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通过将全身热疗与全身照射及环磷酰胺联合应用增强小鼠骨髓消融

Enhancement of murine bone marrow ablation by combining whole body hyperthermia with total body irradiation and cyclophosphamide.

作者信息

Mivechi N F, Ogilvie P D

机构信息

Department of Radiation Research, City of Hope National Medical Center, Duarte, CA 91010.

出版信息

Int J Radiat Oncol Biol Phys. 1989 Jul;17(1):117-23. doi: 10.1016/0360-3016(89)90378-7.

Abstract

Bone marrow ablation using combined whole body hyperthermia (WBH), total body irradiation (TBI), and cyclophosphamide (Cy) was investigated in C3H f/Sed mice to demonstrate cytotoxic synergism between the three modalities. TBI was given on day 0. WBH treatment was for 1 hr at 41.8 degrees C, given in daily sessions for 1, 2 or 3 modalities. TBI was given on day 0. WBH treatment was for 1 hr at 41.8 degrees C, given in daily sessions for 1, 2 or 3 consecutive days following TBI. Total cyclophosphamide doses were 160 and 240 mg/kg given in 2 daily injections on days 1 and 2 following TBI. Polymorphonuclear leukocyte and lymphocyte numbers were determined by differential cell counts. The total peripheral blood cell counts were also determined. WBH alone, given in daily sessions for 3 days, did not reduce the total peripheral blood cell counts. However, when WBH was added to TBI (6.3 Gy) peripheral blood cellularity was reduced on day 2, but no significant heat/radiosensitization was evident after day 2. WBH (3 daily sessions) significantly reduced the peripheral blood cellularity and resulted in bone marrow ablation when it was combined with TBI and Cy. CY (160-240 mg/kg) combined with TBI (5.4 Gy) resulted in bone marrow ablation and subsequent death in 14-22% of mice treated; 60-100% of mice died from bone marrow ablation when WBH was added to TBI (5.4 Gy) and Cy (160-240 mg/kg). Femoral and vertebral tissue sections showed total loss of progenitor cells when WBH, TBI (5.4 Gy), and Cy (240 mg/kg) were combined whereas lessor treatment was associated with histologically verified reconstitution of progenitor cells inside the marrow cavities. These studies indicate that bone marrow ablation can be achieved when using WBH in combination with lower doses of TBI and Cy.

摘要

在C3H f/Sed小鼠中研究了联合全身热疗(WBH)、全身照射(TBI)和环磷酰胺(Cy)进行骨髓消融,以证明这三种方式之间的细胞毒性协同作用。TBI于第0天给予。WBH在41.8摄氏度下治疗1小时,每天进行1次、2次或3次治疗。TBI于第0天给予。WBH在41.8摄氏度下治疗1小时,在TBI后的连续1天、2天或3天每天进行治疗。环磷酰胺总剂量为160和240mg/kg,在TBI后的第1天和第2天分两次每日注射。通过细胞分类计数确定多形核白细胞和淋巴细胞数量。还测定了外周血细胞总数。单独连续3天给予WBH,并未降低外周血细胞总数。然而,当将WBH添加到TBI(6.3Gy)中时,第2天外周血细胞数量减少,但第2天后未观察到明显的热/放射增敏作用。WBH(连续3天每天治疗)显著降低外周血细胞数量,当与TBI和Cy联合使用时导致骨髓消融。CY(160 - 240mg/kg)与TBI(5.4Gy)联合使用导致14 - 22%接受治疗的小鼠发生骨髓消融并随后死亡;当将WBH添加到TBI(5.4Gy)和Cy(160 - 240mg/kg)中时,60 - 100%的小鼠死于骨髓消融。股骨和椎骨组织切片显示,当WBH、TBI(5.4Gy)和Cy(240mg/kg)联合使用时,祖细胞完全丧失,而较少的治疗与骨髓腔内祖细胞的组织学证实的重建有关。这些研究表明,联合使用WBH与较低剂量的TBI和Cy可以实现骨髓消融。

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