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3D生物打印——一种皮肤衰老模型。

3D bioprinting-a model for skin aging.

作者信息

Ansaf Ryeim B, Ziebart Rachel, Gudapati Hemanth, Simoes Torigoe Rafaela Mayumi, Victorelli Stella, Passos Joao, Wyles Saranya P

机构信息

Department of Biology, Colorado State University Pueblo, Pueblo, CO 81001, USA.

Mayo Clinic Alix School of Medicine, Rochester, MN 55905, USA.

出版信息

Regen Biomater. 2023 Jun 13;10:rbad060. doi: 10.1093/rb/rbad060. eCollection 2023.

Abstract

Human lifespan continues to extend as an unprecedented number of people reach their seventh and eighth decades of life, unveiling chronic conditions that affect the older adult. Age-related skin conditions include senile purpura, seborrheic keratoses, pemphigus vulgaris, bullous pemphigoid, diabetic foot wounds and skin cancer. Current methods of drug testing prior to clinical trials require the use of pre-clinical animal models, which are often unable to adequately replicate human skin response. Therefore, a reliable model for aged human skin is needed. The current challenges in developing an aged human skin model include the intrinsic variability in skin architecture from person to person. An ideal skin model would incorporate innate functionality such as sensation, vascularization and regeneration. The advent of 3D bioprinting allows us to create human skin equivalent for use as clinical-grade surgical graft, for drug testing and other needs. In this review, we describe the process of human skin aging and outline the steps to create an aged skin model with 3D bioprinting using skin cells (i.e. keratinocytes, fibroblasts and melanocytes). We also provide an overview of current bioprinted skin models, associated limitations and direction for future research.

摘要

随着前所未有的大量人群步入七旬和八旬高龄,人类寿命持续延长,这也暴露出影响老年人的慢性疾病。与年龄相关的皮肤疾病包括老年性紫癜、脂溢性角化病、寻常型天疱疮、大疱性类天疱疮、糖尿病足伤口和皮肤癌。目前在临床试验前进行药物测试的方法需要使用临床前动物模型,而这些模型往往无法充分复制人类皮肤反应。因此,需要一种可靠的老年人类皮肤模型。开发老年人类皮肤模型目前面临的挑战包括人与人之间皮肤结构的内在差异。理想的皮肤模型应具备诸如感觉、血管化和再生等固有功能。3D生物打印技术的出现使我们能够制造出用于临床级手术移植、药物测试及其他用途的人类皮肤等效物。在这篇综述中,我们描述了人类皮肤衰老的过程,并概述了使用皮肤细胞(即角质形成细胞、成纤维细胞和黑素细胞)通过3D生物打印创建老年皮肤模型的步骤。我们还概述了当前的生物打印皮肤模型、相关局限性以及未来研究方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f3f/10369216/544487e4fc51/rbad060f5.jpg

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