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Cardioprotective glucose-lowering drugs, statins, and secondary major adverse cardiovascular events: a nationwide cohort study of individuals with type 2 diabetes and cardiovascular disease.

BACKGROUND: In type 2 diabetes, cardioprotective glucose-lowering drugs, including sodium-glucose cotransporter-2 inhibitors and glucagon-like peptide-1 receptor agonists, and statins reduce the risk of secondary major adverse cardiovascular events. No trials examined the combination of these drugs as withholding statins in high-risk individuals would be unethical. We tested the hypothesis that cardioprotective glucose-lowering drug and statin combined is associated with lower risk of secondary major adverse cardiovascular events than either drug alone. METHODS: Individuals with type 2 diabetes and established cardiovascular disease from December 2012 through 2021 were identified via national Danish health registers. They were analyzed in an active comparator cohort including 15,404 individuals followed from treatment intensification with cardioprotective glucose-lowering drug or dipeptidyl peptidase-4 inhibitor and additionally in a time-varying cohort including 76,853 individuals with yearly updated treatment and covariate status. The treatment groups were: (i) no cardioprotective drug (no use of cardioprotective glucose-lowering drug or statin), (ii) cardioprotective glucose-lowering drug, (iii) statin, and (iv) cardioprotective glucose-lowering drug and statin. The primary outcome was a new major adverse cardiovascular event (myocardial infarction, stroke, or cardiovascular death). RESULTS: During mean 2.7 and 4.7 years of follow-up, 1,843 and 23,051 had major adverse cardiovascular events in the active comparator and time-varying cohorts. In the active comparator cohort, when compared to nonusers of cardioprotective glucose-lowering drug or statin, multivariable adjusted hazard ratios of major adverse cardiovascular events were 0.82 (95% confidence interval: 0.67 to 1.02) for cardioprotective glucose-lowering drug, 0.85 (0.74 to 0.97) for statin, and 0.71 (0.60 to 0.84) for cardioprotective glucose-lowering drug and statin combined. Corresponding hazard ratios in the time-varying cohort were 0.77 (0.69 to 0.86), 0.73 (0.70 to 0.75), and 0.57 (0.54 to 0.60), respectively. When restricting the active comparator cohort to individuals entering observation between 2019 and 2021 with reduced statistical power, the corresponding hazard ratios were 0.86 (0.57 to 1.31), 0.89 (0.60 to 1.30), and 0.79 (0.54 to 1.14), respectively. In both cohorts p for interaction between cardioprotective glucose-lowering drug and statin was > 0.05. CONCLUSIONS AND RELEVANCE: In individuals with type 2 diabetes and established cardiovascular disease, treatment with a cardioprotective glucose-lowering drug and statin in combination was associated with lower risk of secondary major adverse cardiovascular events than using either drug alone. This is important given the persistently suboptimal uptake of both drug classes in real-world practice. Some biases can never be completely excluded in real-world pharmacotherapy use studies such as this one, including confounding by indication, time-related or immortal time biases, and shifting standards of care, rendering causal interpretation unattainable; however, our results seemed consistent across numerous sensitivity analyses and designs.

Humans

[Mechanism of the cardioprotective effect of triamterene in the rat heart. Myocardial protection via elevation of extracellular K+ and Mg++ concentrations].

1. 2,4,7-Triamino-6-phenyl-pteridine (triamterene) protects the rat heart against isoproterenol-induced myocardial lesions: Whilst cardiotoxic doses of isoproterenol produce deleterious myocardial Ca overload, simultaneous admistration of triamterene diminishes myocardial Ca incorporation considerably. 2. As to the mechanism of action, triamterene increases the plasma contents of K and Mg by inhibiting renal excretion. Accordingly, oral administration of K and Mg salts, leading to a similar rise in the K and Mg concentrations of the plasma, also prevents abundant myocardial Ca incorporation. 3. Cardioprotection by triamterene can, in fact, be simply explained by its action on the plasma K and (particularly) Mg levels. This conclusion is drawn from a quantitative comparison of the inhibitory effects of triamterene (40 mg/kg s.c.) with those of KCl or MgCl2 (10 mMol/kg p.o.) on the isoproterenol-induced increase in myocardial 45Ca uptake and absolute Ca concentration. 4. Isoproterenol induced cardiomyopathy of the rat, an experimental model of non-coronarogenic myocardial lesions, has hitherto been successfully prevented with the use of Ca-antagonists (verapamil, D 600, prenylamine, fendiline). These compounds reduce Ca influx by restricting the Ca conductivity of the myocardial sarcolemma membrane ("slow channel"). The action of triamterene, on the other hand, is based on a totally different cardioprotective principle, namely competitive inhibition of intracellular myocardial Ca accumulation via an increase in K and Mg supply. In the future treatment of cardiomyopathy it seems rather promising to try a combination of both a Ca-antagonist and triamterene, thus applying two different therapeutic principles simultaneously.

