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细胞介导的反应在工程化软骨中造成了转化生长因子-β(TGF-β)递送限制。

Cell mediated reactions create TGF-β delivery limitations in engineered cartilage.

作者信息

Dogru Sedat, Alba Gabriela M, Pierce Kirk C, Wang Tianbai, Kia Danial Sharifi, Albro Michael B

机构信息

College of Engineering, Boston University, Boston, MA, United States.

College of Engineering, Boston University, Boston, MA, United States.

出版信息

Acta Biomater. 2024 Dec;190:178-190. doi: 10.1016/j.actbio.2024.10.032. Epub 2024 Oct 22.

Abstract

During native cartilage development, endogenous TGF-β activity is tightly regulated by cell-mediated chemical reactions in the extracellular milieu (e.g., matrix and receptor binding), providing spatiotemporal control in a manner that is localized and short acting. These regulatory paradigms appear to be at odds with TGF-β delivery needs in tissue engineering (TE) where administered TGF-β is required to transport long distances or reside in tissues for extended durations. In this study, we perform a novel examination of the influence of cell-mediated reactions on the spatiotemporal distribution of administered TGF-β in cartilage TE applications. Reaction rates of TGF-β binding to cell-deposited ECM and TGF-β internalization by cell receptors are experimentally characterized in bovine chondrocyte-seeded tissue constructs. TGF-β binding to the construct ECM exhibits non-linear Brunauer-Emmett-Teller (BET) adsorption behavior, indicating that as many as seven TGF-β molecules can aggregate at a binding site. Cell-mediated TGF-β internalization rates exhibit a biphasic trend, following a Michaelis-Menten relation (V = 2.4 molecules cell s, K = 1.7 ng mL) at low ligand doses (≤130 ng/mL), but exhibit an unanticipated non-saturating power trend at higher doses (≥130 ng/mL). Computational models are developed to illustrate the influence of these reactions on TGF-β spatiotemporal delivery profiles for conventional TGF-β administration platforms. For TGF-β delivery via supplementation in culture medium, these reactions give rise to pronounced steady state TGF-β spatial gradients; TGF-β concentration decays by ∼90 % at a depth of only 500 μm from the media-exposed surface. For TGF-β delivery via heparin-conjugated affinity scaffolds, cell mediated internalization reactions significantly reduce the TGF-β scaffold retention time (160-360-fold reduction) relative to acellular heparin scaffolds. This work establishes the significant limitations that cell-mediated chemical reactions engender for TGF-β delivery and highlights the need for novel delivery platforms that account for these reactions to achieve optimal TGF-β exposure profiles. STATEMENT OF SIGNIFICANCE: During native cartilage development, endogenous TGF-β activity is tightly regulated by cell-mediated chemical reactions in the extracellular milieu (e.g., matrix and receptor binding), providing spatiotemporal control in a manner that is localized and short acting. However, the effect of these reactions on the delivery of exogenous TGF-β to engineered cartilage tissues remains not well understood. In this study, we demonstrate that cell-mediated reactions significantly restrict the delivery of TGF-β to cells in engineered cartilage tissue constructs. For delivery via media supplementation, reactions significantly limit TGF-β penetration into constructs. For delivery via scaffold loading, reactions significantly limit TGF-β residence time in constructs. Overall, these results illustrate the impact of cell-mediated chemical reactions on TGF-β delivery profiles and support the importance of accounting for these reactions when designing TGF-β delivery platforms for promoting cartilage regeneration.

摘要

在天然软骨发育过程中,内源性转化生长因子-β(TGF-β)的活性受到细胞介导的细胞外环境化学反应(如基质和受体结合)的严格调控,以局部且作用时间短的方式提供时空控制。这些调控模式似乎与组织工程(TE)中TGF-β的递送需求不一致,在组织工程中,施用的TGF-β需要长距离运输或在组织中长时间留存。在本研究中,我们对细胞介导的反应对软骨组织工程应用中施用的TGF-β时空分布的影响进行了新颖的研究。在牛软骨细胞接种的组织构建体中,通过实验表征了TGF-β与细胞沉积的细胞外基质(ECM)结合的反应速率以及细胞受体对TGF-β的内化作用。TGF-β与构建体ECM的结合表现出非线性的布鲁诺尔-埃米特-特勒(BET)吸附行为,表明多达七个TGF-β分子可以在一个结合位点聚集。细胞介导的TGF-β内化速率呈现双相趋势,在低配体剂量(≤130 ng/mL)下遵循米氏关系(V = 2.4个分子/细胞·秒,K = 1.7 ng/mL),但在较高剂量(≥130 ng/mL)下呈现出意想不到的非饱和幂趋势。开发了计算模型以说明这些反应对传统TGF-β给药平台的TGF-β时空递送曲线的影响。对于通过在培养基中补充进行TGF-β递送,这些反应会产生明显的稳态TGF-β空间梯度;从培养基暴露表面起仅500μm深度处,TGF-β浓度下降约90%。对于通过肝素共轭亲和支架进行TGF-β递送,相对于无细胞肝素支架,细胞介导的内化反应显著降低了TGF-β在支架上的保留时间(降低了160 - 360倍)。这项工作确定了细胞介导的化学反应对TGF-β递送造成的重大限制,并强调了需要新的给药平台来考虑这些反应以实现最佳的TGF-β暴露曲线。重要性声明:在天然软骨发育过程中,内源性TGF-β的活性受到细胞外环境中细胞介导的化学反应(如基质和受体结合)的严格调控,以局部且作用时间短的方式提供时空控制。然而,这些反应对外源性TGF-β递送至工程化软骨组织的影响仍未得到充分理解。在本研究中,我们证明细胞介导的反应显著限制了TGF-β递送至工程化软骨组织构建体中的细胞。对于通过培养基补充进行递送,反应显著限制了TGF-β渗透到构建体中。对于通过支架加载进行递送,反应显著限制了TGF-β在构建体中的停留时间。总体而言,这些结果说明了细胞介导的化学反应对TGF-β递送曲线的影响,并支持在设计用于促进软骨再生的TGF-β递送平台时考虑这些反应的重要性。

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