, Remotti HE, Aldenborg F, et al.: Gastrointestinal pacemaker cell tumor (GIPACT): gastrointestinal stromal tumors show phenotypic characteristics of the interstitial cells of Cajal. Am J Pathol 152 (5): 1259-69, 1998. (откроется в новой вкладке)
Wang L, Vargas H, French SW: Cellular origin of gastrointestinal stromal tumors: a study of 27 cases. Arch Pathol Lab Med 124 (10): 1471-5, 2000. (откроется в новой вкладке)
Sircar K, Hewlett BR, Huizinga JD, et al.: Interstitial cells of Cajal as precursors of gastrointestinal stromal tumors. Am J Surg Pathol 23 (4): 377-89, 1999. (откроется в новой вкладке)
Maeda H, Yamagata A, Nishikawa S, et al.: Requirement of c-kit for development of intestinal pacemaker system. Development 116 (2): 369-75, 1992. (откроется в новой вкладке)
Huizinga JD, Thuneberg L, Klüppel M, et al.: W/kit gene required for interstitial cells of Cajal and for intestinal pacemaker activity. Nature 373 (6512): 347-9, 1995. (откроется в новой вкладке)
Torihashi S, Nishi K, Tokutomi Y, et al.: Blockade of kit signaling induces transdifferentiation of interstitial cells of cajal to a smooth muscle phenotype. Gastroenterology 117 (1): 140-8, 1999. (откроется в новой вкладке)
Corless CL, Fletcher JA, Heinrich MC: Biology of gastrointestinal stromal tumors. J Clin Oncol 22 (18): 3813-25, 2004. (откроется в новой вкладке)
Heinrich MC, Corless CL, Duensing A, et al.: PDGFRA activating mutations in gastrointestinal stromal tumors. Science 299 (5607): 708-10, 2003. (откроется в новой вкладке)
Andersson J, Sihto H, Meis-Kindblom JM, et al.: NF1-associated gastrointestinal stromal tumors have unique clinical, phenotypic, and genotypic characteristics. Am J Surg Pathol 29 (9): 1170-6, 2005. (откроется в новой вкладке)
Agaimy A, Pelz AF, Corless CL, et al.: Epithelioid gastric stromal tumours of the antrum in young females with the Carney triad: a report of three new cases with mutational analysis and comparative genomic hybridization. Oncol Rep 18 (1): 9-15, 2007. (откроется в новой вкладке)
Carney JA: Gastric stromal sarcoma, pulmonary chondroma, and extra-adrenal paraganglioma (Carney Triad): natural history, adrenocortical component, and possible familial occurrence. Mayo Clin Proc 74 (6): 543-52, 1999. (откроется в новой вкладке)
Blay P, Astudillo A, Buesa JM, et al.: Protein kinase C theta is highly expressed in gastrointestinal stromal tumors but not in other mesenchymal neoplasias. Clin Cancer Res 10 (12 Pt 1): 4089-95, 2004. (откроется в новой вкладке)
Duensing A, Joseph NE, Medeiros F, et al.: Protein Kinase C theta (PKCtheta) expression and constitutive activation in gastrointestinal stromal tumors (GISTs). Cancer Res 64 (15): 5127-31, 2004. (откроется в новой вкладке)
West RB, Corless CL, Chen X, et al.: The novel marker, DOG1, is expressed ubiquitously in gastrointestinal stromal tumors irrespective of KIT or PDGFRA mutation status. Am J Pathol 165 (1): 107-13, 2004. (откроется в новой вкладке)
Stenman G, Eriksson A, Claesson-Welsh L: Human PDGFA receptor gene maps to the same region on chromosome 4 as the KIT oncogene. Genes Chromosomes Cancer 1 (2): 155-8, 1989. (откроется в новой вкладке)
Heinrich MC, Corless CL, Demetri GD, et al.: Kinase mutations and imatinib response in patients with metastatic gastrointestinal stromal tumor. J Clin Oncol 21 (23): 4342-9, 2003. (откроется в новой вкладке)
O'Riain C, Corless CL, Heinrich MC, et al.: Gastrointestinal stromal tumors: insights from a new familial GIST kindred with unusual genetic and pathologic features. Am J Surg Pathol 29 (12): 1680-3, 2005. (откроется в новой вкладке)
Antonescu CR, Besmer P, Guo T, et al.: Acquired resistance to imatinib in gastrointestinal stromal tumor occurs through secondary gene mutation. Clin Cancer Res 11 (11): 4182-90, 2005. (откроется в новой вкладке)
