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临床试验/NCT03585647
NCT03585647已完成不适用

Effect of Anesthetics Used for Regional vs General vs Integrated Anesthesia on the Modulation of 'Stress-responsive' Genes Involved in the Metabolism and Cellular Detoxification

University of Bologna1 个研究点 分布在 1 个国家目标入组 99 人开始时间: 2014年9月15日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
发起方
入组人数
99
试验地点
1
主要终点
Changes of Gene expression profile from baseline at time points

研究概览

简要总结

The study will analyze differentially regulated genes involved in oxidative stress and toxicology in peripheral blood mononuclear cells (PBMCs) of patients who underwent arthroplasty under three different anesthetic methods. The investigator hypothesized that anesthesia procedures trigger toxicity, thus inducing changes in the messenger ribonucleic acid (mRNA) profile. The results may provide a more profound understanding of the molecular mechanism of anesthesia and in overcoming the adverse effects arising from their use.

详细描述

By using a computer-generated randomization table, hospitalized patients undergoing elective hip arthroplasty will be randomly consecutively allocated to receive general (GA group), regional (RA group), or integrated (IA group) anesthesia. Patients with contraindication to spinal anesthesia or lumbar catheter placement, as well as obese patients, with arterial hypertension not controlled by oral medication, severe pulmonary, cardiovascular, renal, hepatic, cerebrovascular, or psychiatric diseases will be excluded from the study.

Whole blood samples (10 mL) will be obtained from all enrolled patients at three time points: early morning on the operation day (T0), after surgery (T1) and third day (T2) after surgery. The samples will be collected in heparin tubes and PBMCs will be isolated and used for gene expression analysis. Serum obtained after blood centrifugation will be used for hematological and biochemical analysis such as glutamate oxaloacetate transaminase (GOT), glutamate-pyruvate transaminase (GPT), bilirubin (BIL), creatinine (CREA), creatine phosphokinase (CPK), hemoglobin (HB).

The sample size was determined according to Lee- Whitmore * and G*Power Ftest for ANOVA Fixed effects, omnibus, one-way (Lee ML, Whitmore GA. Stat Med. 2002;21: 3543-3570). Assuming a Poisson distribution for the expected value of the false-positive gene expression of the 9 chosen genes and fixing at 1 the maximum expected value for false positives E(R0) and considering all the 84 genes as not differentially expressed (G0=G=9), the probability α for any single gene among the G genes that are not differentially expressed is given by α=E(R_0 )/G=1/9=0.011, with the Bonferroni correction it becomes α_c=(0.011)/3=0.037. This is the type I error of a false positive expression. Moreover, considering as primary endpoint the fold increase of the gene expression, assuming a log-normal distribution with standard deviation of 0.7 which is typical of moderate-high gene expression and therefore a conservative one for the sample size determination and imposing a minimum difference on logarithmic scale among the 3 groups of 0.5 with a power of at least 0.8 and a Bonferroni corrected type I error α=0.05/3=0.0167 (which is smaller and then conservative, than the previous α_c) the minimum sample size(G*POWER)^ for each group is 30 patients, by considering a 10% of drop-out , the chosen sample size was 33 patients per group which leads to a total sample size of 99 patients.

^F tests - ANOVA: Fixed effects, omnibus, one-way Analysis: A priori: Compute required sample size Input: Effect size f = 0.7 α err prob = 0.0167 Power (1-β err prob) = 0.8 Number of groups = 3 Output: Noncentrality parameter λ = 14.7000000 Critical F = 4.7803455 Numerator df = 2 Denominator df = 27 Total sample size = 30 Actual power = 0.8009945

The normal distribution of continuous variables will be evaluated by Kolmogorov-Smirnov test. The Chi-square test will be used to evaluate categorical variables. The differences between groups will be evaluated by means of parametric ANOVA tests followed by Tukey test. Multiple regression analysis will be performed to evaluate the influence of biochemical parameters on gene expression in response to anesthetics considering confounding factors such as age, gender, BMI, smoking. Values of p <0.05 will be considered statistically significant. All tests will be performed using software (SPSS, Chicago, USA).

研究设计

研究类型
Observational
观察模型
Cohort
时间视角
Prospective

入排标准

年龄范围
18 Years 至 80 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • American Society of Anesthesiologists Classification (ASA Class) = I-II.

排除标准

  • American Society of Anesthesiologists Classification (ASA Class) > III
  • contraindication to spinal anaesthesia or lumbar catheter placement
  • arterial hypertension not controlled by oral medication
  • severe pulmonary
  • cardiovascular disease
  • renal disease
  • hepatic disease
  • cerebrovascular disease
  • psychiatric diseases

结局指标

主要结局

Changes of Gene expression profile from baseline at time points

时间窗: Gene expression will be evaluated in PBMCs at baseline (T0), up-30 min after surgery (T1) and on the third day (T2) after surgery.

Effect of anesthesia techniques on the expression of genes indicative of stress and toxicity

次要结局

  • Relationship between deregulated genes and hepatic/renal cytotoxicity from baseline at time points(Biochemical analysis have been evaluated in blood collected at baseline (T0), up-30 min after surgery (T1) and on the third day (T2) after surgery.)

研究者

发起方
University of Bologna
申办方类型
Other
责任方
Principal Investigator
主要研究者

RAlleva

PhD

University of Bologna

研究点 (1)

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