High-Throughput 3D-Printed Model of the Feto-Maternal Interface for the Discovery and Development of Preterm Birth Therapies

材料科学 吞吐量 3d打印 接口(物质) 高通量筛选 纳米技术 生物医学工程 医学 计算机科学 生物信息学 生物 电信 复合材料 毛细管数 毛细管作用 无线
作者
R. S. Cherukuri,Ananth Kumar Kammala,Tilu Jain Thomas,Leah Saylor,Lauren Richardson,Sungjin Kim,Marc Ferrer,Cristina Acedo,Min Jae Song,Akhilesh K. Gaharwar,Ramkumar Menon,Arum Han
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:16 (32): 41892-41906
标识
DOI:10.1021/acsami.4c08731
摘要

Spontaneous preterm birth (PTB) affects around 11% of births, posing significant risks to neonatal health due to the inflammation at the fetal–maternal interface (FMi). This inflammation disrupts immune tolerance during pregnancy, often leading to PTB. While organ-on-a-chip (OOC) devices effectively mimic the physiology, pathophysiology, and responses of FMi, their relatively low throughput limits their utility in high-throughput testing applications. To overcome this, we developed a three-dimensional (3D)-printed model that fits in a well of a 96-well plate and can be mass-produced while also accurately replicating FMi, enabling efficient screening of drugs targeting FMi inflammation. Our model features two cell culture chambers (maternal and fetal cells) interlinked via an array of microfluidic channels. It was thoroughly validated, ensuring cell viability, metabolic activity, and cell-specific markers. The maternal chamber was exposed to lipopolysaccharides (LPS) to induce an inflammatory state, and proinflammatory cytokines in the culture supernatant were quantified. Furthermore, the efficacy of anti-inflammatory inhibitors in mitigating LPS-induced inflammation was investigated. Results demonstrated that our model supports robust cell growth, maintains viability, and accurately mimics PTB-associated inflammation. This high-throughput 3D-printed model offers a versatile platform for drug screening, promising advancements in drug discovery and PTB prevention.
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