工程化益生菌用于肿瘤靶向联合化学免疫治疗
Engineered probiotics for tumor-targeted combination chemoimmunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Spontaneous xenogeneic GvHD in Wilms' tumor Patient-Derived xenograft models and potential solutions.
Spontaneous xenogeneic GvHD in Wilms' tumor Patient-Derived xenograft models and potential solutions.
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重度免疫缺陷的 NOD.Cg-Prkdc scid Il2rg tm1Sug (NOG) 小鼠是生成人类癌症模型的理想动物受体之一。移植具有丰富TIL(肿瘤浸润淋巴细胞)的人类实体瘤后,随着 TIL 在动物体内植入并扩增,可诱导异种移植物抗宿主病 (xGvHD)。Wilms 瘤 (WT) 尚未被认为是淋巴细胞优势型肿瘤。
然而,连续 3 代携带来自单一供者异种移植的 WT 患者来源异种移植物 (PDX) 的 NOG 小鼠,在任何治疗干预前于移植后表现出不同程度的炎症症状。在初代中,观察到皮炎、指趾自体截断、体重减轻、淋巴结病、肝炎和间质性肺炎。尽管给予抗生素治疗,未观察到反应,因此动物被提前安乐死(移植后第 47 天)。实验室和组织病理学评估显示,异种移植物和原发肿瘤中存在淋巴样浸润,抗人 CD3 和 CD8 抗体免疫染色阳性,而未发现微生物感染或淋巴增殖性疾病。下一代存活更久(91 天)的小鼠出现了硬化性皮肤改变和更严重的肺炎。
最后一代的皮肤症状较轻。最后 2 代的异种移植物也含有 TIL,且缺乏淋巴增殖性转化。在无微生物感染和移植后淋巴增殖性疾病的情况下出现全身性免疫炎症综合征,提示为 xGvHD。尽管在重度免疫缺陷小鼠中,由淋巴结优势肿瘤异种移植引发xGvHD的报道很少,但本报告首次记录了在连续传代的WT PDX荷瘤模型中出现的连续性xGvHD,并讨论了预防这种不良并发症的潜在解决方案。
Severely immunocompromised NOD. Cg-Prkdc scid Il2rg tm1Sug (NOG) mice are among the ideal animal recipients for generation of human cancer models. Transplantation of human solid tumors having abundant tumor-infiltrating lymphocytes (TILs) can induce xenogeneic graft-versus-host disease (xGvHD) following engraftment and expansion of the TILs inside the animal body. Wilms' tumor (WT) has not been recognized as a lymphocyte-predominant tumor.
However, 3 consecutive generations of NOG mice bearing WT patient-derived xenografts (PDX) xenotransplanted from a single donor showed different degrees of inflammatory symptoms after transplantation before any therapeutic intervention. In the initial generation, dermatitis, auto-amputation of digits, weight loss, lymphadenopathy, hepatitis, and interstitial pneumonitis were observed. Despite antibiotic treatment, no response was noticed, and thus the animals were prematurely euthanized (day 47 posttransplantation). Laboratory and histopathologic evaluations revealed lymphoid infiltrates positively immunostained with anti-human CD3 and CD8 antibodies in the xenografts and primary tumor, whereas no microbial infection or lymphoproliferative disorder was found.
Mice of the next generation that lived longer (91 days) developed sclerotic skin changes and more severe pneumonitis. Cutaneous symptoms were milder in the last generation. The xenografts of the last 2 generations also contained TILs, and lacked lymphoproliferative transformation. The systemic immunoinflammatory syndrome in the absence of microbial infection and posttransplant lymphoproliferative disorder was suggestive of xGvHD.
While there are few reports of xGvHD in severely immunodeficient mice xenotransplanted from lymphodominant tumor xenografts, this report for the first time documented serial xGvHD in consecutive passages of WT PDX-bearing models and discussed potential solutions to prevent such an undesired complication.
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