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由胰腺癌重编程的单个神经元的特征描述。

Characterization of single neurons reprogrammed by pancreatic cancer.

作者信息

Thiel Vera, Renders Simon, Panten Jasper, Dross Nicolas, Bauer Katharina, Azorin Daniel, Henriques Vanessa, Vogel Vanessa, Klein Corinna, Leppä Aino-Maija, Barriuso Ortega Isabel, Schwickert Jonas, Ourailidis Iordanis, Mochayedi Julian, Mallm Jan-Philipp, Müller-Tidow Carsten, Monyer Hannah, Neoptolemos John, Hackert Thilo, Stegle Oliver, Odom Duncan T, Offringa Rienk, Stenzinger Albrecht, Winkler Frank, Sprick Martin, Trumpp Andreas

机构信息

Heidelberg Institute for Stem Cell Technology and Experimental Medicine (HI-STEM), Heidelberg, Germany.

Division of Stem Cells and Cancer, German Cancer Research Center (DKFZ) and DKFZ-ZMBH Alliance, Heidelberg, Germany.

出版信息

Nature. 2025 Apr;640(8060):1042-1051. doi: 10.1038/s41586-025-08735-3. Epub 2025 Feb 17.

Abstract

The peripheral nervous system (PNS) orchestrates organ function in health and disease. Most cancers, including pancreatic ductal adenocarcinoma (PDAC), are infiltrated by PNS neurons, and this contributes to the complex tumour microenvironment (TME). However, neuronal cell bodies reside in various PNS ganglia, far from the tumour mass. Thus, cancer-innervating or healthy-organ-innervating neurons are lacking in current tissue-sequencing datasets. To molecularly characterize pancreas- and PDAC-innervating neurons at single-cell resolution, we developed Trace-n-Seq. This method uses retrograde tracing of axons from tissues to their respective ganglia, followed by single-cell isolation and transcriptomic analysis. By characterizing more than 5,000 individual sympathetic and sensory neurons, with about 4,000 innervating PDAC or healthy pancreas, we reveal novel neuronal cell types and molecular networks that are distinct to the pancreas, pancreatitis, PDAC or melanoma metastasis. We integrate single-cell datasets of innervating neurons and the TME to establish a neuron-cancer-microenvironment interactome, delineate cancer-driven neuronal reprogramming and generate a pancreatic-cancer nerve signature. Pharmacological denervation induces a pro-inflammatory TME and increases the effectiveness of immune-checkpoint inhibitors. The taxane nab-paclitaxel causes intratumoral neuropathy, which attenuates PDAC growth and, in combination with sympathetic denervation, results in synergistic tumour regression. Our multi-dimensional data provide insights into the networks and functions of PDAC-innervating neurons, and support the inclusion of denervation in future therapies.

摘要

外周神经系统(PNS)在健康和疾病状态下协调器官功能。包括胰腺导管腺癌(PDAC)在内的大多数癌症都有PNS神经元浸润,这促成了复杂的肿瘤微环境(TME)。然而,神经元细胞体位于各种PNS神经节中,远离肿瘤块。因此,目前的组织测序数据集中缺乏支配癌症或健康器官的神经元。为了在单细胞分辨率下对支配胰腺和PDAC的神经元进行分子表征,我们开发了Trace-n-Seq。该方法利用轴突从组织到其各自神经节的逆行追踪,然后进行单细胞分离和转录组分析。通过对5000多个个体交感神经和感觉神经元进行表征,其中约4000个支配PDAC或健康胰腺,我们揭示了胰腺、胰腺炎、PDAC或黑色素瘤转移所特有的新型神经元细胞类型和分子网络。我们整合了支配神经元和TME的单细胞数据集,以建立神经元-癌症-微环境相互作用组,描绘癌症驱动的神经元重编程,并生成胰腺癌神经特征。药理学去神经支配诱导促炎性TME并提高免疫检查点抑制剂的有效性。紫杉烷纳米白蛋白紫杉醇会导致肿瘤内神经病变,从而减弱PDAC的生长,并且与交感神经去支配相结合,会导致协同性肿瘤消退。我们的多维数据为支配PDAC的神经元的网络和功能提供了见解,并支持在未来的治疗中纳入去神经支配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0098/12018453/e6ab945d50c7/41586_2025_8735_Fig1_HTML.jpg

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