J. Crayton Pruitt Family Department of Biomedical Engineering, Herbert Wertheim College of Engineering, University of Florida, Gainesville, FL, 32611, USA.
Department of Mechanical and Aerospace Engineering, Herbert Wertheim College of Engineering, University of Florida, Gainesville, FL, 32611, USA.
Ann Biomed Eng. 2022 Jun;50(6):703-715. doi: 10.1007/s10439-022-02949-6. Epub 2022 Mar 29.
Altered extracellular matrix (ECM) production is a hallmark of many fibroproliferative diseases, including certain cancers. The high incidence of glycan-rich components within altered ECM makes the use of glycan-binding proteins such as Galectin-3 (G3) a promising therapeutic strategy. The complexity of ECM as a rich 3D network of proteins with varied glycosylation states makes it challenging to determine the retention of glycan-binding proteins in altered ECM environments. Computational models capable of predicting the transport of glycan-binding proteins in altered ECM can benefit the design and testing of such proteins and associated novel therapeutic strategies. However, such computational models require many kinetic parameters that cannot be estimated from traditional 2D pharmacokinetic assays. To validate transport properties of G3 in 3D ECM constructs, we developed a species transport model that includes diffusion and matrix-binding components to predict retention of G3 fusion proteins in glycan-rich ECM. By iteratively comparing our computational model to experimental results, we are able to determine a reasonable range of parameters for a robust computational model of G3 transport. We anticipate this overall approach to building a data-driven model is translatable to other ECM-targeting therapeutic strategies.
细胞外基质(ECM)产生的改变是许多纤维增生性疾病的标志,包括某些癌症。改变的 ECM 中糖含量丰富的成分很多,因此使用糖结合蛋白(如半乳糖凝集素 3(G3))是一种很有前途的治疗策略。ECM 作为富含蛋白质的三维网络,具有不同的糖基化状态,其复杂性使得确定糖结合蛋白在改变的 ECM 环境中的保留变得具有挑战性。能够预测糖结合蛋白在改变的 ECM 中运输的计算模型可以使这些蛋白的设计和测试以及相关的新型治疗策略受益。然而,这些计算模型需要许多动力学参数,这些参数无法从传统的 2D 药代动力学测定中估计。为了验证 G3 在 3D ECM 构建体中的转运特性,我们开发了一种包含扩散和基质结合成分的物种转运模型,以预测 G3 融合蛋白在富含聚糖的 ECM 中的保留。通过迭代地将我们的计算模型与实验结果进行比较,我们能够确定 G3 转运的稳健计算模型的合理参数范围。我们预计,建立这种数据驱动模型的总体方法可以转化为其他针对 ECM 的治疗策略。