Wasag B, Debiec-Rychter M, Pauwels P, et al.: Differential expression of KIT/PDGFRA mutant isoforms in epithelioid and mixed variants of gastrointestinal stromal tumors depends predominantly on the tumor site. Mod Pathol 17 (8): 889-94, 2004. (откроется в новой вкладке)
Debiec-Rychter M, Wasag B, Stul M, et al.: Gastrointestinal stromal tumours (GISTs) negative for KIT (CD117 antigen) immunoreactivity. J Pathol 202 (4): 430-8, 2004. (откроется в новой вкладке)
Medeiros F, Corless CL, Duensing A, et al.: KIT-negative gastrointestinal stromal tumors: proof of concept and therapeutic implications. Am J Surg Pathol 28 (7): 889-94, 2004. (откроется в новой вкладке)
Sakurai S, Hasegawa T, Sakuma Y, et al.: Myxoid epithelioid gastrointestinal stromal tumor (GIST) with mast cell infiltrations: a subtype of GIST with mutations of platelet-derived growth factor receptor alpha gene. Hum Pathol 35 (10): 1223-30, 2004. (откроется в новой вкладке)
Wardelmann E, Hrychyk A, Merkelbach-Bruse S, et al.: Association of platelet-derived growth factor receptor alpha mutations with gastric primary site and epithelioid or mixed cell morphology in gastrointestinal stromal tumors. J Mol Diagn 6 (3): 197-204, 2004. (откроется в новой вкладке)
Pauls K, Merkelbach-Bruse S, Thal D, et al.: PDGFRalpha- and c-kit-mutated gastrointestinal stromal tumours (GISTs) are characterized by distinctive histological and immunohistochemical features. Histopathology 46 (2): 166-75, 2005. (откроется в новой вкладке)
Corless CL, Schroeder A, Griffith D, et al.: PDGFRA mutations in gastrointestinal stromal tumors: frequency, spectrum and in vitro sensitivity to imatinib. J Clin Oncol 23 (23): 5357-64, 2005. (откроется в новой вкладке)
Boikos SA, Pappo AS, Killian JK, et al.: Molecular Subtypes of KIT/PDGFRA Wild-Type Gastrointestinal Stromal Tumors: A Report From the National Institutes of Health Gastrointestinal Stromal Tumor Clinic. JAMA Oncol 2 (7): 922-8, 2016. (откроется в новой вкладке)
Agaram NP, Wong GC, Guo T, et al.: Novel V600E BRAF mutations in imatinib-naive and imatinib-resistant gastrointestinal stromal tumors. Genes Chromosomes Cancer 47 (10): 853-9, 2008. (откроется в новой вкладке)
Hostein I, Faur N, Primois C, et al.: BRAF mutation status in gastrointestinal stromal tumors. Am J Clin Pathol 133 (1): 141-8, 2010. (откроется в новой вкладке)
Atiq MA, Davis JL, Hornick JL, et al.: Mesenchymal tumors of the gastrointestinal tract with NTRK rearrangements: a clinicopathological, immunophenotypic, and molecular study of eight cases, emphasizing their distinction from gastrointestinal stromal tumor (GIST). Mod Pathol 34 (1): 95-103, 2021. (откроется в новой вкладке)
Huguet KL, Rush RM, Tessier DJ, et al.: Laparoscopic gastric gastrointestinal stromal tumor resection: the mayo clinic experience. Arch Surg 143 (6): 587-90; discussion 591, 2008. (откроется в новой вкладке)
Otani Y, Furukawa T, Yoshida M, et al.: Operative indications for relatively small (2-5 cm) gastrointestinal stromal tumor of the stomach based on analysis of 60 operated cases. Surgery 139 (4): 484-92, 2006. (откроется в новой вкладке)
Novitsky YW, Kercher KW, Sing RF, et al.: Long-term outcomes of laparoscopic resection of gastric gastrointestinal stromal tumors. Ann Surg 243 (6): 738-45; discussion 745-7, 2006. (откроется в новой вкладке)
Chen K, Zhou YC, Mou YP, et al.: Systematic review and meta-analysis of safety and efficacy of laparoscopic resection for gastrointestinal stromal tumors of the stomach. Surg Endosc 29 (2): 355-67, 2015. (откроется в новой вкладке)
