PO.TB03.01 · 肿瘤生物学

Galectin 1作为激素驱动的乳腺重塑和早期播散的调控因子及其在乳腺癌中的治疗潜力

Galectin 1 as a regulator of hormone driven mammary remodeling and early dissemination with therapeutic potential in breast cancer

海报缩略图:Galectin 1作为激素驱动的乳腺重塑和早期播散的调控因子及其在乳腺癌中的治疗潜力
编号 2241 展板 16 时间 4/20 09:00–12:00 区域 Section 32 主讲 Magali Berton, BS
分会场 Therapies Targeting Metastasis
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作者与单位 Authors & Affiliations

Magali Berton1, Ramiro Perrotta2, Luis Valencia Salazar3, Tomás Dalotto Moreno1, Yamil D. Mahmoud4, Juan Manuel Perez Saez1, Sabrina Gatto1, Rosa Morales1, Julio Aguirre-Ghiso3, Gabriel A. Rabinovich5, Mariana Salatino6

1IBYME, CONICET, Buenos Aires, Argentina,2Department of Genetics, Harvard Medical School, Boston, MA,3Montefiore Einstein Comprehensive Cancer Center, New York, NY,4Department of Medicine, Weill Cornell Medicine, New York, NY,5Institute de Biología y Medicina Experimental, Ciudad de Buenos Aires, Argentina,6Instituto de Biología y Medicina Experimental, Buenos Aires, Argentina

摘要 Abstract

中文摘要
Galectin-1(GAL1)是一种聚糖结合蛋白,广泛已知通过促进免疫逃逸和转移性播散来塑造肿瘤进展。虽然GAL1作为多种癌症类型的免疫调节因子已被公认,但其在激素驱动的乳腺生物学和早期肿瘤演化中的作用仍不明确。利用我们建立的GAL1野生型(WT)或敲除型(Lgals1-/-)MMTV-PyMT模型,我们此前证明GAL1缺失可延迟肿瘤发生、减少转移负荷并削弱乳腺分支形态发生。出乎意料的是,我们还观察到,无论在正常还是转化的乳腺中,Lgals1-/-小鼠腔上皮细胞的孕激素受体(PR)表达均降低。这些发现提示GAL1可能作为激素驱动的乳腺发育的关键调控因子。为验证这一假设,我们用含有醋酸甲羟孕酮(MPA,一种合成孕激素)的缓释片刺激C57BL/6 Lgals1+/+和Lgals1-/-小鼠,观察到GAL1缺陷小鼠对MPA刺激的分支指数应答显著降低。对MPA处理或对照乳腺的RNA-seq分析进一步揭示,经典的孕激素应答基因如Tnfsf11(Rankl)和Wnt4在Lgals1-/-乳腺中受到抑制。为确定GAL1缺失是否扰乱上皮细胞层级,我们通过光谱流式细胞术在CD45阴性细胞中使用EpCAM、CD49f、CD49b和Sca1标志物对乳腺上皮细胞群进行分析。GAL1缺陷的乳腺表现出MaSC和ER+腔上皮祖细胞区室减少,提示GAL1有助于在乳腺发育过程中维持谱系平衡。鉴于该细胞群已被公认为肿瘤转化的早期起源细胞,这一发现尤为相关。为进一步探究阻断GAL1的治疗相关性,我们使用了MMTV-HER2+乳腺癌模型。我们开发了一种GAL1(克隆3)中和单克隆抗体,并从14周龄(癌前阶段)到19周龄对MMTV-HER2+小鼠进行治疗(15mg/kg,每周两次)。治疗性阻断GAL1减少了分支形态发生,抑制了早期循环肿瘤细胞(CTC)的释放,减少了转化导管的数量,并降低了肺转移。重要的是,抗GAL1治疗导致乳腺腔上皮细胞中PR表达降低,并耗竭了血清中的GAL1,进一步证实了该阻断的有效性。总之,这些发现将Galectin-1确立为孕激素驱动的上皮重塑和早期转移扩散的调控因子。通过将GAL1与激素信号传导、上皮层级和早期播散联系起来,我们的研究将GAL1定位为治疗转移性乳腺癌进展的有前景的治疗靶点。
查看英文原文 English abstract
Galectin-1 (GAL1) is a glycan-binding protein broadly known to shape tumor progression by promoting immune evasion and metastatic dissemination. While GAL1 is well recognized as an immunomodulator in multiple cancer types, its role in hormone-driven mammary gland biology and early tumor evolution remains poorly defined. Using our established MMTV-PyMT model WT or KO for GAL1 (Lgals1-/-), we previously demonstrated that GAL1 deficiency delays tumor onset, reduces metastatic burden, and diminishes mammary branching morphogenesis. Unexpectedly, we also observed a decreased Progesterone Receptor (PR) expression in luminal cells from Lgals1-/- mice in both normal and transformed mammary glands. These findings suggested that GAL1 may act as a critical regulator of hormone-driven mammary gland development. To test this hypothesis, we stimulated C57BL/6 Lgals1+/+ and Lgals1-/- mice with a pellet containing Medroxyprogesterone acetate (MPA), a synthetic progestin, and observed that GAL1-deficient mice exhibited a significantly reduced branching index in response to MPA stimuli. RNA-seq analysis of MPA-treated or control mammary glands further revealed that canonical progesterone-responsive genes such as Tnfsf11 (Rankl) and Wnt4 were attenuated in Lgals1-/- glands. To determine if GAL1 absence perturbs epithelial cell hierarchies, we profiled mammary epithelial cell populations by spectral flow cytometry using EpCAM, CD49f, CD49b and Sca1 markers among CD45neg cells. GAL1-deficient glands exhibited reduced MaSC and ER+ luminal progenitor cell compartments, suggesting that GAL1 helps maintain lineage balance during the development of the mammary gland. This finding is particularly relevant given that this population has been recognized as an early cell of origin in neoplastic transformation. To further interrogate the therapeutic relevance of GAL1 blockade, we used an MMTV-HER2+ model of breast cancer. We developed a GAL1 (clone 3) neutralizing monoclonal antibody and treated MMTV-HER2+ mice (15mg/kg, twice a week) from week 14 of age (preneoplastic stage), through week 19. Therapeutic blockade of GAL1 reduced branching morphogenesis, curtailed the release of early circulating tumor cells (CTCs), decreased the number of transformed ducts, and reduced lung metastasis. Importantly, anti-GAL1 treatment led to reduced PR expression in mammary luminal cells and depleted GAL1 in serum, further confirming the blockade's effectiveness. Together, these findings introduce Galectin-1 as a regulator of progesterone-driven epithelial remodeling and early metastatic spreading. By linking GAL1 to hormone signaling, epithelial hierarchy, and early dissemination, our study positions GAL1 as a promising therapeutic target for treating metastatic breast cancer progression.
利益披露 Disclosure
M. Berton, None.. R. Perrotta, None.. L. Valencia Salazar, None.. T. Dalotto Moreno, None.. Y. Mahmoud, None.. J. Perez Saez, None.. S. Gatto, None.. R. Morales, None.. J. Aguirre-Ghiso, None.

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