Animals

Integrative Cross-platform Analysis of Kinase Inhibitor Effects on Statin-relevant Cardioprotective Pathways in Human Cardiomyocytes.

BACKGROUND/AIM: Kinase inhibitors (KIs) can cause cardiotoxicity through mechanisms overlapping with statin cardioprotective pathways, yet their effects on these pathways in cardiomyocytes remain uncertain. We evaluated six literature-defined statin-relevant gene sets using transcriptomic and proteomic data. MATERIALS AND METHODS: Pre-ranked gene set enrichment analysis was performed for 23 KIs in primary cardiac cells (GSE146096; n=319) and iPSC-derived cardiomyocytes (GSE217421; n=541), with cross-platform analysis of 21 KIs by shotgun proteomics (PXD014791; n=300). Pathway-specific concordance was assessed by Spearman correlation with Benjamini-Hochberg correction; protein scores were estimated after adjustment for cell line. RESULTS: KI effects were heterogeneous. The anti-fibrotic pathway showed nominal concordance across the two transcriptomic datasets (ρ=0.495, p=0.016, q=0.098; 91% direction concordance) and significant cell-line-adjusted transcriptomic-proteomic concordance (ρ=0.644, p=0.0016, q=0.0081). Nilotinib reproducibly upregulated NF-κB pathway genes [normalized enrichment score (NES)=+2.29 and +2.18 in discovery and validation], with targeted inter-gene-correlation-adjusted testing supporting higher NF-κB expression than under rosuvastatin (CAMERA p=3.54×10-8). No global cross-omics summary remained significant after harmonizing pathway universes and accounting for repeated pathways. CONCLUSION: KI effects on statin-relevant pathways were pathway-specific. Anti-fibrotic concordance and nilotinib-associated NF-κB upregulation are hypothesis-generating candidates for experimental validation.

Humans

[Cardioprotection by oral application of the calcium antagonist fendiline. Prevention of isoproterenol-induced myocardial necroses in rats (author's transl)].

1. N-(2-Benzhydryl-ethyl)-N-(1-phenyl-ethyl)-amine hydrochloride (fendiline, Sensit) -- in accordance with its characteristics as a Ca++-antagonist -- shows a strong cardioprotective effect in rats against isoproterenol-induced myocardial necroses. 2. Fendiline is effective via oral administration. 3. The protective effect of fendiline on the myocardium is demonstrated by means of histopathological and histoenzymatic techniques. 4. A particularly reliable method of quantifying the cardio-protective effect of a drug has proven to be the measurement of mitochondrial enzyme activity (cytochrome oxidase, succinate dehydrogenase) using histoenzymatic microphotometry.

Animals

[Key-role of intracellular calcium overload in acute necrosis of the myocardium. Cardioprotection with verapamil].

Ca ions are highly cardiotoxic if their influx into the myocardial fibres becomes abundant. The intracellular Ca overload initiates a deleterious high-energy phosphate deficiency by excessive activation of Ca-dependent intracellular ATPases and by impairing the phosphorylating capacity of mitochondria. This Ca-induced high-energy phosphate exhaustion is a crucial point in the etiology of the myocardial fibre necroses produced in rats by large doses of beta-adrenergic catecholamines, particularly isoproterenol, or by a number of other cardiotoxic agents. Accordinly, the myocardium is sensitized to necrotization by factors which favour Ca overload (dihydrotachysterol, 9alpha-flourocortisol acetate, NaH2PO4). Conversely, the structural integrity of the hearts can be protected by any substance or procedure which prevents an excessive intracellular Ca accumulation, particularly by inhibitors of the transmembrane Ca influx, such as verapamil, D 600 or prenylamine.

