PO.IM02.07 · 免疫学

B-CDG小鼠:一种适用于放射治疗和放射性药物评估的新型重度免疫缺陷模型

B-CDG mice: A novel severe immunodeficient model suitable for radiotherapeutic and radiopharmaceutical evaluation

海报缩略图:B-CDG小鼠:一种适用于放射治疗和放射性药物评估的新型重度免疫缺陷模型
编号 6976 展板 4 时间 4/22 09:00–12:00 区域 Section 8 主讲 Yuan Tian, PhD
分会场 Novel Models of Immunotherapy Response
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作者与单位 Authors & Affiliations

Qiurong Wang, Yanhui Nie, Ruili Lv, Chengzhang Shang, Meiqi Zhang, Qingqing Xu

Biocytogen, Waltham, MA

摘要 Abstract

中文摘要
背景: 放射性药物已成为一种重要的治疗策略,但其在临床前模型中的评估受到常用免疫缺陷小鼠放射敏感性的限制。B-NDG小鼠(NOD.CB17-Prkdc scid Il2rg tm1Bcgen/Bcgen)通过Prkdc突变生成,缺乏成熟T和B细胞,但由于DNA修复受损而对DNA损伤高度敏感,在照射下导致体重快速下降和死亡。 方法: 为克服这些局限,Biocytogen在C57BL/6背景上通过敲除Rag2和Il2rg开发了B-CDG小鼠。该品系缺乏成熟T、B和NK细胞,但保留正常的DNA修复能力。在1、2.5、4和7 Gy剂量的X射线照射下,对B-CDG小鼠和B-NDG小鼠进行了比较分析。评估了生存、体重、血液学和组织病理学。此外,测试了多种人肿瘤细胞系——LNCap Clone FGC、22Rv1、BT-474、AsPC-1和SHP-77——的异种移植成瘤。 结果: B-CDG小鼠表现出对辐射的卓越耐受性。在1 Gy和2.5 Gy时,所有B-CDG小鼠均存活30天,而所有暴露于≥2.5 Gy的B-NDG小鼠在2天内死亡。在4 Gy时,B-CDG小鼠观察到部分生存,体重在初始下降后恢复。血液学显示白细胞、红细胞和血小板呈剂量依赖性下降,随后在30天恢复。组织学分析显示B-CDG小鼠肝脏和脾脏中有髓外造血,细胞损伤较轻,与B-NDG小鼠相比有代偿性骨髓再生。此外,所有受试肿瘤细胞系均在B-CDG小鼠中成功建立异种移植。 结论: B-CDG小鼠是一种新型重度免疫缺陷品系,保持DNA修复能力和辐射耐受性。这些特性使B-CDG小鼠成为评估放射性药物和其他DNA损伤剂疗效和毒性的理想平台。
查看英文原文 English abstract
Background: Radiopharmaceuticals have emerged as an important therapeutic strategy, but their evaluation in preclinical models is limited by the radiosensitivity of commonly used immunodeficient mice. The B-NDG mice (NOD.CB17- Prkdc scid Il2rg tm1Bcgen /Bcgen), generated via Prkdc mutation, lack mature T and B cells but are hypersensitive to DNA damage due to impaired DNA repair, leading to rapid body weight loss and mortality under irradiation. Methods: To overcome these limitations, Biocytogen developed the B-CDG mice on a C57BL/6 background by knocking out Rag2 and Il2rg . This strain lacks mature T, B, and NK cells but retains normal DNA repair capability. Comparative analyses of B-CDG mice and B-NDG mice were performed under X-ray irradiation at doses of 1, 2.5, 4, and 7 Gy. Survival, body weight, hematology, and histopathology were assessed. Additionally, multiple human tumor cell lines-LNCap Clone FGC, 22Rv1, BT-474, AsPC-1, and SHP-77-were tested for xenograft formation. Results: B-CDG mice demonstrated superior tolerance to radiation. At 1 Gy and 2.5 Gy, all B-CDG mice survived 30 days, while all B-NDG mice exposed to ≥2.5 Gy died within 2 days. At 4 Gy, partial survival was observed in B-CDG mice, with recovery of body weight after initial decline. Hematology revealed dose-dependent decreases in leukocytes, erythrocytes, and platelets, with subsequent recovery at 30 days. Histological analysis showed extramedullary hematopoiesis in the liver and spleen of B-CDG mice, milder cellular injury, and compensatory marrow regeneration compared to B-NDG mice. Moreover, all tested tumor cell lines successfully established xenografts in B-CDG mice. Conclusion: B-CDG mice are a novel severe immunodeficient strain that maintains DNA repair competence and radiation tolerance. These characteristics make B-CDG mice an ideal platform for evaluating the efficacy and toxicity of radiopharmaceuticals and other DNA-damaging agents.
利益披露 Disclosure
Q. Wang, None.. Y. Nie, None.. R. Lv, None.. C. Shang, None.. M. Zhang, None.. Q. Xu, None.

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