Sensory neurons increase keratinocyte proliferation through CGRP release in a tissue engineered in vitro model of innervation in psoriasis

IF 9.4 1区 医学 Q1 ENGINEERING, BIOMEDICAL Acta Biomaterialia Pub Date : 2024-05-13 DOI:10.1016/j.actbio.2024.05.021
Rémy Pepin , Julien Ringuet , Marie-Josée Beaudet , Sabrina Bellenfant , Todd Galbraith , Hélène Veillette , Roxane Pouliot , François Berthod
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Abstract

Skin denervation has been shown to cause remission of psoriatic lesions in patients, which can reappear if reinnervation occurs. This effect can be induced by the activation of dendritic cells through sensory innervation. However, a direct effect of nerves on the proliferation of keratinocytes involved in the formation of psoriatic plaques has not been investigated. We developed, by tissue engineering, a model of psoriatic skin made of patient skin cells that showed increased keratinocyte proliferation and epidermal thickness compared to healthy controls. When this model was treated with CGRP, a neuropeptide released by sensory neurons, an increased keratinocyte proliferation was observed in the psoriatic skin model, but not in the control. When a sensory nerve network was incorporated in the psoriatic model and treated with capsaicin to induce neuropeptide release, an increase of keratinocyte proliferation was confirmed, which was blocked by a CGRP antagonist while no difference was noticed in the innervated healthy control. We showed that sensory neurons can participate directly to keratinocyte hyperproliferation in the formation of psoriatic lesions through the release of CGRP, independently of the immune system. Our unique tissue-engineered innervated psoriatic skin model could be a valuable tool to better understand the mechanism by which nerves may modulate psoriatic lesion formation in humans.

Statement of significance

This study shows that keratinocytes extracted from patients’ psoriatic skin retain, at least in part, the disease phenotype. Indeed, when combined in a 3D model of tissue-engineered psoriatic skin, keratinocytes exhibited a higher proliferation rate, and produced a thicker epidermis than a healthy skin control. In addition, their hyperproliferation was aggravated by a treatment with CGRP, a neuropeptide released by sensory nerves. In a innervated model of tissue-engineered psoriatic skin, an increase in keratinocyte hyperproliferation was also observed after inducing neurons to release neuropeptides. This effect was prevented by concomitant treatment with an antagonist to CGRP. Thus, this study shows that sensory nerves can directly participate to affect keratinocyte hyperproliferation in psoriasis through CGRP release.

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在银屑病神经支配的组织工程体外模型中,感觉神经元通过释放 CGRP 增加角朊细胞增殖。
皮肤神经支配已被证明可使患者的银屑病皮损缓解,但如果发生神经再支配,银屑病皮损可能会再次出现。这种效应可通过感觉神经支配激活树突状细胞而诱发。然而,神经对参与银屑病斑块形成的角质形成细胞增殖的直接影响尚未得到研究。我们通过组织工程学建立了一个由患者皮肤细胞制成的银屑病皮肤模型,与健康对照组相比,该模型的角质细胞增殖和表皮厚度均有所增加。当用感觉神经元释放的神经肽 CGRP 处理该模型时,观察到银屑病皮肤模型的角质细胞增殖增加,而对照组则没有。当在银屑病模型中加入感觉神经网络并用辣椒素诱导神经肽释放时,证实了角质细胞增殖的增加,CGRP 拮抗剂阻断了这种增殖,而神经支配的健康对照组则没有发现差异。我们的研究表明,感觉神经元可通过释放 CGRP 直接参与牛皮癣皮损形成过程中的角朊细胞过度增殖,而与免疫系统无关。我们独特的组织工程神经支配银屑病皮肤模型是一种宝贵的工具,可用于更好地了解神经可能调节人类银屑病皮损形成的机制。意义说明:这项研究表明,从银屑病患者皮肤中提取的角质形成细胞至少部分保留了疾病表型。事实上,与健康皮肤对照组相比,角质形成细胞在三维组织工程银屑病皮肤模型中的增殖率更高,形成的表皮更厚。此外,使用由感觉神经释放的神经肽 CGRP 会加剧角质细胞的过度增殖。在神经支配的组织工程银屑病皮肤模型中,诱导神经元释放神经肽后也观察到角质细胞过度增殖。同时使用 CGRP 拮抗剂可防止这种效应。因此,这项研究表明,感觉神经可通过释放 CGRP 直接参与影响牛皮癣的角质细胞过度增殖。
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来源期刊
Acta Biomaterialia
Acta Biomaterialia 工程技术-材料科学:生物材料
CiteScore
16.80
自引率
3.10%
发文量
776
审稿时长
30 days
期刊介绍: Acta Biomaterialia is a monthly peer-reviewed scientific journal published by Elsevier. The journal was established in January 2005. The editor-in-chief is W.R. Wagner (University of Pittsburgh). The journal covers research in biomaterials science, including the interrelationship of biomaterial structure and function from macroscale to nanoscale. Topical coverage includes biomedical and biocompatible materials.
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