Adenosine Triphosphate

Cardiac mitochondrial proteome of lean, healthy Ossabaw minipigs with predisposition to metabolic syndrome versus that of Göttingen minipigs.

Ossabaw minipigs differ from other (mini)pig strains by their genetic predisposition to develop full metabolic syndrome and their nonresponsiveness to cardioprotective interventions, even before developing the diseased phenotype. Previous DNA sequencing data revealed differences in a cluster of mitochondrial protein-coding genes between Ossabaw and Göttingen minipigs-a large animal model without such a genetic predisposition and a responsiveness to cardioprotection. Alterations in mitochondrial protein composition affect mitochondrial function, and mitochondria play a crucial role in the development of metabolic syndrome and for cardioprotection. Therefore, we aimed to compare the cardiac mitochondrial proteome between lean Ossabaw minipigs with a healthy phenotype and Göttingen minipigs to gain initial insights into potential differences in mitochondrial protein composition and function. Cardiac mitochondria (left ventricular tissue) of both minipig strains (male/female pigs) were isolated, and the proteome was analyzed by liquid chromatography-tandem mass spectrometry. An unbiased, nonhypothesis-driven proteome analysis identified 97% overlap in the proteome. Among the 3% of differentially expressed proteins, 19 were related to mitochondrial metabolism, 8 to transcription and translation, 3 to small molecule transport, 2 to oxidative phosphorylation, and 1 to dynamics and surveillance. These small differences in protein composition were associated with an altered mitochondrial energy turnover-ATP production was reduced by 49% in Ossabaw compared with Göttingen minipig mitochondria. This proteome analysis provides a broader basis to understand how genetic alterations result in changes of the mitochondrial proteome and function, which might be relevant for the development and progression of metabolic syndrome and/or the primordial nonresponsiveness to cardioprotection in Ossabaw minipigs.NEW & NOTEWORTHY Our comprehensive cardiac mitochondrial proteome of Ossabaw and Göttingen minipigs is a valuable resource for cardiac biomedical research. Moreover, our proteome analysis provides a broader basis for understanding how genetic alterations result in changes of the mitochondrial proteome and support a mechanistic link between subtle, strain-specific mitochondrial proteomic signatures and altered mitochondrial energy turnover. These changes may be relevant for the development and progression of metabolic syndrome and/or primordial nonresponsiveness to cardioprotection in Ossabaw minipigs.

Animals

Exercise for the mitigation of cancer therapy-related cardiac dysfunction in breast cancer patients treated with anthracyclines: a systematic review and meta-analysis.

PURPOSE: Cancer therapy-related cardiac dysfunction (CTRCD) is a significant concern for breast cancer patients undergoing anthracycline-based chemotherapy. Although exercise has been proposed as a cardioprotective strategy, existing reviews have largely examined heterogeneous cancer populations receiving varied treatments, leaving a gap in the evidence base focused exclusively on anthracycline-induced CTRCD. This systematic review and meta-analysis aimed to address that gap by evaluating the effects of long-term exercise on key CTRCD markers in breast cancer patients treated exclusively with anthracyclines. METHODS: A comprehensive search of PubMed, Scopus, Cochrane Central Register of Controlled Trials, and Web of Science was conducted for randomized controlled trials including breast cancer patients undergoing anthracycline-based chemotherapy, receiving long-term exercise interventions (≥ 12 weeks, ≥ 1 session/week) compared to usual cancer care, and reporting at least one of the following outcomes: left ventricular ejection fraction, global longitudinal strain, cardiac troponin I, cardiac troponin T, or N-terminal prohormone of brain natriuretic peptide. RESULTS: Six randomized controlled trials involving 360 participants were included. Exercise significantly attenuated cardiac troponin I elevation compared to controls (SMD = -0.50; 95% CI, -0.93 to -0.06; p = 0.02). No statistically significant between-group differences were observed for left ventricular ejection fraction, global longitudinal strain, cardiac troponin T, or N-terminal prohormone of brain natriuretic peptide. CONCLUSION: The cardioprotective role of exercise during anthracycline treatment remains uncertain, though the attenuation of cardiac troponin I elevation suggests a potential protective signal warranting further investigation through larger, standardized trials employing advanced assessment modalities and longer follow-up periods.

