Bakhshandeh Behnaz, Ranjbar Nika, Abbasi Ardeshir, Amiri Elahe, Abedi Ali, Mehrabi Mohammad-Reza, Dehghani Zahra, Pennisi Cristian Pablo
Department of Biotechnology, College of Science University of Tehran Tehran Iran.
Department of Immunology, Faculty of Medical Sciences Tarbiat Modares University Tehran Iran.
Bioeng Transl Med. 2022 Aug 5;8(2):e10383. doi: 10.1002/btm2.10383. eCollection 2023 Mar.
Tissue engineering (TE) is currently considered a cutting-edge discipline that offers the potential for developing treatments for health conditions that negatively affect the quality of life. This interdisciplinary field typically involves the combination of cells, scaffolds, and appropriate induction factors for the regeneration and repair of damaged tissue. Cell fate decisions, such as survival, proliferation, or differentiation, critically depend on various biochemical and biophysical factors provided by the extracellular environment during developmental, physiological, and pathological processes. Therefore, understanding the mechanisms of action of these factors is critical to accurately mimic the complex architecture of the extracellular environment of living tissues and improve the efficiency of TE approaches. In this review, we recapitulate the effects that biochemical and biophysical induction factors have on various aspects of cell fate. While the role of biochemical factors, such as growth factors, small molecules, extracellular matrix (ECM) components, and cytokines, has been extensively studied in the context of TE applications, it is only recently that we have begun to understand the effects of biophysical signals such as surface topography, mechanical, and electrical signals. These biophysical cues could provide a more robust set of stimuli to manipulate cell signaling pathways during the formation of the engineered tissue. Furthermore, the simultaneous application of different types of signals appears to elicit synergistic responses that are likely to improve functional outcomes, which could help translate results into successful clinical therapies in the future.
组织工程(TE)目前被认为是一门前沿学科,它为开发针对那些对生活质量产生负面影响的健康状况的治疗方法提供了潜力。这个跨学科领域通常涉及细胞、支架和适当的诱导因子的组合,用于受损组织的再生和修复。细胞命运的决定,如存活、增殖或分化,在发育、生理和病理过程中严重依赖于细胞外环境提供的各种生化和生物物理因素。因此,了解这些因素的作用机制对于准确模拟活组织细胞外环境的复杂结构和提高组织工程方法的效率至关重要。在这篇综述中,我们概述了生化和生物物理诱导因子对细胞命运各个方面的影响。虽然生化因子,如生长因子、小分子、细胞外基质(ECM)成分和细胞因子的作用,在组织工程应用的背景下已经得到了广泛研究,但直到最近我们才开始了解生物物理信号,如表面形貌、机械和电信号的影响。这些生物物理线索可以提供一组更强大的刺激,以在工程组织形成过程中操纵细胞信号通路。此外,同时应用不同类型的信号似乎会引发协同反应,这可能会改善功能结果,这有助于在未来将研究结果转化为成功的临床治疗方法。