Kanda T, Masuzawa T, Hirai T, et al.: Surgery and imatinib therapy for liver oligometastasis of GIST: a study of Japanese Study Group on GIST. Jpn J Clin Oncol 47 (4): 369-372, 2017. (откроется в новой вкладке)
Pawlik TM, Vauthey JN, Abdalla EK, et al.: Results of a single-center experience with resection and ablation for sarcoma metastatic to the liver. Arch Surg 141 (6): 537-43; discussion 543-4, 2006. (откроется в новой вкладке)
Demetri GD, von Mehren M, Blanke CD, et al.: Efficacy and safety of imatinib mesylate in advanced gastrointestinal stromal tumors. N Engl J Med 347 (7): 472-80, 2002. [ PUBMED Abstract ] Cited in: Treatment Option Overview for GISTs (откроется в новой вкладке)
Edmonson JH, Marks RS, Buckner JC, et al.: Contrast of response to dacarbazine, mitomycin, doxorubicin, and cisplatin (DMAP) plus GM-CSF between patients with advanced malignant gastrointestinal stromal tumors and patients with other advanced leiomyosarcomas. Cancer Invest 20 (5-6): 605-12, 2002. (откроется в новой вкладке)
Plaat BE, Hollema H, Molenaar WM, et al.: Soft tissue leiomyosarcomas and malignant gastrointestinal stromal tumors: differences in clinical outcome and expression of multidrug resistance proteins. J Clin Oncol 18 (18): 3211-20, 2000. (откроется в новой вкладке)
Blanke CD, Demetri GD, von Mehren M, et al.: Long-term results from a randomized phase II trial of standard- versus higher-dose imatinib mesylate for patients with unresectable or metastatic gastrointestinal stromal tumors expressing KIT. J Clin Oncol 26 (4): 620-5, 2008. (откроется в новой вкладке)
Heinrich MC, Jones RL, von Mehren M, et al.: Avapritinib in advanced PDGFRA D842V-mutant gastrointestinal stromal tumour (NAVIGATOR): a multicentre, open-label, phase 1 trial. Lancet Oncol 21 (7): 935-946, 2020. [ PUBMED Abstract ] Cited in: Treatment Option Overview for GISTs (откроется в новой вкладке)
Dematteo RP, Ballman KV, Antonescu CR, et al.: Adjuvant imatinib mesylate after resection of localised, primary gastrointestinal stromal tumour: a randomised, double-blind, placebo-controlled trial. Lancet 373 (9669): 1097-104, 2009. [ PUBMED Abstract ] Cited in: Treatment of Resectable Primary GISTs (откроется в новой вкладке)
Joensuu H, Eriksson M, Sundby Hall K, et al.: One vs three years of adjuvant imatinib for operable gastrointestinal stromal tumor: a randomized trial. JAMA 307 (12): 1265-72, 2012. [ PUBMED Abstract ] Cited in: Treatment of Resectable Primary GISTs (откроется в новой вкладке)
Joensuu H, Wardelmann E, Sihto H, et al.: Effect of KIT and PDGFRA Mutations on Survival in Patients With Gastrointestinal Stromal Tumors Treated With Adjuvant Imatinib: An Exploratory Analysis of a Randomized Clinical Trial. JAMA Oncol 3 (5): 602-609, 2017. (откроется в новой вкладке)
DeMatteo RP, Ballman KV, Antonescu CR, et al.: Long-term results of adjuvant imatinib mesylate in localized, high-risk, primary gastrointestinal stromal tumor: ACOSOG Z9000 (Alliance) intergroup phase 2 trial. Ann Surg 258 (3): 422-9, 2013. (откроется в новой вкладке)
Casali PG, Le Cesne A, Velasco AP, et al.: Final analysis of the randomized trial on imatinib as an adjuvant in localized gastrointestinal stromal tumors (GIST) from the EORTC Soft Tissue and Bone Sarcoma Group (STBSG), the Australasian Gastro-Intestinal Trials Group (AGITG), UNICANCER, French Sarcoma Group (FSG), Italian Sarcoma Group (ISG), and Spanish Group for Research on Sarcomas (GEIS)☆. Ann Oncol 32 (4): 533-541, 2021. (откроется в новой вкладке)
