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NSG 与 Humanized-BLT 小鼠中肿瘤生长与分化的差异;人源与 Humanized-BLT 来源的 NK 扩增及功能的比较分析

英文原题:Differences in Tumor Growth and Differentiation in NSG and Humanized-BLT Mice; Analysis of Human vs. Humanized-BLT-Derived NK Expansion and Functions.

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Differences in Tumor Growth and Differentiation in NSG and Humanized-BLT Mice; Analysis of Human vs. Humanized-BLT-Derived NK Expansion and Functions.

PubMed 2022/12/24(内容时间) Cancers (Basel) Q2 · IF 4.8(JCR 2025)

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中文摘要

由于野生型小鼠研究未必能重现人类疾病,哪种小鼠模型最适合研究人类疾病一直备受关注且存在争议。NSG小鼠是最常用于癌症研究的模型之一;尽管该模型便于植入肿瘤且成本较低,但由于其免疫缺陷,不能充分模拟人类疾病。

本研究在NSG和人源化BLT(hu-BLT)小鼠中开展口腔癌和胰腺癌研究,发现多项特点表明hu-BLT更适合研究人类癌症;同时比较人类与hu-BLT小鼠的免疫功能,分析两种模型的异同。研究人员将口腔癌和胰腺癌干细胞植入两种小鼠。两种肿瘤均在NSG小鼠中迅速生长,导致其短期内死亡;相较之下,荷瘤hu-BLT小鼠生存更久、肿瘤更小,肿瘤扩增速度较慢,并有较高的MHC I类表面表达和较低的NK细胞介导细胞毒性;此前研究显示,这些肿瘤细胞呈现更高分化表型。与人类相比,hu-BLT小鼠外周血中NK细胞比例较低、细胞毒功能较弱,但IFN-γ分泌更高,可能促进肿瘤细胞分化,从而使hu-BLT小鼠的肿瘤小于NSG小鼠。来自hu-BLT小鼠脾脏的NK细胞在自体破骨细胞存在时可扩增,其细胞毒性和IFN-γ分泌显著增强,达到与人外周血来源NK细胞相似的水平,表明hu-BLT小鼠NK细胞在获得活化信号后能够扩增并增强功能。人类和hu-BLT小鼠免疫系统的诸多相似之处,使该模型更适用于人类癌症研究,尤其适合研究用于癌症治疗的异基因NK细胞免疫疗法。本文还讨论hu-BLT小鼠癌症研究中的优势与挑战。

展开英文摘要原文

There is significant interest and debate regarding the best mouse model of human disease, since studies in wild-type mice may not always recapitulate human diseases. The NSG mouse model has been one of the most commonly used mouse models to study cancer; however, this mouse model, even though it has several advantages in regard to the ease of tumor implantation and financial feasibility, does not represent human disease due to the immunodeficient nature of this model.

In this study, we performed oral and pancreatic tumor studies in NSG and hu-BLT mice and found several distinguishing features that make hu-BLT model more suitable for studying human cancer.

In addition, we compared the immune function of humans to hu-BLT mice to understand the differences and similarities of the models. Oral and pancreatic cancer stem cells were implanted in NSG and hu-BLT mice. Both tumors grew robustly in NSG mice and killed them within a short period of time. On the contrary, unlike NSG mice, tumor-bearing hu-BLT mice survived longer, grew smaller tumors, and the grown tumors exhibited lower rates of expansion, with a higher surface expression of MHC-class I and lower NK cell-mediated cytotoxicity that was previously shown to have more of a differentiated phenotype.

Although the peripheral blood of hu-BLT mice in comparison to that of humans had lower percentages of NK cells and cytotoxic function, it mediated a higher secretion of IFN- , likely contributing to the differentiation of the tumor cells and subsequent decrease in the tumor size in the hu-BLT mice in comparison to the NSG mice.

Spleen-derived hu-BLT mouse NK cells were able to expand in the presence of autologous osteoclasts and substantially increase both cytotoxicity and secretion of IFN- , similar to those seen in peripheral blood-derived human NK cells, indicating that NK cells from hu-BLT mice are capable of expansion and functional activation when activating signals are given.

Thus, the many similarities between human and hu-BLT mouse immune systems make this mouse model more appropriate to study human cancer. In particular, it is well-suited for studies of allogeneic NK cell-based immunotherapy in cancer treatment. The advantages and challenges of hu-BLT mice in cancer studies are also discussed in this report.

论文信息

作者
Kaur K、Jewett A
单位
Division of Oral Biology and Oral Medicine, University of California, School of Dentistry and Medicine, Los Angeles, CA 90095, USA.United States
期刊
Cancers2022 Dec 24
原文标识
PubMed 36612108 · DOI 10.3390/cancers15010112