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Prediction of the permeability of antineoplastic agents through nitrile medical gloves by zone classification based on their physicochemical properties

机译:基于其物理化学性质的区分类预测抗肿瘤药物通过丁腈药物的渗透性

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Abstract Background Permeability of antineoplastic agents through medical gloves is an important factor that must be considered for the appropriate selection of gloves. However, predicting the permeability of antineoplastic agents through medical gloves based on their physicochemical properties remains difficult. Thus, this study aimed to elucidate the relationship between the physicochemical properties and permeability of antineoplastic agents through medical gloves. Additionally, we tried to predict the risk of permeation of antineoplastic agents through medical gloves based on physicochemical parameters. Methods Ten antineoplastic agents (carboplatin, carmustine, cisplatin, cyclophosphamide, doxorubicin, etoposide, fluorouracil, ifosfamide, oxaliplatin, and paclitaxel) with varying physicochemical properties were investigated, and their permeation rates (PRs) through nitrile medical gloves of varying thicknesses (0.05, 0.07, and 0.1?mm) were measured using a continuous flow in-line cell device. We also determined the apparent permeation clearance (CL P,app ) values of the antineoplastic agents based on their PRs at 240?min (PR 240 ) and assessed the relationship between CL P,app and physicochemical parameters [molecular weight (MW) and logarithm of octanol-water partition coefficient (LogP)]. Results The CL P,app values of the 10 antineoplastic agents through nitrile medical gloves (0.05?mm thickness) were significantly correlated with their MWs, but not their LogP values ( P =?0.026 and 0.39, respectively; Spearman’s rank correlation). This finding indicated that the rates of diffusion of the antineoplastic agents in the glove material showed greater effects on CL P,app than the rates of absorption into the glove surfaces within 240?min of exposure. We then classified the 10 antineoplastic agents into 3 zones (Zone A, high LogP/low MW drugs; Zone B, high LogP/high MW drugs; and Zone C, low LogP) and found that Zones A, B, and C corresponded to high (PR 240 ??10?ng/min/cm 2 ), moderate (PR 240 ??10?ng/min/cm 2 ), and low (no detectable permeation) permeation risk, respectively. Conclusions The permeation risk of antineoplastic agents through nitrile medical gloves within the actual continuous wearing time in clinical settings could be predicted using MW and LogP values. We believe that the proposed zone classification of antineoplastic agents will be a useful tool for predicting the permeation risk of antineoplastic agents through medical gloves.
机译:通过医用手套抗肿瘤药摘要背景磁导率是必须考虑的手套合适的选择的一个重要因素。然而,通过基于其理化性质医用手套预测抗肿瘤药物的渗透率仍然很困难。因此,本研究的目的是阐明通过医用手套的物理化学性质和抗肿瘤剂的渗透性之间的关系。此外,我们试图通过基于物理化学参数医用手套预测抗肿瘤药物的渗透的风险。方法十抗肿瘤药(卡铂,卡莫司汀,顺铂,环磷酰胺,阿霉素,依托泊苷,氟尿嘧啶,异环磷酰胺,奥沙利铂和紫杉醇)具有不同的物理化学性质进行了研究,他们的渗透速率(PRS)通过不同厚度的腈医用手套(0.05, 0.07和0.1?毫米)中使用连续流在线电池装置进行测定。我们还确定表观渗透清除率(CL P,应用程序)的基础上,在240?分钟(PR 240)他们的永久居民的抗肿瘤剂的值,并评估CL P,应用和物理化学参数[分子量(MW)和对数之间的关系辛醇 - 水分配系数的(的LogP)]。结果CL P,通过腈医用手套(〜0.05毫米的厚度)的10名抗肿瘤剂的应用值与它们的MWs被显著相关,而不是它们的logP值(P = 0.026和0.39,分别; Spearman秩相关)。这一发现表明,在手套材料的抗肿瘤剂的扩散的速率显示出对CL P,应用比吸收率变成240×曝光分钟内手套表面更大的影响。然后,我们分类的10种抗肿瘤药成3个区域(区域A,高的LogP /低MW药物; B区,高的LogP /高MW的药物;和C区,低的LogP),并发现该区域A,B和C对应于高(PR 240?>?10?毫微克/分钟/厘米2),中度(PR 240 <??10?毫微克/分钟/厘米2),和低(没有可检测的渗透)渗透风险,分别。结论通过在临床上的实际连续穿着时间内丁腈医用手套抗肿瘤药物的渗透风险可能使用兆瓦和logP值进行预测。我们认为,抗肿瘤药物的提议区域的划分将通过医用手套预测抗肿瘤药物的渗透风险的有效工具。

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