Casali PG, Le Cesne A, Poveda Velasco A, et al.: Time to Definitive Failure to the First Tyrosine Kinase Inhibitor in Localized GI Stromal Tumors Treated With Imatinib As an Adjuvant: A European Organisation for Research and Treatment of Cancer Soft Tissue and Bone Sarcoma Group Intergroup Randomized Trial in Collaboration With the Australasian Gastro-Intestinal Trials Group, UNICANCER, French Sarcoma Group, Italian Sarcoma Group, and Spanish Group for Research on Sarcomas. J Clin Oncol 33 (36): 4276-83, 2015. [ PUBMED Abstract ] Cited in: Treatment of Resectable Primary GISTs (откроется в новой вкладке)
Joensuu H, Eriksson M, Sundby Hall K, et al.: Adjuvant Imatinib for High-Risk GI Stromal Tumor: Analysis of a Randomized Trial. J Clin Oncol 34 (3): 244-50, 2016. (откроется в новой вкладке)
Blanke CD, DeMatteo RP: Duration of Adjuvant Therapy for Patients With Gastrointestinal Stromal Tumors: Where Is Goldilocks When We Need Her? JAMA Oncol 2 (6): 721-2, 2016. (откроется в новой вкладке)
Lin JX, Chen QF, Zheng CH, et al.: Is 3-years duration of adjuvant imatinib mesylate treatment sufficient for patients with high-risk gastrointestinal stromal tumor? A study based on long-term follow-up. J Cancer Res Clin Oncol 143 (4): 727-734, 2017. [ PUBMED Abstract ] Cited in: Treatment of Resectable Primary GISTs (откроется в новой вкладке)
Gastrointestinal Stromal Tumor Meta-Analysis Group (MetaGIST): Comparison of two doses of imatinib for the treatment of unresectable or metastatic gastrointestinal stromal tumors: a meta-analysis of 1,640 patients. J Clin Oncol 28 (7): 1247-53, 2010. (откроется в новой вкладке)
Raut CP, Espat NJ, Maki RG, et al.: Efficacy and Tolerability of 5-Year Adjuvant Imatinib Treatment for Patients With Resected Intermediate- or High-Risk Primary Gastrointestinal Stromal Tumor: The PERSIST-5 Clinical Trial. JAMA Oncol 4 (12): e184060, 2018. [ PUBMED Abstract ] Cited in: Treatment of Resectable Primary GISTs (откроется в новой вкладке)
Bonvalot S, Eldweny H, Péchoux CL, et al.: Impact of surgery on advanced gastrointestinal stromal tumors (GIST) in the imatinib era. Ann Surg Oncol 13 (12): 1596-603, 2006. (откроется в новой вкладке)
Eisenberg BL, Harris J, Blanke CD, et al.: Phase II trial of neoadjuvant/adjuvant imatinib mesylate (IM) for advanced primary and metastatic/recurrent operable gastrointestinal stromal tumor (GIST): early results of RTOG 0132/ACRIN 6665. J Surg Oncol 99 (1): 42-7, 2009. [ PUBMED Abstract ] Cited in: Treatment of Unresectable Primary GISTs (откроется в новой вкладке)
Kurokawa Y, Yang HK, Cho H, et al.: Phase II study of neoadjuvant imatinib in large gastrointestinal stromal tumours of the stomach. Br J Cancer 117 (1): 25-32, 2017. [ PUBMED Abstract ] Cited in: Treatment of Unresectable Primary GISTs (откроется в новой вкладке)
Andtbacka RH, Ng CS, Scaife CL, et al.: Surgical resection of gastrointestinal stromal tumors after treatment with imatinib. Ann Surg Oncol 14 (1): 14-24, 2007. (откроется в новой вкладке)
Katz D, Segal A, Alberton Y, et al.: Neoadjuvant imatinib for unresectable gastrointestinal stromal tumor. Anticancer Drugs 15 (6): 599-602, 2004. (откроется в новой вкладке)
Raut CP, Posner M, Desai J, et al.: Surgical management of advanced gastrointestinal stromal tumors after treatment with targeted systemic therapy using kinase inhibitors. J Clin Oncol 24 (15): 2325-31, 2006. (откроется в новой вкладке)
Scaife CL, Hunt KK, Patel SR, et al.: Is there a role for surgery in patients with "unresectable" cKIT+ gastrointestinal stromal tumors treated with imatinib mesylate? Am J Surg 186 (6): 665-9, 2003. (откроется в новой вкладке)
Machlenkin S, Pinsk I, Tulchinsky H, et al.: The effect of neoadjuvant Imatinib therapy on outcome and survival after rectal gastrointestinal stromal tumour. Colorectal Dis 13 (10): 1110-5, 2011. (откроется в новой вкладке)
Rutkowski P, Gronchi A, Hohenberger P, et al.: Neoadjuvant imatinib in locally advanced gastrointestinal stromal tumors (GIST): the EORTC STBSG experience. Ann Surg Oncol 20 (9): 2937-43, 2013. (откроется в новой вкладке)
