首页> 外国专利> METHOD FOR QUANTITATIVE DETERMINATION OF MUTATIONS F317L AND F359V/C OF THE KINASE DOMAIN BCR-ABL IN PATIENTS WITH CHRONIC MYELOID LEUKEMIA RESISTANT TO THERAPY WITH TYROSINE KINASE INHIBITORS

METHOD FOR QUANTITATIVE DETERMINATION OF MUTATIONS F317L AND F359V/C OF THE KINASE DOMAIN BCR-ABL IN PATIENTS WITH CHRONIC MYELOID LEUKEMIA RESISTANT TO THERAPY WITH TYROSINE KINASE INHIBITORS

机译:酪氨酸激酶抑制剂治疗的慢性髓样白血病患者定量测定激酶区BCR-ABL突变F317L和F359V / C的方法

摘要

FIELD: medicine.;SUBSTANCE: invention refers to medicine, particularly to medical genetics and oncohematology, and aims at quantitative determination of mutations F317L and F359V/C of the BCR-ABL kinase domain in patients suffering chronic myeloid leukemia resistant to tyrosine kinase inhibitors. One stage of PCR is used to determine expression of BCR-ABLF317L and BCR-ABLF359V/C. Primers used are a system for determining F317L consisting of a forward primer SEQ ID NO: 1 and reverse specific primers for mutation SEQ ID NO: 2, SEQ ID NO: 3, SEQ ID NO: 4 and specific probe SEQ ID NO: 5. Determining expression of F359V/C, BCR-ABL and ABL, using systems consisting of primers and probes. Number of copies of BCR-ABLF317L and BCR-ABLF359V/C in samples are determined by calibration curve, which is constructed according to standards with known concentration. BCR-ABLF317L, BCR-ABLF359V/C and BCR-ABL expression is calculated relative to control ABL gene by formulas.;EFFECT: invention provides an effective method of determining mutations F317L and F359V/C of the BCR-ABL kinase domain, having higher sensitivity and specificity.;1 cl, 1 dwg
机译:技术领域本发明涉及医学,尤其是医学遗传学和肿瘤血液学,旨在定量测定对酪氨酸激酶抑制剂有抗性的慢性髓细胞性白血病患者中BCR-ABL激酶结构域的突变F317L和F359V / C。 PCR的一级用于确定BCR-ABL F317L 和BCR-ABL F359V / C 的表达。使用的引物是用于确定F317L的系统,该系统由正向引物SEQ ID NO:1和突变的反向特异性引物SEQ ID NO:2,SEQ ID NO:3,SEQ ID NO:4和特异性探针SEQ ID NO:5组成。使用由引物和探针组成的系统确定F359V / C,BCR-ABL和ABL的表达。通过校正曲线确定样品中BCR-ABL F317L 和BCR-ABL F359V / C 的拷贝数,该校正曲线是根据已知浓度的标准构建的。通过公式计算出相对于对照ABL基因的BCR-ABL F317L ,BCR-ABL F359V / C 和BCR-ABL的表达。 BCR-ABL激酶结构域的F317L和F359V / C突变,具有更高的敏感性和特异性。1cl,1 dwg

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