全身放疗(Total body irradiation,TBI)是对患者全身进行照射的一种特殊放疗技术,是血液系统疾病行造血干细胞移植前的一种预处理手段,其主要作用包括杀灭残存肿瘤细胞、抑制机体免疫应答、为造血干细胞移植排空骨髓空间等。目前,全身...全身放疗(Total body irradiation,TBI)是对患者全身进行照射的一种特殊放疗技术,是血液系统疾病行造血干细胞移植前的一种预处理手段,其主要作用包括杀灭残存肿瘤细胞、抑制机体免疫应答、为造血干细胞移植排空骨髓空间等。目前,全身放疗实施的主要实现方式包括长距离固定野照射、容积旋转调强和分段照射。在本文中,我们结合自身临床实践经验,综述了上述这些实现方式的技术特点和相关研究进展。展开更多
The purpose of this study was to evaluate the effect of cytokines on the efficiency of gene transfer into murine hematopoietic progenitors and human K562 cells mediated by retrovirus vectors (RV) containing bacterial ...The purpose of this study was to evaluate the effect of cytokines on the efficiency of gene transfer into murine hematopoietic progenitors and human K562 cells mediated by retrovirus vectors (RV) containing bacterial neomycin-resistant (neoR) gene. The bone marrow cells were preincubated with cytokines and then transfected with supernatant containing retrovirus vectors, each for 24 h. The transfected cells were plated in the semisolid culture with or without G418. The efficiency of gene transfer into hematopoietic progenitors was estimated by biological assay and PCR analysis. The most efficient combination of the cytokines, IL-1α/IL-3/SCF,increased the efficiency of gene transfer into murine CFUGM from 6.04±1. 34% to 43. 60±5. 94%. SCF alone most efficiently facilitated the gene transfer into K562 cells from 19.04±1. 58% to 54.46±2. 13%. The results suggest that the combination of IL-1α/IL-3/SCF can increase efficiency of gene transfer into hematopoietic stem cells (HSC) and progenitors, and in the treatment of acute myeloid leukemia (AML) using autologous bone marrow transplantion (ABMT),SCF can facilitate gene transfer into hematopoietic cells in gene-marking clinical studies.展开更多
文摘全身放疗(Total body irradiation,TBI)是对患者全身进行照射的一种特殊放疗技术,是血液系统疾病行造血干细胞移植前的一种预处理手段,其主要作用包括杀灭残存肿瘤细胞、抑制机体免疫应答、为造血干细胞移植排空骨髓空间等。目前,全身放疗实施的主要实现方式包括长距离固定野照射、容积旋转调强和分段照射。在本文中,我们结合自身临床实践经验,综述了上述这些实现方式的技术特点和相关研究进展。
文摘The purpose of this study was to evaluate the effect of cytokines on the efficiency of gene transfer into murine hematopoietic progenitors and human K562 cells mediated by retrovirus vectors (RV) containing bacterial neomycin-resistant (neoR) gene. The bone marrow cells were preincubated with cytokines and then transfected with supernatant containing retrovirus vectors, each for 24 h. The transfected cells were plated in the semisolid culture with or without G418. The efficiency of gene transfer into hematopoietic progenitors was estimated by biological assay and PCR analysis. The most efficient combination of the cytokines, IL-1α/IL-3/SCF,increased the efficiency of gene transfer into murine CFUGM from 6.04±1. 34% to 43. 60±5. 94%. SCF alone most efficiently facilitated the gene transfer into K562 cells from 19.04±1. 58% to 54.46±2. 13%. The results suggest that the combination of IL-1α/IL-3/SCF can increase efficiency of gene transfer into hematopoietic stem cells (HSC) and progenitors, and in the treatment of acute myeloid leukemia (AML) using autologous bone marrow transplantion (ABMT),SCF can facilitate gene transfer into hematopoietic cells in gene-marking clinical studies.