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宿主遗传背景调控抗肿瘤抗体依赖性吞噬作用的能力

英文原题:Host genetic background regulates the capacity for anti-tumor antibody-dependent phagocytosis.

查看英文原题

Host genetic background regulates the capacity for anti-tumor antibody-dependent phagocytosis.

PubMed 2023/05/09(内容时间) bioRxiv

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研究概要

宿主遗传学在靶向免疫治疗结果中起着关键的调控作用,在小鼠 10 号染色体上鉴定出的推定因果基因可能调控 ADCP 过程中的 Mφ功能。

研究思路结论见上方概要

抗肿瘤抗体或靶向免疫治疗已经彻底改变了癌症治疗,并显著改善了患者的预后。一个典型的例子是靶向人类表皮生长因子受体2(HER2)的单克隆抗体(mAb)曲妥珠单抗。然而,与许多靶向免疫治疗一样,只有一部分患者能够从曲妥珠单抗中长期获益。除了肿瘤内在因素外,我们假设宿主遗传学可能影响后续的免疫激活。

为了模拟人类群体,我们将遗传异质性的Diversity Outbred(DO)小鼠与BALB/c小鼠杂交产生F1代(DOCF1)。将不同的DOCF1小鼠原位植入BALB/c同基因TUBO乳腺肿瘤系,该肿瘤系表达HER2直系同源物大鼠neu。当肿瘤达到约200 mm³时,开始使用抗neu mAb克隆7.16.4进行治疗。在R/qtl2中进行的遗传连锁和数量性状位点(QTL)效应分析确定了与肿瘤生长速率相关的位点。使用BALB/c与重组近交Collaborative Cross(CC)品系(选择用于治疗相关驱动遗传学)的F1杂交(CCxCF1)进行位点验证。通过体内选择性耗竭研究了自然杀伤(NK)细胞和巨噬细胞的各自作用。通过共聚焦显微镜使用7.16.4调理的表达E2Crimson的TUBO肿瘤细胞评估离体巨噬细胞抗体依赖性吞噬作用(ADCP)试验。

我们在DOCF1小鼠中观察到对抗肿瘤抗体治疗的差异性反应。遗传连锁分析检测到10号染色体上的一个位点与对治疗的强烈反应相关,这一发现在CCxCF1模型中得到了验证。对反应者和非反应者模型肿瘤的单细胞RNA测序识别出肿瘤免疫浸润组成的关键差异,尤其是在巨噬细胞(Mφ)亚群中。体外分析进一步支持了这一发现,显示在DOCF1和CCxCF1模型中,Mφ的ADCP能力与体内治疗结果相关。

展开英文摘要原文

Antitumor antibody, or targeted immunotherapy, has revolutionized cancer treatment and markedly improved patient outcomes. A prime example is the monoclonal antibody (mAb) trastuzumab, which targets human epidermal growth factor receptor 2 (HER2). However, like many targeted immunotherapies, only a subset of patients benefit from trastuzumab long-term. In addition to tumor-intrinsic factors, we hypothesize that host genetics may influence subsequent immune activation.

To model the human population, we produced F1 crosses of genetically heterogeneous Diversity Outbred (DO) mice with BALB/c mice (DOCF1). Distinct DOCF1 mice were orthotopically implanted with the BALB/c-syngeneic TUBO mammary tumor line, which expresses the HER2 ortholog rat neu. Treatment with anti-neu mAb clone 7.16.4 began once tumors reached ∼200 mm 3 . Genetic linkage and quantitative trait locus (QTL) effects analyses in R/qtl2 identified loci associated with tumor growth rates. Locus validation was performed with BALB/c F1 crosses with recombinant-inbred Collaborative Cross (CC) strains selected for therapy-associated driver genetics (CCxCF1). The respective roles of natural killer (NK) cells and macrophages were investigated by selective depletion in vivo. Ex vivo macrophage antibody-dependent phagocytosis (ADCP) assays were evaluated by confocal microscopy using 7.16.4-opsonized E2Crimson-expressing TUBO tumor cells.

We observed a divergent response to anti-tumor antibody therapy in DOCF1 mice. Genetic linkage analysis detected a locus on chromosome 10 that correlates to a robust response to therapy, which was validated in CCxCF1 models. Single-cell RNA sequencing of tumors from responder and non-responder models identified key differences in tumor immune infiltrate composition, particularly within macrophage (Mφ) subsets. This is further supported by ex vivo analysis showing Mφ ADCP capacity correlates to in vivo treatment outcomes in both DOCF1 and CCxCF1 models.

Host genetics play a key regulatory role in targeted immunotherapy outcomes, and putative causal genes are identified in murine chromosome 10 which may govern Mφ function during ADCP.

论文信息

作者
Glassbrook JE、Hackett JB、Muñiz MC、Bross M、Dyson G、Movahhedin N、Ullrich A、Gibson HM
文献类型
预印本
期刊
bioRxiv : the preprint server for biology2023 May 9
原文标识
PubMed 37214876 · DOI 10.1101/2023.05.09.540046