多原发恶性肿瘤的实验建模

E. Frantsiyants, I. Kaplieva, V. A. Bondovkina, E. Surikova, I. Neskubina, L. Trepitaki, Y. Pogorelova, N. Cheryarina, E. Sheiko, I. Kotieva, K. Shumarin
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Experimental groups of mice: with melanoma B16/F10 (B16/F10), males (control 1) and females (control 3) by n = 7; control 2 – with sarcoma 45 (C45), males n = 7; control 4 – with Guerin carcinoma (KG), females n = 7; basic: MMPT model No. 1 – B16/F10 and S45, males n = 7, and MMPT model No. 2 – B16/F10 and GC, females n = 7. 0.5 ml suspension of murine B16/F10 melanoma tumor cells diluted in the saline proportions 1:20 was injected under the skin of the left dorsal side to all animals with MMPT model, as well as 0.5 ml of a suspension containing 0.50 × 106 S45 or GC tumor cells in the saline under the skin on the right dorsum. Control groups received the same amount of tumors as the MMPT model.Results. Tumors in male mice in MMPT model No. 1 appeared simultaneously and significantly earlier than in controls: В16/ F10 melanoma by 3 times, S45 by 2 times. 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引用次数: 3

摘要

研究目的:实验条件下原发性多发性恶性肿瘤(MMPT)模型的建立与研究。材料和方法。本研究采用雄性和雌性BALB/c裸鼠(n = 42)。实验组:黑色素瘤小鼠B16/F10 (B16/F10),雄性(对照1),雌性(对照3),每组n = 7;对照组2 -伴有肉瘤45 (C45),男性n = 7;对照组4 -合并Guerin癌(KG),女性7例;基本:MMPT模型1 - B16/F10和S45,雄性n = 7; MMPT模型2 - B16/F10和GC,雌性n = 7。所有MMPT模型动物左背皮下注射按1:20盐水稀释的小鼠B16/F10黑色素瘤肿瘤细胞悬液0.5 ml,右背皮下注射含0.50 × 106 S45或GC肿瘤细胞的悬液0.5 ml。对照组给予与MMPT模型相同数量的肿瘤。MMPT 1号模型雄性小鼠肿瘤同时出现且明显早于对照组:В16/ F10黑色素瘤出现3倍,S45黑色素瘤出现2倍。MMPT模型1的肿瘤大小比相应的对照组大:В16/F10黑色素瘤接种面积大8.5倍,S45接种面积大2.2倍。黑色素瘤在S45囊下转移。MMPT 2号模型GC移植区肿瘤生长速度比В16/F10黑色素瘤注射区快5倍;两种肿瘤的出现时间平均比对照组3和对照组4早3倍。MMPT模型2的肿瘤体积比相应的对照组大:В16/F10黑色素瘤接种面积大7.5倍,GC接种面积大2.2倍。然而,在B16/F10黑色素瘤移植区,由于原发胃癌的转移,几乎整个肿瘤淋巴结的体积都被胃癌组织所代表。黑素瘤在皮下接种处仍是一个直径5-6毫米的小黑点。1号和2号模型小鼠的平均存活率比相应对照组低1.5-2倍(p < 0.05)。小鼠B16/F10黑色素瘤和大鼠肉瘤45序次皮下移植BALB/c裸鼠后,各肿瘤的恶性潜能增加:发病时间缩短,肿瘤生长速度加快,降低动物存活率。小鼠B16/F10黑色素瘤和Guerin大鼠癌序次皮下移植雌性BALB/c裸鼠可抑制B16/F10黑色素瘤的肿瘤生长,增加大鼠GC的恶性潜能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of multiple primary malignant tumors in experiment
Purpose of the study. Creation and study of models of primary multiple malignant tumors (MMPT model) under experimental conditions.Materials and methods. The study was carried out involving male and female BALB/c Nude mice (n = 42). Experimental groups of mice: with melanoma B16/F10 (B16/F10), males (control 1) and females (control 3) by n = 7; control 2 – with sarcoma 45 (C45), males n = 7; control 4 – with Guerin carcinoma (KG), females n = 7; basic: MMPT model No. 1 – B16/F10 and S45, males n = 7, and MMPT model No. 2 – B16/F10 and GC, females n = 7. 0.5 ml suspension of murine B16/F10 melanoma tumor cells diluted in the saline proportions 1:20 was injected under the skin of the left dorsal side to all animals with MMPT model, as well as 0.5 ml of a suspension containing 0.50 × 106 S45 or GC tumor cells in the saline under the skin on the right dorsum. Control groups received the same amount of tumors as the MMPT model.Results. Tumors in male mice in MMPT model No. 1 appeared simultaneously and significantly earlier than in controls: В16/ F10 melanoma by 3 times, S45 by 2 times. Tumor zises in MMPT model No. 1 were larger than in the corresponding controls: by 8.5 times at the area of В16/F10 melanoma inoculation and by 2.2 times at the area of S45 inoculation. Melanoma metastasized under the S45 capsule. Tumor at the area of GC transplantation in MMPT model No. 2 grew 5 times faster than at the area of В16/F10 melanoma injection; both tumors appeared on average 3 times earlier than in control groups 3 and 4. Tumor volumes in MMPT model No. 2 were larger than in the corresponding controls: by 7.5 times at the area of В16/F10 melanoma inoculation and by 2.2 times at the area of GC inoculation. However, almost the entire volume of the tumor node in the area of B16/F10 melanoma transplantation was represented by GC tumor tissue due to metastasis from the primary GC tumor. Melanoma remained as a small black spot with a diameter of 5–6 mm at the area of its inoculation under the skin. The average survival of mice in MMPT models No. 1 and No. 2 was 1.5–2 times (p < 0.05) lower than in the corresponding controls.Conclusions. Sequential subcutaneous transplantation of mouse B16/F10 melanoma and rat sarcoma 45 to BALB/c Nude mice increased the malignant potential of each tumor: the time of their onset was shorter, and the growth rate of tumors increased which decreased the survival of animals. Sequential subcutaneous transplantation of mouse B16/F10 melanoma and Guerin's rat carcinoma to female BALB/c Nude mice suppressed tumor growth of B16/F10 melanoma and increased the malignant potential of rat GC.
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