Cavnar MJ, Wang L, Balachandran VP, et al.: Rectal Gastrointestinal Stromal Tumor (GIST) in the Era of Imatinib: Organ Preservation and Improved Oncologic Outcome. Ann Surg Oncol 24 (13): 3972-3980, 2017. (откроется в новой вкладке)
Tielen R, Verhoef C, van Coevorden F, et al.: Surgical management of rectal gastrointestinal stromal tumors. J Surg Oncol 107 (4): 320-3, 2013. (откроется в новой вкладке)
Debiec-Rychter M, Sciot R, Le Cesne A, et al.: KIT mutations and dose selection for imatinib in patients with advanced gastrointestinal stromal tumours. Eur J Cancer 42 (8): 1093-103, 2006. (откроется в новой вкладке)
Casali PG, Blay JY, Abecassis N, et al.: Gastrointestinal stromal tumours: ESMO-EURACAN-GENTURIS Clinical Practice Guidelines for diagnosis, treatment and follow-up. Ann Oncol 33 (1): 20-33, 2022. (откроется в новой вкладке)
Van den Abbeele AD, Gatsonis C, de Vries DJ, et al.: ACRIN 6665/RTOG 0132 phase II trial of neoadjuvant imatinib mesylate for operable malignant gastrointestinal stromal tumor: monitoring with 18F-FDG PET and correlation with genotype and GLUT4 expression. J Nucl Med 53 (4): 567-74, 2012. (откроется в новой вкладке)
van Oosterom AT, Judson I, Verweij J, et al.: Safety and efficacy of imatinib (STI571) in metastatic gastrointestinal stromal tumours: a phase I study. Lancet 358 (9291): 1421-3, 2001. (откроется в новой вкладке)
Choi H, Charnsangavej C, Faria SC, et al.: Correlation of computed tomography and positron emission tomography in patients with metastatic gastrointestinal stromal tumor treated at a single institution with imatinib mesylate: proposal of new computed tomography response criteria. J Clin Oncol 25 (13): 1753-9, 2007. (откроется в новой вкладке)
Blay JY, Le Cesne A, Ray-Coquard I, et al.: Prospective multicentric randomized phase III study of imatinib in patients with advanced gastrointestinal stromal tumors comparing interruption versus continuation of treatment beyond 1 year: the French Sarcoma Group. J Clin Oncol 25 (9): 1107-13, 2007. (откроется в новой вкладке)
Casali PG, Zalcberg J, Le Cesne A, et al.: Ten-Year Progression-Free and Overall Survival in Patients With Unresectable or Metastatic GI Stromal Tumors: Long-Term Analysis of the European Organisation for Research and Treatment of Cancer, Italian Sarcoma Group, and Australasian Gastrointestinal Trials Group Intergroup Phase III Randomized Trial on Imatinib at Two Dose Levels. J Clin Oncol 35 (15): 1713-1720, 2017. (откроется в новой вкладке)
Verweij J, Casali PG, Zalcberg J, et al.: Progression-free survival in gastrointestinal stromal tumours with high-dose imatinib: randomised trial. Lancet 364 (9440): 1127-34, 2004. (откроется в новой вкладке)
Van Glabbeke M, Verweij J, Casali PG, et al.: Initial and late resistance to imatinib in advanced gastrointestinal stromal tumors are predicted by different prognostic factors: a European Organisation for Research and Treatment of Cancer-Italian Sarcoma Group-Australasian Gastrointestinal Trials Group study. J Clin Oncol 23 (24): 5795-804, 2005. (откроется в новой вкладке)
Rutkowski P, Nowecki ZI, Debiec-Rychter M, et al.: Predictive factors for long-term effects of imatinib therapy in patients with inoperable/metastatic CD117(+) gastrointestinal stromal tumors (GISTs). J Cancer Res Clin Oncol 133 (9): 589-97, 2007. (откроется в новой вкладке)
Blanke CD, Rankin C, Demetri GD, et al.: Phase III randomized, intergroup trial assessing imatinib mesylate at two dose levels in patients with unresectable or metastatic gastrointestinal stromal tumors expressing the kit receptor tyrosine kinase: S0033. J Clin Oncol 26 (4): 626-32, 2008. [ PUBMED Abstract ] Cited in: Treatment of Metastatic or Recurrent GISTs (откроется в новой вкладке)
