An advanced 3D lymphatic system for assaying human cutaneous lymphangiogenesis in a microfluidic platform

Author:

Kim MinseopORCID,Choi SieunORCID,Choi Dong-HeeORCID,Ahn JinchulORCID,Lee Dain,Song Euijeong,Kim Hyun Soo,Kim Mijin,Choi Sowoong,Oh Soojung,Kim MinsuhORCID,Chung SeokORCID,Park Phil JuneORCID

Abstract

AbstractThe human cutaneous lymphatic system strictly controls lymphatic functions by coordinating with skin cells. The lymphatic system plays important roles in removing cell waste, residual proteins, various antigens, and immune cells from tissues to maintain homeostasis and activate the immune system through the drainage of interstitial fluid1,2. The skin protects our body from external stimuli such as pathogens through the cutaneous lymphatic system3,4. Herein, to develop an in vitro human cutaneous lymphatic model, we present two 3D microfluidic platforms: a lymphangiogenesis model with a precollecting lymphatic vessel-like structure and an advanced lymphangiogenesis model with a functional cutaneous barrier and a precollecting lymphatic vessel-like structure. In addition, we rapidly analyzed prolymphangiogenic effects using methods that incorporate a high-speed image processing system and a deep learning-based vascular network analysis algorithm by 12 indices. Using these platforms, we evaluated the pro-lymphangiogenic effect of Lymphanax, a natural product derived from fresh ginseng. As a result, we demonstrated that Lymphanax induces robust lymphangiogenesis without any structural abnormalities. In conclusion, we suggest that these innovative platforms are useful for studying the interaction between the skin and lymphatic system as well as evaluating the prolymphangiogenic effects of drugs and cosmetics.

Funder

Ministry of Science, ICT and Future Planning

Publisher

Springer Science and Business Media LLC

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Recapitulating the Cancer‐Immunity Cycle on a Chip;Advanced Healthcare Materials;2024-09-02

2. AI-Powered Microfluidics: Shaping the Future of Phenotypic Drug Discovery;ACS Applied Materials & Interfaces;2024-07-17

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