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首页> 外文期刊>Advances in Experimental Medicine and Biology >A systems modeling approach to the study of retinoid function: implications for evaluation of retinoids in cancer chemoprevention and/or chemotherapy.
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A systems modeling approach to the study of retinoid function: implications for evaluation of retinoids in cancer chemoprevention and/or chemotherapy.

机译:研究维甲酸功能的系统建模方法:对维甲酸在癌症化学预防和/或化学疗法中的评估意义。

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We have used a mathematical/compartmental modeling approach along with a number of rationally designed complementary in vivo and in vitro systems to investigate the effects of administration of various retinoids and/or drug combinations on normal physiological metabolism of native retinoids. The present paper focuses on our studies of the synthetic retinoid 4-HPR and our use of fairly simple mathematical/compartmental modeling techniques to investigate how this retinoid affects the metabolism of native retinoid overall, as well as in two specific tissues, the prostate and the eyes. We have presented our work with this particular retinoid and these tissues as an example of the type of studies we have been doing and to present some of the information that one can obtain using this approach. In addition, an important objective of this paper is to highlight the fact that a great deal of critical information can be derived from fairly simple mathematical/compartmental models. When used appropriately, such models provide a powerful tool to direct the design, conduct, and interpretation of experiments. The models we developed for the prostate and the eyes were used as hypotheses to direct our research efforts in both in vivo and in vitro systems. In the case of the eyes, we were able to elucidate the possible mechanisms involved in one of the most commonly reported complications (i.e., visual function abnormalities) associated with administration of an important chemopreventive and/or chemotherapeutic agent. We are in the process of further expanding our studies with the prostate as well as several other tissues in a similar manner. The immediate clinical relevance and application of our work with the eyes demonstrate the high translational potential of our approach. Without the use of the type of mathematical/compartmental modeling approach we used, which provided the basis for much of this work, we are not aware of any other way that we could have obtained the critical information that we did. We hope that thework presented here demonstrates the usefulness, power, and potential clinical applicability of a modeling approach to investigate different retinoid-based treatments as well as a variety of other chemopreventive and/or chemotherapeutic agents.
机译:我们已经使用数学/区室建模方法,以及许多经过合理设计的体内和体外互补系统,研究了各种类维生素A和/或药物组合的给药对天然类维生素A正常生理代谢的影响。本文着重于我们对合成类视黄醇4-HPR的研究,以及我们使用相当简单的数学/区室建模技术来研究这种类视黄醇如何影响整个天然类视黄醇的代谢以及在两个特定组织(前列腺和前列腺癌)中的代谢。眼睛。我们以这种特定的类视色素和这些组织为例进行了研究,作为我们正在进行的研究类型的一个例子,并提出了一些可以使用这种方法获得的信息。此外,本文的一个重要目标是强调这样一个事实,即可以从相当简单的数学/隔室模型中得出大量关键信息。如果使用得当,此类模型可提供强大的工具来指导实验的设计,进行和解释。我们为前列腺和眼睛开发的模型被用作假设,以指导我们在体内和体外系统中的研究工作。就眼睛而言,我们能够阐明与服用重要的化学预防剂和/或化学治疗剂相关的最常见的并发症之一(即视觉功能异常)所涉及的可能机制。我们正在以类似的方式进一步扩大对前列腺以及其他几种组织的研究。我们的工作具有直接的临床意义和应用价值,证明了我们的方法具有很高的翻译潜力。如果不使用我们使用的数学/分区建模方法类型(该模型为大部分工作提供了基础),我们将无法以其他任何方式获得所获得的关键信息。我们希望这里介绍的工作能够证明一种建模方法的有效性,功能和潜在的临床适用性,以研究基于类维生素A的不同治疗方法以及多种其他化学预防和/或化学治疗剂。

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