Zalcberg JR, Verweij J, Casali PG, et al.: Outcome of patients with advanced gastro-intestinal stromal tumours crossing over to a daily imatinib dose of 800 mg after progression on 400 mg. Eur J Cancer 41 (12): 1751-7, 2005. (откроется в новой вкладке)
Debiec-Rychter M, Dumez H, Judson I, et al.: Use of c-KIT/PDGFRA mutational analysis to predict the clinical response to imatinib in patients with advanced gastrointestinal stromal tumours entered on phase I and II studies of the EORTC Soft Tissue and Bone Sarcoma Group. Eur J Cancer 40 (5): 689-95, 2004. (откроется в новой вкладке)
Heinrich MC, Owzar K, Corless CL, et al.: Correlation of kinase genotype and clinical outcome in the North American Intergroup Phase III Trial of imatinib mesylate for treatment of advanced gastrointestinal stromal tumor: CALGB 150105 Study by Cancer and Leukemia Group B and Southwest Oncology Group. J Clin Oncol 26 (33): 5360-7, 2008. (откроется в новой вкладке)
Patrikidou A, Domont J, Chabaud S, et al.: Long-term outcome of molecular subgroups of GIST patients treated with standard-dose imatinib in the BFR14 trial of the French Sarcoma Group. Eur J Cancer 52: 173-80, 2016. (откроется в новой вкладке)
Rutkowski P, Nowecki Z, Nyckowski P, et al.: Surgical treatment of patients with initially inoperable and/or metastatic gastrointestinal stromal tumors (GIST) during therapy with imatinib mesylate. J Surg Oncol 93 (4): 304-11, 2006. (откроется в новой вкладке)
Dagher R, Cohen M, Williams G, et al.: Approval summary: imatinib mesylate in the treatment of metastatic and/or unresectable malignant gastrointestinal stromal tumors. Clin Cancer Res 8 (10): 3034-8, 2002. (откроется в новой вкладке)
Verweij J, van Oosterom A, Blay JY, et al.: Imatinib mesylate (STI-571 Glivec, Gleevec) is an active agent for gastrointestinal stromal tumours, but does not yield responses in other soft-tissue sarcomas that are unselected for a molecular target. Results from an EORTC Soft Tissue and Bone Sarcoma Group phase II study. Eur J Cancer 39 (14): 2006-11, 2003. (откроется в новой вкладке)
Kerkelä R, Grazette L, Yacobi R, et al.: Cardiotoxicity of the cancer therapeutic agent imatinib mesylate. Nat Med 12 (8): 908-16, 2006. (откроется в новой вкладке)
Kang YK, George S, Jones RL, et al.: Avapritinib Versus Regorafenib in Locally Advanced Unresectable or Metastatic GI Stromal Tumor: A Randomized, Open-Label Phase III Study. J Clin Oncol 39 (28): 3128-3139, 2021. [ PUBMED Abstract ] Cited in: Treatment of Metastatic or Recurrent GISTs (откроется в новой вкладке)
Joseph CP, Abaricia SN, Angelis MA, et al.: Optimal Avapritinib Treatment Strategies for Patients with Metastatic or Unresectable Gastrointestinal Stromal Tumors. Oncologist 26 (4): e622-e631, 2021. (откроется в новой вкладке)
Demetri GD, van Oosterom AT, Garrett CR, et al.: Efficacy and safety of sunitinib in patients with advanced gastrointestinal stromal tumour after failure of imatinib: a randomised controlled trial. Lancet 368 (9544): 1329-38, 2006. [ PUBMED Abstract ] Cited in: Treatment of Metastatic or Recurrent GISTs (откроется в новой вкладке)
Prior JO, Montemurro M, Orcurto MV, et al.: Early prediction of response to sunitinib after imatinib failure by 18F-fluorodeoxyglucose positron emission tomography in patients with gastrointestinal stromal tumor. J Clin Oncol 27 (3): 439-45, 2009. (откроется в новой вкладке)
Demetri GD, Heinrich MC, Fletcher JA, et al.: Molecular target modulation, imaging, and clinical evaluation of gastrointestinal stromal tumor patients treated with sunitinib malate after imatinib failure. Clin Cancer Res 15 (18): 5902-9, 2009. (откроется в новой вкладке)
