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乳酸保护的低血糖症(LPH)

Lactate-Protected Hypoglycemia (LPH).

作者信息

Goodwin Matthew L, Gladden L Bruce, Nijsten Maarten W N

机构信息

Department of Orthopedic Surgery, Washington University in St. Louis, St. Louis, MO, United States.

School of Kinesiology, Auburn University, Auburn, AL, United States.

出版信息

Front Neurosci. 2020 Sep 3;14:920. doi: 10.3389/fnins.2020.00920. eCollection 2020.

Abstract

Here, we provide an overview of the concept of a lactate-protected hypoglycemia ("LPH"), originally proposed as lowering glucose while simultaneously increasing lactate concentration as a method by which tumors might be targeted. Central to this hypothesis is that lactate can act as a critical salvage fuel for the central nervous system, allowing for wide perturbations in whole body and central nervous system glucose concentrations. Further, many tumors exhibit "the Warburg" effect, consuming glucose and producing and exporting lactate despite adequate oxygenation. While some recent data have provided evidence for a "reverse-Warburg," where some tumors may preferentially consume lactate, many of these experimental methods rely on a significant elevation in lactate in the tumor microenvironment. To date it remains unclear how various tumors behave , and how they might respond to perturbations in lactate and glucose concentrations or transport inhibition. By exploiting and targeting lactate transport and metabolism in tumors (with a combination of changes in lactate and glucose concentrations, transport inhibitors, etc.), we can begin developing novel methods for targeting otherwise difficult to treat pathologies in the brain and spinal cord. Here we discuss evidence both experimental and observational, and provide direction for next steps in developing therapies based on these concepts.

摘要

在此,我们概述了乳酸保护型低血糖症(“LPH”)的概念,该概念最初提出是将降低葡萄糖浓度与同时提高乳酸浓度作为一种可能靶向肿瘤的方法。这一假设的核心是乳酸可作为中枢神经系统的关键挽救燃料,从而允许全身和中枢神经系统葡萄糖浓度出现较大波动。此外,许多肿瘤表现出“瓦博格效应”,即尽管有充足的氧供应,仍消耗葡萄糖并产生和输出乳酸。虽然最近一些数据为“反向瓦博格效应”提供了证据,即一些肿瘤可能优先消耗乳酸,但这些实验方法大多依赖于肿瘤微环境中乳酸的显著升高。迄今为止,尚不清楚各种肿瘤的行为方式,以及它们对乳酸和葡萄糖浓度变化或转运抑制的反应如何。通过利用并靶向肿瘤中的乳酸转运和代谢(结合乳酸和葡萄糖浓度变化、转运抑制剂等),我们可以开始开发针对脑和脊髓中难以治疗的病症的新方法。在此,我们讨论实验证据和观察证据,并为基于这些概念开发治疗方法的下一步提供方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abb1/7497796/44b08e50ff6c/fnins-14-00920-g001.jpg

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