Related Experiment Video
Updated: Dec 27, 2025

Bioluminescent Monitoring of Graft Survival in an Adoptive Transfer Model of Autoimmune Diabetes in Mice
Published on: November 18, 2022
Systemic Klotho therapy protects against insulitis and enhances beta-cell mass in NOD mice
Gérald J Prud'homme1, Yelena Glinka2, Merve Kurt2
1Keenan Research Centre for Biomedical Science, Unity Health Toronto, Toronto, Ontario, Canada; Department of Laboratory Medicine, Unity Health Toronto (St. Michael's Hospital Site), Toronto, Ontario, Canada; Department of Laboratory Medicine and Pathobiology, University of Toronto, Ontario, Canada.
Abstract:
The levels of the anti-aging protein α-Klotho, in its soluble form (s-Klotho), are depressed in the circulation of patients with type 1 diabetes (T1D) or type 2 diabetes (T2D). Gene transfer experiments have suggested a protective role for β-cell specific expression of α-Klotho in murine models of T1D and T1D, but these approaches are not easily translatable to clinical therapy. It is unknown whether systemic s-Klotho protein treatment ameliorates disease in T1D, which is characterized by autoimmune destruction of β cells. We previously reported from in vitro experiments with β cells that s-Klotho increases insulin secretion, reduces cells death and promotes β-cell replication. Here, we investigated s-Klotho protein therapy in NOD mice, which have autoimmune T1D. We observed that diabetic NOD mice have significantly lower plasma levels of s-Klotho, compared to their non-diabetic counterparts. To examine in vivo effects of Klotho, we treated NOD mice with s-Klotho protein, or with a Klotho blocking antibody. Systemic treatment with s-Klotho ameliorated diabetes; notably increasing β-cell replication and total β-cell mass. Klotho expression was increased locally in the islets. s-Klotho also markedly reduced immune-cell infiltration of islets (insulitis). In contrast, administration of the Klotho antibody was detrimental, and aggravated the loss of β-cell mass. Thus, s-Klotho has protective effects in this model of T1D, and this appears to depend on a combination of increased β-cell replication and reduced insulitis. These findings suggest that s-Klotho might be effective as a new therapeutic agent for T1D.
Insights
Soluble α-Klotho protein therapy improved type 1 diabetes (T1D) in mice by increasing beta-cell replication and reducing immune cell infiltration. This suggests s-Klotho may be a potential new treatment for T1D.
Area of Science:
- Endocrinology
- Immunology
- Regenerative Medicine
Background:
- Soluble α-Klotho (s-Klotho) levels are reduced in diabetic patients.
- Previous studies suggest a protective role for α-Klotho in diabetes models, but clinical translation is challenging.
- The therapeutic potential of systemic s-Klotho protein treatment for type 1 diabetes (T1D) remains unexplored.
Purpose of the Study:
- To investigate the efficacy of systemic s-Klotho protein therapy in a mouse model of autoimmune T1D.
- To determine the effects of s-Klotho on beta-cell function, replication, mass, and insulitis in vivo.
Main Methods:
- Diabetic NOD mice were treated with s-Klotho protein or a Klotho blocking antibody.
- Plasma s-Klotho levels were measured and compared between diabetic and non-diabetic mice.
- Beta-cell replication, beta-cell mass, and insulitis were assessed.
Main Results:
- Diabetic NOD mice exhibited significantly lower plasma s-Klotho levels compared to controls.
- Systemic s-Klotho treatment ameliorated diabetes, increased beta-cell replication and mass, and reduced insulitis.
- Administration of a Klotho blocking antibody aggravated beta-cell loss.
Conclusions:
- Systemic s-Klotho protein therapy demonstrates protective effects in a mouse model of T1D.
- The therapeutic benefits are attributed to enhanced beta-cell replication and reduced insulitis.
- s-Klotho presents a promising therapeutic candidate for T1D treatment.
More Related Videos
06:16White and Brown Adipose Grafts: An Approach to Correct Reproductive, Metabolic, and Renal Deficits in Black and Tan Brachyury (BTBR) Obese Mice
Published on: September 9, 2025
08:32Studying the Hypothalamic Insulin Signal to Peripheral Glucose Intolerance with a Continuous Drug Infusion System into the Mouse Brain
Published on: January 4, 2018