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A glucose-responsive insulin therapy protects animals against hypoglycemia
Ruojing Yang, Margaret Wu, Songnian Lin, Ravi P. Nargund, Xinghai Li, Theresa Kelly, Lin Yan, Ge Dai, Ying Qian, Qing Dallas-yang, Paul A. Fischer, Yan Cui, Xiaolan Shen, Pei Huo, Danqing Dennis Feng, Mark D. Erion, David E. Kelley, James Mu
Ruojing Yang, Margaret Wu, Songnian Lin, Ravi P. Nargund, Xinghai Li, Theresa Kelly, Lin Yan, Ge Dai, Ying Qian, Qing Dallas-yang, Paul A. Fischer, Yan Cui, Xiaolan Shen, Pei Huo, Danqing Dennis Feng, Mark D. Erion, David E. Kelley, James Mu
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Research Article Endocrinology Metabolism

A glucose-responsive insulin therapy protects animals against hypoglycemia

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Abstract

Hypoglycemia is commonly associated with insulin therapy, limiting both its safety and efficacy. The concept of modifying insulin to render its glucose-responsive release from an injection depot (of an insulin complexed exogenously with a recombinant lectin) was proposed approximately 4 decades ago but has been challenging to achieve. Data presented here demonstrate that mannosylated insulin analogs can undergo an additional route of clearance as result of their interaction with endogenous mannose receptor (MR), and this can occur in a glucose-dependent fashion, with increased binding to MR at low glucose. Yet, these analogs retain capacity for binding to the insulin receptor (IR). When the blood glucose level is elevated, as in individuals with diabetes mellitus, MR binding diminishes due to glucose competition, leading to reduced MR-mediated clearance and increased partitioning for IR binding and consequent glucose lowering. These studies demonstrate that a glucose-dependent locus of insulin clearance and, hence, insulin action can be achieved by targeting MR and IR concurrently.

Authors

Ruojing Yang, Margaret Wu, Songnian Lin, Ravi P. Nargund, Xinghai Li, Theresa Kelly, Lin Yan, Ge Dai, Ying Qian, Qing Dallas-yang, Paul A. Fischer, Yan Cui, Xiaolan Shen, Pei Huo, Danqing Dennis Feng, Mark D. Erion, David E. Kelley, James Mu

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Figure 6

MR plays a predominant role in GRI clearance in mice.

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MR plays a predominant role in GRI clearance in mice.
MR depletion in mi...
MR depletion in mice abolishes GRI clearance and completely restores its glucose-lowering capacity. (A–D) Equal molar RHI and GRI1 were tested in WT and MR KO mice via acute s.c. administration. Glucose-lowering (A and B) and plasma drug levels (C and D) in WT (A and C) and KO mice (B and D) are shown. n = 8. *P < 0.05, **P < 0.01, ***P < 0.001 vs. vehicle control by 2-way ANOVA with Dunnett’s test. Results are shown as mean ± SEM of values and represent 3 independent experiments. (E) Detection of MR-dependent GRI endocytosis in liver by immunofluorescence colocalization of GRI with MR. Liver samples collected 15 minutes after GRI1 dosing were paraffin embedded and sectioned, followed by staining with insulin (green with Alexa Fluor 647 goat anti-HRP) and MR (Cy3 donkey anti-rabbit) antibodies sequentially, as described in Methods. Original magnification, ×40. (F) FACS analysis of GRI1 uptake in freshly isolated WT or MR KO mouse liver cell mixture. The x axis represents medium fluorescence intensity of Alexa488-labeled GRI1 in each cell. The y axis represents the forward scatter sorting of individual cell size. Results represent 2 independent experiments. (G) Schematics showing differential MR-mediated GRI clearance as glucose level changes. Consequently, IR-positive cells are exposed to higher GRI at hyperglycemia than under euglycemic or hypoglycemic conditions.

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