Humans

Effect of a 6-month low-carbohydrate diet on the circulating fatty acid composition in patients with type 2 diabetes: a secondary analysis of an open-label randomized controlled trial.

BACKGROUND: Circulating fatty acid profiles are linked to cardiovascular disease risk and mortality. Short-term interventions suggest that low-carbohydrate diets (LCDs) promote cardioprotective shifts in circulating fatty acids in obesity. OBJECTIVES: We examined whether a 6-mo, non-calorie-restricted, LCD high in fat similarly improves circulating fatty acid composition in adults with type 2 diabetes. METHODS: In an open-label, randomized, controlled trial, 71 individuals with type 2 diabetes were randomly assigned 2:1 to an LCD [maximum of 20 E% (energy per cent) carbohydrates] or a control diet (50-60 E% carbohydrates) for 6 mo with no restriction in energy intake. The prespecified secondary outcomes were the mean difference in change between groups in serum phospholipid fatty acids in weight percentage (wt%) measured by gas chromatography and reported as 95% confidence intervals (CIs) and significance adjusted for multiple comparisons (q value). RESULTS: LCD reduced total saturated [-0.6 (CI: -0.9, -0.2)] and monounsaturated fatty acids [-0.9 (CI: -1.4, -0.3)] and increased total polyunsaturated fatty acids [1.3 (CI: 0.6, 2.0)] compared with the control diet (all q < 0.05). Importantly, LCD reduced palmitoleic acid (16:1n-7) [-0.13 (CI: -0.21, -0.06)], a marker of de novo lipogenesis, by 23% and dihomo-&#x3b3;-linolenic acid (20:3n-6) [-0.38 (CI: -0.67, -0.09)] by 12%, whereas it increased arachidonic acid (20:4n-6) [1.1 (CI: 0.3, 2.0)] by 9% compared with the control diet (all q < 0.05). Moreover, the LCD improved estimated desaturase activities by lowering stearoyl-coenzyme A desaturase 1 [-0.5 (CI: -0.7, -0.2)] and &#x394;6 desaturase [-0.6 (CI: -0.9, -0.2)] and increasing &#x394;5 desaturase [1.05 (CI: 0.3, 1.79)] activities, respectively (all q < 0.01). These changes occurred despite a 2.6-fold higher intake of saturated fatty acids in the LCD group. CONCLUSIONS: A 6-mo, non-calorie-restricted LCD modified the circulating composition of fatty acids in adults with type 2 diabetes in a manner consistent with a potentially favorable cardioprotective profile. This trial was registered at www. CLINICALTRIALS: gov as NCT03068078.

Humans

Effects of acetylsalicylic acid, dipyridamole, and hydrocortisone on epinephrine-induced myocardial injury in dogs.

A reproducible model for producing diffuse myocardial injury (epinephrine infusion) has been developed to study the cardioprotective effects of agents or maneuvers which might alter the evolution of acute myocardial infarction. Infusions of epinephrine (4 mug per kilogram per minute for 6 hours) increased radiocalcium uptakes into intact myocardium and each of its subcellular components with the mitochondrial fraction showing the most consistent changes when compared to saline-infused control animals (4,957 vs. 827 counts per minute per gram of dried tissue or fraction). Myocardial concentrations of calcium also increased significantly (12.0 vs. 5.0 mg.per 100 Gm. of fat-free dry weight). Infusions of calcium chloride sufficient to raise serum calcium concentrations 2 mEq. per liter failed to increase calcium influx into the myocardial cell. Mitochondrial radiocalcium uptakes were significantly decreased in animals pretreated with acetylsalicylic acid or dipyridamole or when hydrocortisone was added to the epinephrine infusion (2,682,2,803, and 3,424 counts per minute per gram of dried fraction, respectively). Myocardial calcium concentrations also were decreased (11.2, 8.3, and 8.9 mg. per 100 Gm. of fat-free dry weight, respectively) in the three treatment groups, being significantly decreased only in the last two. Evidence of microscopic damage was graded as less severe in the three treatment groups. Acetylsalicylic acid, dipyridamole, and hydrocortisone all appear to have cardioprotective effects when tested in this model.

Acute Disease

HDAC inhibition via suberoylanilide hydroxamic acid ameliorates doxorubicin-induced cardiotoxicity.

