Evidence map›Paper›PMID 42226178›Full record

ArticleJournal of translational medicine2026

Reperfusion‑targeted AnxA1sp restores mitochondrial resilience through mitoKATP activation to limit diabetic myocardial ischemia‑reperfusion injury.

Guangyao Zou, Lei Pu, Zixi Xiao, Wenxiu Luo, Tian Yu, Yu Zhang, Lin Zhang

Abstract read
In one paragraph

Article in Journal of translational medicine, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

What it found

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2 · The registry

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

7 authors.

Guangyao ZouDepartment of Anesthesiology, Affiliated Hospital of Zunyi Medical University, Zunyi City, Guizhou Province, 563003, China.
Lei PuKey Laboratory of Anesthesia and Organ Protection of Ministry of Education (In Cultivation), Affiliated Hospital of Zunyi Medical University, Zunyi City, Guizhou Province, 563003, China.
Zixi XiaoKey Laboratory of Anesthesia and Organ Protection of Ministry of Education (In Cultivation), Affiliated Hospital of Zunyi Medical University, Zunyi City, Guizhou Province, 563003, China.
Wenxiu LuoKey Laboratory of Anesthesia and Organ Protection of Ministry of Education (In Cultivation), Affiliated Hospital of Zunyi Medical University, Zunyi City, Guizhou Province, 563003, China.
Tian YuKey Laboratory of Anesthesia and Organ Protection of Ministry of Education (In Cultivation), Affiliated Hospital of Zunyi Medical University, Zunyi City, Guizhou Province, 563003, China.
Yu ZhangDepartment of Anesthesiology, Affiliated Hospital of Zunyi Medical University, Zunyi City, Guizhou Province, 563003, China. gytzhangyu@163.com.ORCID http://orcid.org/0000-0001-8819-6033
Lin ZhangDepartment of Anesthesiology, Affiliated Hospital of Zunyi Medical University, Zunyi City, Guizhou Province, 563003, China. 396750236@qq.com.

Funding

National Natural Science Foundation of China 81760097Science and Technology Fund Project of Guizhou Provincial Health and Wellness Committee gzwkj2024-034
6 · The paper itself

Abstract

backgroundDiabetes exacerbates myocardial ischemia-reperfusion (I/R) injury and undermines conventional cardioprotective stimuli, largely via mitochondrial dysfunction and impaired antioxidant defenses. While the annexin A1-derived tripeptide (AnxA1sp) exhibits potent anti-inflammatory and cytoprotective properties in nondiabetic settings, its therapeutic efficacy and underlying mechanisms against I/R injury in the uniquely vulnerable diabetic myocardium remain poorly characterized.

methodsA type 2 diabetes rat model, induced by a high-fat/high-sucrose diet and low-dose streptozotocin, was subjected to in vivo LAD occlusion or ex vivo Langendorff I/R. AnxA1sp (10 µM) was administered at the onset of reperfusion, either alone or with the mitoKATP blocker 5-hydroxydecanoate (5-HD). To evaluate efficacy and mechanism, we systematically assessed myocardial infarction, hemodynamic recovery, oxidative stress burden (ROS, MDA, SOD), mitochondrial bioenergetics (ATP, respiratory chain activity, ΔΨm, mPTP dynamics), and apoptotic signaling, alongside Sirt3/Kir6.1 expression profiles.

resultsIn vivo, AnxA1sp administration significantly restricted infarct size (by ~ 12-15 absolute %, P < 0.01) and rescued systolic function (LVEF + 8-12%, P < 0.05), accompanied by a marked decline in myocardial injury enzymes (CK-MB, LDH; both P < 0.05). Similarly, in the ex vivo diabetic heart, AnxA1sp enhanced hemodynamic recovery (LVDP + 25-35%, P < 0.01) and limited tissue necrosis. Across both models, the peptide profoundly blunted oxidative stress (ROS/MDA reduced by ~ 20-40%, P < 0.01) while restoring intrinsic antioxidant capacity (SOD + 20-30%, P < 0.05). Crucially, AnxA1sp preserved mitochondrial integrity-evidenced by stabilized membrane potential (ΔΨm + 25-35%, P < 0.01), delayed mPTP opening, and replenished ATP stores (+ 20-30%, P < 0.05)-which concurrently abrogated cytochrome c release and apoptotic signaling. Notably, the pharmacological blockade of mitoKATP with 5-HD effectively abolished these cardioprotective and bioenergetic benefits (all P < 0.05 vs. AnxA1sp). Furthermore, AnxA1sp significantly upregulated Sirt3 and Kir6.1 protein expression (both P < 0.05), mechanistically linking channel activation to deacetylase pathways.

conclusionsTargeting reperfusion with AnxA1sp confers robust, mitochondria-centric cardioprotection against diabetic I/R injury. By preserving redox and bioenergetic homeostasis, the peptide markedly limits infarction and rescues cardiac function. Crucially, this protection is strictly dependent on a novel mitoKATP-Sirt3 mechanistic axis. These findings establish AnxA1sp as a highly promising adjunct candidate for reperfusion therapy in high-risk diabetic populations.

Indexed as

Annexin A1Diabetes Mellitus, ExperimentalMitochondriaMitochondria, HeartMyocardial Reperfusion InjuryOligopeptidesPotassium ChannelsAnimalsApoptosisHemodynamicsMaleMitochondrial Membrane Transport ProteinsMyocardial InfarctionOxidative StressRatsRats, Sprague-DawleyAnnexin A1mitochondrial K(ATP) channelMitochondrial Membrane Transport ProteinsOligopeptidesPotassium ChannelsAnxA1spDiabetes mellitusIschemia‑reperfusion injuryMitochondriamitoKATP channel

Identifiers

PMID42226178
PMCPMC13439987

What Socratic holds

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LicenceCC BY-NC-ND
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Registered trials

None linked

Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.