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了解生物打印上皮组织中的细胞动力学、工程学观点及转化前景。

Understanding the cellular dynamics, engineering perspectives and translation prospects in bioprinting epithelial tissues.

作者信息

Derman Irem Deniz, Moses Joseph Christakiran, Rivera Taino, Ozbolat Ibrahim T

机构信息

Engineering Science and Mechanics Department, Penn State University, University Park, PA, 16802, USA.

The Huck Institutes of the Life Sciences, Penn State University, University Park, PA, 16802, USA.

出版信息

Bioact Mater. 2024 Sep 24;43:195-224. doi: 10.1016/j.bioactmat.2024.09.025. eCollection 2025 Jan.

Abstract

The epithelium is one of the important tissues in the body as it plays a crucial barrier role serving as a gateway into and out of the body. Most organs in the body contain an epithelial tissue component, where the tightly connected, organ-specific epithelial cells organize into cysts, invaginations, or tubules, thereby performing distinct to endocrine or exocrine secretory functions. Despite the significance of epithelium, engineering functional epithelium has remained a challenge due to it is special architecture, heterotypic composition of epithelial tissues, and most importantly, difficulty in attaining the apico-basal and planar polarity of epithelial cells. Bioprinting has brought a paradigm shift in fabricating such apico-basal polarized tissues. In this review, we provide an overview of epithelial tissues and provide insights on recapitulating their cellular arrangement and polarization to achieve epithelial function. We describe the different bioprinting techniques that have been successful in engineering polarized epithelium, which can serve as models for understanding homeostasis and studying diseased conditions. We also discuss the different attempts that have been investigated to study these 3D bioprinted engineered epithelium for preclinical use. Finally, we highlight the challenges and the opportunities that need to be addressed for translation of 3D bioprinted epithelial tissues towards paving way for personalized healthcare in the future.

摘要

上皮组织是人体重要组织之一,因为它起着关键的屏障作用,是进出身体的通道。人体大多数器官都包含上皮组织成分,紧密连接的、器官特异性的上皮细胞在此组织成囊肿、内陷或小管,从而执行不同的内分泌或外分泌分泌功能。尽管上皮组织很重要,但由于其特殊的结构、上皮组织的异型组成,以及最重要的是,难以实现上皮细胞的顶-基极性和平面极性,构建功能性上皮组织仍然是一项挑战。生物打印在制造这种具有顶-基极性的组织方面带来了范式转变。在这篇综述中,我们概述了上皮组织,并深入探讨如何重现其细胞排列和极化以实现上皮功能。我们描述了在构建极化上皮组织方面取得成功的不同生物打印技术,这些技术可作为理解体内平衡和研究疾病状况的模型。我们还讨论了为将这些3D生物打印的工程化上皮组织用于临床前研究而进行的不同尝试。最后,我们强调了将3D生物打印上皮组织转化以在未来为个性化医疗铺平道路时需要应对的挑战和机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1260/11462153/d7073e7accf0/ga1.jpg

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