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[Clinical evaluation of insulin measuring kit not cross-react with insulin analogue preparations].

Minoru Ueyama, Yoshinori Shimajiri, Shuhei Morita, Akiko Yamana, Machi Furuta, Tokio Sanke

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Abstract

Clinical evaluation of insulin assay system reacting with only human insulin molecule (kit B) was performed by comparing it with conventional insulin assay system (kit A) cross-reacting with insulin analogue as well as human insulin preparation. In vitro, the kit B was confirmed to cross-react with only human insulin, not with insulin analogue preparations such as insulin aspart, lyspro and glargine. In non-insulin treated diabetic patients, postprandial and post-insulin injected serum immunoreactive insulin (IRI) concentrations measured by kit B were almost the same as those measured by the kit A. On the other hand, in diabetic patients treated with insulin analogue preparations, postprandial and post-insulin injected serum IRI levels measured by kit B were obviously low compared with those by kit A. After intravenous injection of insulin analogue preparations (0.1 unit/kg), insulin lyspro or insulin aspart, serum IRI levels measured by the kit B were not increased but gradually decreased in contrast to the obviously increased serum IRI level measured by the kit A. From these results, the kit B was confirmed not to measure the insulin analogue preparations in vitro and in vivo.

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What this paper is about

Clinical evaluation of insulin assay system reacting with only human insulin molecule (kit B) was performed by comparing it with conventional insulin assay system (kit A) cross-reacting with insulin analogue as well as human insulin preparation. In vitro, the kit B was confirmed to cross-react with only human insulin, not with insulin analogue preparations such as insulin aspart, lyspro and glargine. In non-insulin treated diabetic patients, postprandial and post-insulin injected serum immunoreactive insulin (IRI) concentrations measured by kit B were almost the same as those measured by the kit A. On the other hand, in diabetic patients treated with insulin analogue preparations, postprandial and post-insulin injected serum IRI levels measured by kit B were obviously low compared with those by kit A. After intravenous injection of insulin analogue preparations (0.1 unit/kg), insulin lyspro or insulin aspart, serum IRI levels measured by the kit B were not increased but gradually decreased in contrast to the obviously increased serum IRI level measured by the kit A. From these results, the kit B was confirmed not to measure the insulin analogue preparations in vitro and in vivo.

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Available abstract

Clinical evaluation of insulin assay system reacting with only human insulin molecule (kit B) was performed by comparing it with conventional insulin assay system (kit A) cross-reacting with insulin analogue as well as human insulin preparation. In vitro, the kit B was confirmed to cross-react with only human insulin, not with insulin analogue preparations such as insulin aspart, lyspro and glargine. In non-insulin treated diabetic patients, postprandial and post-insulin injected serum immunoreactive insulin (IRI) concentrations measured by kit B were almost the same as those measured by the kit A. On the other hand, in diabetic patients treated with insulin analogue preparations, postprandial and post-insulin injected serum IRI levels measured by kit B were obviously low compared with those by kit A. After intravenous injection of insulin analogue preparations (0.1 unit/kg), insulin lyspro or insulin aspart, serum IRI levels measured by the kit B were not increased but gradually decreased in contrast to the obviously increased serum IRI level measured by the kit A. From these results, the kit B was confirmed not to measure the insulin analogue preparations in vitro and in vivo.

Key concepts: Insulin, Insulin analog, Insulin aspart, Postprandial, Internal medicine, Endocrinology, Insulin glargine, Human insulin

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[Clinical evaluation of insulin measuring kit not cross-react with insulin analogue preparations]. — Research Paper | ScholarLens