Methodological aspects of dose calculations in transdermal carbon dioxide therapy: estimation of absorbed dose and confirmation of systemic distribution

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Abstract

Carbon dioxide (CO2) gas is well characterized for medical applications. It is a chemically stable, biocompatible agent that has a long history of traditional use (in natural “mofettes”) particularly in Hungary, as a natural infallible remedy. Medical CO2 gas has been widely used in various area of medicine, mostly in surgical laparoscopy and endoscopic procedures in gastroenterology as an insufflation gas, since it is considered as an inert gas without side effects and the residuals easily absorbed in vascular tissues. On the other hand, the scope of intended use in case of transdermal or intradermal application is substantially different. Based on its primary mechanism of action carbon dioxide along with some other metabolites can cause prompt vasodilation of precapillary sphincters of blood vessels, and consequently a reduction of peripheral resistance and an increase the flow of microcirculation in tissues. Additionally, an increase in perivascular partial oxygen pressure in tissues (tcPO2) has been detected, because of a shift on the oxyhemoglobin dissociation curve, which resulted in an overall enhancement of oxygenation for cells. Scientific literature revealed some other aspects of physiology during transdermal CO2 gas administration, mainly in the field of microcirculation and tissue oxygenation. In this report we confirm the rate of absorption and the systemic elimination and highlight the principles of calculation for distribution and dosing utilizing the methodology of stable isotope ratio analysis. All these data may provide at least one further step supporting the use of carbon dioxide as an effective, non-invasive, convenient therapy. For the future this low-cost treatment option can be considered either (i) as a therapy with a reasonable cost-effectiveness ratio; or (ii) as an adjuvant therapy in rehabilitation with significant increase in quality of life for patients, alternatively (iii) as a prevention transdermal CO2 may provide a safe method for public access with a potential health benefit and reducing the symptoms of arterial and venous disease development.
经皮二氧化碳治疗中剂量计算的方法学方面:吸收剂量的估计和全身分布的确认
二氧化碳(CO2)气体具有良好的医疗应用特性。它是一种化学稳定,具有生物相容性的制剂,具有悠久的传统使用历史(在天然“mofettes”中),特别是在匈牙利,作为一种天然的可靠药物。医用CO2气体由于被认为是惰性气体,无副作用,且其残留物容易被血管组织吸收,因此被广泛应用于医学的各个领域,主要作为充气气体应用于外科腹腔镜手术和胃肠内科内镜手术。另一方面,在透皮或皮内应用的情况下,预期使用范围有很大不同。根据其主要作用机制,二氧化碳与其他一些代谢物可引起血管毛细血管前括约肌的迅速扩张,从而降低外周阻力,增加组织微循环的流量。此外,由于氧血红蛋白解离曲线的移位,导致细胞氧合的整体增强,已经检测到组织中血管周围氧分压(tcPO2)的增加。科学文献揭示了透皮CO2给药过程中生理的其他方面,主要是在微循环和组织氧合领域。在本报告中,我们确定了吸收率和系统消除率,并强调了利用稳定同位素比分析方法计算分布和给药的原则。所有这些数据可能至少进一步支持使用二氧化碳作为一种有效、无创、方便的治疗方法。在未来,这种低成本的治疗方案可以被认为:(i)具有合理的成本效益比的治疗;或者(ii)作为康复的辅助治疗,显著提高患者的生活质量,或者(iii)作为预防透皮CO2可能为公众提供一种安全的方法,具有潜在的健康益处,并减少动脉和静脉疾病发展的症状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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