Department of Biomedical Engineering, Columbia University, New York, New York 10027, USA.
J Biomed Mater Res A. 2009 Dec;91(3):692-700. doi: 10.1002/jbm.a.32305.
Genipin is a naturally-derived biocompatible cross-linking agent commonly used to generate three dimensional tissue-engineered scaffolds or to fix biologically derived scaffolds prior to implantation. Here we propose a novel use for genipin as a long-term culture medium supplement to promote cross-linking of de novo cell products that are produced in engineered cartilage. We hypothesize that the application of genipin will stabilize the extracellular matrix components and increase the mechanical properties of developing engineered cartilage. Chondrocytes encapsulated in agarose hydrogel (a neutrally charged polysaccharide scaffold that is unaffected by genipin cross-linking) were cultured in a chemically-defined growth medium that was supplemented with varying concentrations of genipin (22 microM, 220 microM, 2200 microM) for various durations (continuous or intermittent). Tissues developed significantly higher mechanical properties (+28% dynamic modulus and +20% Young's modulus) by day 42 with genipin treatment compared to untreated controls. These increases were not immediate, but presented over culture time after genipin treatment. The genipin treated groups were also more resistant to cytokine-induced degradation with interleukin-1alpha; maintaining an E(Y) (+218%), G* (+390%) and glycosaminoglycan (GAG) content (+477%) over genipin-untreated constructs subjected to interleukin. We hypothesize two mechanisms through which the physical enhancement of tissue properties may be fostered: (1) by cross-link mediated reorganization and enhanced retention of cell-elaborated extracellular matrix components, and (2) through reduction of the loss of extracellular matrix components by increasing their resilience to catabolic degradation. These studies demonstrate a potential use of genipin as a medium supplement to develop enhanced engineered cartilage.
京尼平是一种天然衍生的生物相容性交联剂,通常用于生成三维组织工程支架,或在植入前固定生物衍生的支架。在这里,我们提出了京尼平的一种新用途,即作为长期培养介质补充剂,以促进工程化软骨中产生的新细胞产物的交联。我们假设,京尼平的应用将稳定细胞外基质成分并增加正在发育的工程化软骨的机械性能。包封在琼脂糖水凝胶(一种中性电荷多糖支架,不受京尼平交联影响)中的软骨细胞在化学定义的生长培养基中培养,该培养基补充有不同浓度的京尼平(22μM、220μM、2200μM),持续时间不同(连续或间歇)。与未处理的对照相比,用京尼平处理的组织在第 42 天具有显著更高的机械性能(动态模量增加 28%,杨氏模量增加 20%)。这些增加不是立即发生的,而是在京尼平处理后经过培养时间呈现的。与未经京尼平处理的对照相比,京尼平处理组对细胞因子诱导的降解(白细胞介素 1α)也更具抵抗力,保持 E(Y)(增加 218%)、G*(增加 390%)和糖胺聚糖(GAG)含量(增加 477%)。我们假设两种机制可能促进组织特性的物理增强:(1)通过交联介导的细胞外基质成分的重组和增强保留,和(2)通过增加其对分解代谢降解的抵抗力来减少细胞外基质成分的损失。这些研究表明京尼平作为培养基补充剂开发增强型工程化软骨的潜在用途。