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Stability of pro- and anti-inflammatory immune biomarkers for human cohort studies

机译:用于人类队列研究的促炎和抗炎免疫生物标记物的稳定性

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Background Although discovery research has identified the importance of dozens of pro- and anti-inflammatory immune mediators in the pathogenesis, maintenance, exacerbation and resolution of inflammatory diseases, most human cohort studies have incorporated few or no immunological intermediate phenotypes in their analyses. Significant hindrances have been (1) the limited panel of biomarkers known to be readily detected in healthy human populations and (2) the stability, hence utility, of such biomarkers to repeated analysis. Methods The frequency and stability of 14 plasma biomarkers linked to in vivo immune regulation of allergic and autoimmune inflammatory disorders was determined in 140 healthy pediatric and adult participants. The impact of initial and multiple subsequent freeze/thaw cycles on pro-inflammatory (CCL2, CXCL10, IL-18, TNFα, IL-6), anti-inflammatory (IL-10, sTNF-RII, IL-1Ra), acute phase proteins (CRP, PTX3) and other biomarkers (sST2, IL-1RAcP) was subsequently quantified. Results Multiple biomarkers capable of providing an innate immune signature of inflammation were readily detected directly ex vivo in healthy individuals. These biomarker levels were unaffected when comparing paired data sets from freshly obtained, never frozen plasma or serum and matched aliquots despite extensive freeze/thaw cycles. Neither age nor sex affected stability. Similarly, no quantitative differences were found following repetitive analysis of inflammatory biomarkers in culture samples obtained following in vitro stimulation with TLR and RLR ligands. Conclusions A broad panel of in vivo and ex vivo cytokine, chemokine and acute phase protein biomarkers that have been linked to human chronic inflammatory disorders are readily detected in vivo and remain stable for analysis despite multiple freeze thaw cycles. These data provide the foundation and confidence for large scale analyses of panels of inflammatory biomarkers to provide better understanding of immunological mechanisms underlying health versus disease.
机译:背景技术尽管发现研究已经确定了数十种促炎和抗炎免疫介质在炎性疾病的发病机理,维持,恶化和消退中的重要性,但大多数人类队列研究在其分析中纳入的免疫学中间表型很少或没有。重要的障碍是(1)已知在健康人群中容易检测到的有限数量的生物标志物,以及(2)此类生物标志物在重复分析中的稳定性以及因此的实用性。方法在140名健康的儿科和成人受试者中测定了14种血浆生物标志物的频率和稳定性,这些标志物与体内免疫调节变态反应和自身免疫性炎症疾病有关。初始和随后多个冷冻/解冻循环对促炎(CCL2,CXCL10,IL-18,TNFα,IL-6),抗炎(IL-10,sTNF-RII,IL-1Ra),急性期的影响随后对蛋白质(CRP,PTX3)和其他生物标记(sST2,IL-1RAcP)进行了定量。结果在健康个体中容易直接在体内离体检测出能够提供炎症的固有免疫特征的多种生物标记。当比较来自新鲜获得的,从未冷冻的血浆或血清以及匹配的等分试样的配对数据集时,尽管经过广泛的冷冻/解冻循环,这些生物标志物的水平也不受影响。年龄和性别均不会影响稳定性。同样,在对TLR和RLR配体进行体外刺激后获得的培养样品中,对炎症生物标志物进行重复分析后,没有发现定量差异。结论与人慢性炎性疾病相关的广泛的体内和体外细胞因子,趋化因子和急性期蛋白生物标志物在体内很容易被检测到,尽管经过多次冻融循环,仍保持稳定的分析状态。这些数据为大规模分析炎症生物标志物提供了基础和信心,可以更好地了解健康与疾病之间的免疫机制。

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