Heinrich MC, Maki RG, Corless CL, et al.: Primary and secondary kinase genotypes correlate with the biological and clinical activity of sunitinib in imatinib-resistant gastrointestinal stromal tumor. J Clin Oncol 26 (33): 5352-9, 2008. (откроется в новой вкладке)
Rutkowski P, Bylina E, Klimczak A, et al.: The outcome and predictive factors of sunitinib therapy in advanced gastrointestinal stromal tumors (GIST) after imatinib failure - one institution study. BMC Cancer 12: 107, 2012. (откроется в новой вкладке)
Demetri GD, Garrett CR, Schöffski P, et al.: Complete longitudinal analyses of the randomized, placebo-controlled, phase III trial of sunitinib in patients with gastrointestinal stromal tumor following imatinib failure. Clin Cancer Res 18 (11): 3170-9, 2012. (откроется в новой вкладке)
Reichardt P, Kang YK, Rutkowski P, et al.: Clinical outcomes of patients with advanced gastrointestinal stromal tumors: safety and efficacy in a worldwide treatment-use trial of sunitinib. Cancer 121 (9): 1405-13, 2015. (откроется в новой вкладке)
Wolter P, Stefan C, Decallonne B, et al.: The clinical implications of sunitinib-induced hypothyroidism: a prospective evaluation. Br J Cancer 99 (3): 448-54, 2008. (откроется в новой вкладке)
Chu TF, Rupnick MA, Kerkela R, et al.: Cardiotoxicity associated with tyrosine kinase inhibitor sunitinib. Lancet 370 (9604): 2011-9, 2007. (откроется в новой вкладке)
George S, Wang Q, Heinrich MC, et al.: Efficacy and safety of regorafenib in patients with metastatic and/or unresectable GI stromal tumor after failure of imatinib and sunitinib: a multicenter phase II trial. J Clin Oncol 30 (19): 2401-7, 2012. (откроется в новой вкладке)
Demetri GD, Reichardt P, Kang YK, et al.: Efficacy and safety of regorafenib for advanced gastrointestinal stromal tumours after failure of imatinib and sunitinib (GRID): an international, multicentre, randomised, placebo-controlled, phase 3 trial. Lancet 381 (9863): 295-302, 2013. [ PUBMED Abstract ] Cited in: Treatment of Metastatic or Recurrent GISTs (откроется в новой вкладке)
Blay JY, Serrano C, Heinrich MC, et al.: Ripretinib in patients with advanced gastrointestinal stromal tumours (INVICTUS): a double-blind, randomised, placebo-controlled, phase 3 trial. Lancet Oncol 21 (7): 923-934, 2020. [ PUBMED Abstract ] Cited in: Treatment of Metastatic or Recurrent GISTs (откроется в новой вкладке)
Janku F, Abdul Razak AR, Chi P, et al.: Switch Control Inhibition of KIT and PDGFRA in Patients With Advanced Gastrointestinal Stromal Tumor: A Phase I Study of Ripretinib. J Clin Oncol 38 (28): 3294-3303, 2020. (откроется в новой вкладке)
Bauer S, Jones RL, Blay JY, et al.: Ripretinib Versus Sunitinib in Patients With Advanced Gastrointestinal Stromal Tumor After Treatment With Imatinib (INTRIGUE): A Randomized, Open-Label, Phase III Trial. J Clin Oncol 40 (34): 3918-3928, 2022. [ PUBMED Abstract ] Cited in: Treatment of Metastatic or Recurrent GISTs (откроется в новой вкладке)
Reichardt P, Blay JY, Gelderblom H, et al.: Phase III study of nilotinib versus best supportive care with or without a TKI in patients with gastrointestinal stromal tumors resistant to or intolerant of imatinib and sunitinib. Ann Oncol 23 (7): 1680-7, 2012. (откроется в новой вкладке)
Mir O, Cropet C, Toulmonde M, et al.: Pazopanib plus best supportive care versus best supportive care alone in advanced gastrointestinal stromal tumours resistant to imatinib and sunitinib (PAZOGIST): a randomised, multicentre, open-label phase 2 trial. Lancet Oncol 17 (5): 632-41, 2016. (откроется в новой вкладке)
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