Vadgama P
Department of Medicine (Clinical Biochemistry), University of Manchester, Hope Hospital, UK.
Med Biol Eng Comput. 1992 Jul;30(4):CE2-7. doi: 10.1007/BF02446170.
This review is a commentary on recent, altered perspectives about biomedical engineering and its role in medicine. It is argued that, rather than being a peripheral specialty, medical engineering and engineering principles in general have a direct application to biochemical medicine and cell biology. A brief description is given of the cell as a compartmentalised reactor system, and the ways in which it is possible to replace lost or aberrant cell function. Specific topics are then covered to illustrate the general thesis. These are: polymers for cell mimicry, cell-surface interactions, biomolecule transport, cell transport phenomena, cell signalling, harnessing of cells for therapy and microbial interactions. These disparate subject areas have a common thread of interest for the biomedical engineer, and are presented here in a way which highlights key points of relevance for engineering. Though necessarily brief, the various descriptions in this review provide a film indication that a rigorous approach to the assessment, modelling and use of cells along sound engineering lines is vital for the future. It is concluded that, without this approach, our understanding of cell biology will remain semiquantitative and semiempirical.
本综述是对近期关于生物医学工程及其在医学中作用的观点转变的评论。文中指出,医学工程及一般的工程原理并非边缘学科,而是直接应用于生物化学医学和细胞生物学。简要描述了细胞作为一个分隔的反应系统,以及替代丧失或异常细胞功能的方法。然后涵盖了特定主题以阐述总体论点。这些主题包括:用于细胞模拟的聚合物、细胞表面相互作用、生物分子运输、细胞运输现象、细胞信号传导、利用细胞进行治疗以及微生物相互作用。这些不同的学科领域对生物医学工程师而言有着共同的关注点,并以突出与工程相关要点的方式在此呈现。尽管本综述必然简短,但其中的各种描述提供了一个初步迹象,即沿着合理的工程路线对细胞进行严格的评估、建模和应用,对未来至关重要。结论是,没有这种方法,我们对细胞生物学的理解将仍处于半定量和半经验阶段。