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Tirzepatide

Mounjaro, Zepbound, LY3298176

Quick Stats
Studies 183
Trials 100
Score 3
2025 pubmed

GLP-1/GIP dual agonist tirzepatide alleviates mice model of Parkinson's disease by promoting mitochondrial homeostasis.

Tian. Ruixue R; Liu. Kexin K; Lai. Hurong H; Liao. Caifeng C; Li. Jian J; Tu. Huaijun H

Key Findings

  • GLP‑1R and GIPR levels are lower in dopamine neurons from Parkinson’s patients
  • Tirzepatide at low doses preserves dopamine neuron markers and matches semaglutide/levodopa efficacy in mice
  • It improves mitochondrial shape, boosts ATP production, lowers harmful fission protein Drp1 and normalizes mitophagy proteins (Pink1, Parkin, p62)

Practical Outcomes

  • Tirzepatide shows promise as a neuroprotective agent by targeting mitochondrial health, but evidence is limited to mice and cell studies. It’s not ready for self‑experimentation; however, the findings may guide future clinical trials and inform biohackers to watch for upcoming human data before considering off‑label use.

Summary

In a mouse model of Parkinson's disease, the dual‑acting peptide tirzepatide protected brain dopamine cells and improved the health of their mitochondria, doing so at a dose about one‑third of what’s used for diabetes and showing similar benefits to existing drugs like semaglutide and levodopa. The drug also fixed the balance of proteins that control mitochondrial splitting and recycling, which are disrupted in Parkinson’s. These results are still early‑stage animal work, not human trials.

Abstract

The prevailing treatment of Parkinson's disease (PD) is not yet satisfactory. The present investigate the neuroprotective effect of the GLP-1/GIP dual agonist tirzepatide and examine the potential mechanisms involved. Analysis of GLP1 receptor (GLP1R) and GIPR expression alterations in dopaminergic neurons from PD patients in the GSE238129 dataset. The MPTP-induced subacute PD mice was treated with tirzepatide, semaglutide and levodopa. Behavioral tests and brain histopathology of mice were evaluated. The transmission electron microscopy revealed the presence of ultrastructural alterations in the mitochondrial morphology. The ATP level was assessed in substantia nigra. Western blot and immunohistochemical staining were employed to quantify Drp1 and mitophagy proteins. Furthermore, Drp1 inhibitor and mitophagy activator were used to treat MPTP-induced subacute PD mice, and lysosome inhibitor chloroquine (CQ) and the autophagy inhibitor 3-methyladenine (3-MA) were used in SY5Y cells for validation. The gene expression levels of both GLP1R and GIPR were significantly downregulated in dopaminergic neurons derived from PD patients. Tirzepatide could significantly ameliorate MPTP-induced the loss of tyrosine hydroxylase (TH) protein in the substantia nigra. There was no statistically difference observed between one-third doses of tirzepatide when compared with semaglutide and levodopa. In addition, tirzepatide not only improved mitochondrial ultrastructure, but also enhanced mitochondrial ATP content. Tirzepatide was found to reduce Drp1 expression and reverse the expressions of mitophagy-related proteins, including Pink1, Parkin, and p62. There was no statistically difference observed between one-third doses of tirzepatide compared with semaglutide in mitochondrial energy control. In addition, we observed that MPTP-induced subacute PD mice treated with a Drp1 inhibitor and mitophagy activator exhibited therapeutic effects. In SY5Y cells, lysosomal and autophagy inhibitors significantly reduced mitochondrial membrane potential, ATP levels, and the NAD+/NADH ratio. This study demonstrates that the benefits of tirzepatide extend to mitochondrial networks, achieved by means of the inhibition of mitochondrial pathological fission, the promotion of mitophagy, in MPTP-induced subacute PD mice or cells model.

Study Information

Provider

pubmed

Year

2025

Date

2025-08-30T00:00:00.000Z

DOI

10.1016/j.intimp.2025.115443

References

36