Lefevre Etienne, Chasseloup Fanny, Ladurelle Nataly, Janot Clément, Thibaud Jean Laurent, Beau Isabelle, Adam Clovis, Courtils Céline des, Zizzari Philippe, Carpentier Alexandre, Kamenický Peter
Université Paris-Saclay, Inserm, Physiologie et Physiopathologie Endocriniennes, Le Kremlin-Bicêtre, 94275, France.
Service de Neurochirurgie, Groupe hospitalier Pitié-Salpêtrière, AP-HP, Paris, 75013, France.
Acta Neuropathol Commun. 2025 Jul 5;13(1):149. doi: 10.1186/s40478-025-02052-6.
Innovative treatment strategies for pituitary tumors are necessary to limit the disease burden and to improve survival in cases of carcinomas. The paucity and inaccuracy of available preclinical models substantially hamper pituitary research and drug discovery. Hence, we describe a novel method to generate orthotopic pituitary tumors via stereotaxic injection of somatotroph GC cells into the pituitaries of immunocompetent Wistar Furth rats. Tumor growth was monitored by repeated 7 Tesla magnetic resonance imaging. The procedure consistently led to rapidly expanding intra- and suprasellar growth hormone-secreting tumors within their native anatomical environment. The generated tumors faithfully reproduced the microarchitecture of human somatotroph pituitary adenomas, including the immune infiltrates and other typical components of their microenvironment, which is a prerequisite for testing immunomodulating agents. This orthotopic model of proliferative pituitary tumors developed in immunocompetent hosts therefore unlocks new opportunities for preclinical studies.
垂体瘤的创新治疗策略对于限制疾病负担以及提高癌患者的生存率而言是必要的。现有临床前模型的匮乏和不准确严重阻碍了垂体研究和药物研发。因此,我们描述了一种通过将生长激素分泌细胞系GC细胞立体定向注射到具有免疫活性的Wistar Furth大鼠垂体中产生原位垂体瘤的新方法。通过重复的7特斯拉磁共振成像监测肿瘤生长。该方法始终能在其天然解剖环境中导致鞍内和鞍上生长激素分泌肿瘤迅速扩大。所产生的肿瘤忠实地再现了人类生长激素分泌型垂体腺瘤的微观结构,包括免疫浸润及其微环境的其他典型成分,这是测试免疫调节药物的先决条件。因此,这种在具有免疫活性的宿主中建立的增殖性垂体瘤原位模型为临床前研究带来了新机遇。