储存时间对狗血中卡普罗芬度测量的影响
James R Shuttleworth1, Kristen N Behrens1, Morgan R Biggo1
1The Ohio State University College of Veterinary Medicine, Columbus, Ohio, USA.
Veterinary medicine and science
|July 20, 2023
概括
含有卡普罗芬的犬血样本可以在-80°C下保存长达6个月,而不会影响药物度. 这种稳定性确保了兽医研究中可靠的药物度测量.
科学领域:
- 兽医药理学 兽医药理学
- 分析化学 分析化学
- 生物分析是一种生物分析.
背景情况:
- 准确的药物水平测量在兽医临床试验中至关重要.
- 样品储存时间对药物稳定性的影响尚未被普遍确立.
- 卡普罗芬是一种常用的非类固醇抗炎药物,用于狗.
研究的目的:
- 为了评估卡普罗芬在狗血中的稳定性,在-80°C保存6个月.
- 为了确定长时间储存是否会影响卡普罗芬度测量.
- 在犬类药理动力学研究中提供样本处理的最佳实践信息.
主要方法:
- 六只健康的狗接受了为期两天的卡普罗芬治疗方案.
- 血样本是在注射后的特定时间点收集的.
- 血存储在-80°C,并使用HPLC每月分析6个月.
- 统计分析采用线性混合效应模型.
主要成果:
- 在6个月的储存期间 (p=0.891) 没有观察到Carprofen的统计学显著降解.
- 虽然采样时间影响了卡普罗芬水平 (p<0.001),但储存时间与采样时间没有相互作用 (p=1).
- 高性能液体染色学证实了一致的碳烯度.
结论:
- 含有卡普洛芬的犬血样本在 -80°C保存时至少稳定6个月.
- 这一发现支持在兽医研究中长期储存用于对卡普罗芬分析的样本.
- 可靠的卡普罗芬药物水平监测是可行的扩展样本存储协议.
相关概念视频
Drug Concentration Versus Time Correlation
889
The plasma drug concentration-time curve is a crucial tool in pharmacokinetics, representing the drug's concentration in plasma at different time intervals post-administration. This curve illustrates the drug's journey from absorption into the systemic circulation, distribution to body tissues, and eventual elimination through excretion or biotransformation.
Two pivotal parameters are the minimum effective concentration (MEC) and the minimum toxic concentration (MTC). The MEC is the...
Two pivotal parameters are the minimum effective concentration (MEC) and the minimum toxic concentration (MTC). The MEC is the...
889
Time Course of Drug Effect
2.1K
The progression of a drug's impact can be analyzed by examining both the concentration-time course and the effect-time course. The concentration-time course is determined by the drug's half-life and is influenced by factors such as its pharmacokinetics, including absorption, distribution, metabolism, and elimination. The effect of the drug is often related to its concentration in the plasma and is calculated using the maximum drug effect and the plasma concentration that generates 50...
2.1K
Drug Concentrations: Measurements
406
Drug concentration is the quantity of a drug present in a biological sample. Measuring drug amounts in biological samples allows the clinician to understand how a drug is absorbed, distributed, metabolized, and excreted. Samples can be obtained through invasive or non-invasive methods. Invasive techniques involve surgical or parenteral interventions to gather blood, cerebrospinal fluid, or tissue biopsy. Conversely, non-invasive approaches provide samples like urine, feces, and saliva.
Plasma...
Plasma...
406
Drug Distribution: Plasma Protein Binding
5.7K
Drugs predominantly attach to plasma proteins, with only a small percentage remaining unbound. The unbound portion can be calculated as one minus the bound fraction. Acidic drugs form large, inactive complexes by reversibly binding to plasma albumin, which prevents them from diffusing across biological barriers. These drug-protein complexes act as reservoirs for the drugs. As the concentration of unbound drugs decreases, these complexes quickly dissociate to release the free drug, maintaining...
5.7K
Nonlinear Pharmacokinetics: Dependence of Elimination Half-Life and Dose Clearance
203
The elimination half-life and drug clearance of drugs following nonlinear kinetics can vary with dosage. The Michaelis-Menten parameters and drug concentration influence these factors. As the dose increases, the elimination half-life tends to lengthen, resulting in a reduction in clearance and a disproportionately larger area under the curve. The total clearance can be derived from the Michaelis-Menten equation for drugs following a one-compartment model.
A study on guinea pigs examined the...
A study on guinea pigs examined the...
203
Hepatic Drug Clearance: Effect of Protein Binding
246
Hepatic clearance is influenced by protein binding based on the drug's extraction ratio. Drugs with high extraction ratios are considered flow-limited and remain unaffected by protein binding during hepatic clearance. On the other hand, drugs with low extraction ratios may be impacted by plasma protein binding, although the extent of this influence depends on the fraction of the drug bound.
For low-extraction-ratio drugs that are less than 80% protein-bound, minor changes in protein binding...
For low-extraction-ratio drugs that are less than 80% protein-bound, minor changes in protein binding...
246