Anthracycline-induced cardiotoxicity remains a major limitation of cancer therapy, and effective preventive strategies are lacking. Topoisomerase IIb has been implicated as a central driver of this toxicity, suggesting that epigenetic regulators may interfere with the&#xa0;pathological cardiac response. Here, we show that doxorubicin promotes topoisomerase IIb accumulation at cardiomyocyte-specific gene promoters (e.g., Actc1, Myl2, and Myh7) overlapping myocyte enhancer factor 2 binding sites and enhances myocyte enhancer factor 2 -dependent transcription. This response is attenuated by the pan-histone deacetylase inhibitor suberoylanilide hydroxamic acid. Suberoylanilide hydroxamic acid -mediated cardioprotection requires class IIa histone deacetylases, as genetic loss of HDAC4 abolishes its effect. Mechanistically, suberoylanilide hydroxamic acid induces acetylation of the chaperone 14-3-3, disrupting its interaction with HDAC4/5, promoting their nuclear accumulation, and repressing myocyte enhancer factor 2 - driven transcription. In vivo, suberoylanilide hydroxamic acid mitigates doxorubicin-induced cardiotoxicity. These findings identify histone deacetylase inhibition as a cardioprotective repurposing strategy and reveal a mechanistic link between epigenetic regulation and anthracycline-associated cardiotoxicity.

Doxorubicin

&#x3b2;1- and &#x3b2;2-adrenergic Receptor Haplotypes Regulate Therapeutic Responses to Placebo and the Biased Ligand &#x3b2;-blocker Bucindolol.

BACKGROUND: ADRB1 and ADRB2, encoding cardiac myocyte &#x3b2;1- and &#x3b2;2-adrenergic receptors (ARs) that mediate pathologic myocardial remodeling in response to chronically increased signaling, contain N-terminus haplotype variants capable of influencing agonist- or biased ligand-induced receptor internalization that uncouples canonical signaling and initiates EGFR/ERK1/2 cardioprotection. METHODS: In two heart failure (HF) clinical trial genetic substudies we investigated effects of internalizing vs. internalization-resistant ADRB1/ADRB2 haplotypes on clinical or biomarker responses to the biased ligand &#x3b2;-blocker bucindolol vs. placebo or vs. the nonbiased &#x3b2;1-antagonist metoprolol, and in haplotyped isolated human heart preparations we measured ERK1/2 activation in response to these same interventions. RESULTS: In subjects with &#x2265;3 internalizing ADRB1+ADRB2 haplotypes (6.7% subcohort) placebo treatment was associated with fewer clinical events compared to subjects with internalization-resistant haplotypes (Odds Ratio (OR) 0.28, 95% CI (0.10, 0.82)). In contrast, placebo treatment in subjects with &#x2265;3 internalization-resistant haplotypes (70% subcohort) was associated with more clinical events in comparison to subjects with internalizing haplotype counterparts (OR 1.64 (1.46, 1.84)). Bucindolol treatment was equal to placebo in the &#x2265;3 internalizing subcohort, but was superior to placebo in the internalization-resistant subcohort (bucindolol vs. placebo OR 0.49 (0.41, 0.58)). In subjects with all 4 haplotypes internalization-resistant (25% subcohort), bucindolol vs. placebo reduced time to first event rates by 62.3&#xb1;17.5% (P <0.01, 1.68&#xb1;0.34 fold > the all-haplotypes parent population and additive to 1.92&#xb1;0.58 fold when the ADRB1 haplotype contained Arg389 rather than Gly389). The same bucindolol vs. placebo pattern was observed for NT-proBNP or norepinephrine reduction vs. metoprolol. In these comparisons ADRB2 and ADRB1 haplotypes behaved similarly, and although the haplotypes differed in frequency between Black and non-Black subjects, within haplotypes there were no by-race differences in therapeutic effects. Bucindolol but not metoprolol activated ERK1/2 signaling in isolated ventricular preparations with &#x2265;3 internalization-resistant haplotypes. CONCLUSIONS: 1) Both &#x3b2;1- and &#x3b2;2-AR haplotypes regulate therapeutic responses in HF; internalizing species confer protection against clinical events in placebo-treated subjects, while in internalization-resistant haplotypes the biased ligand &#x3b2;-blocker bucindolol but not the non-biased ligand metoprolol is associated with favorable effects. 2) The biased ligand cardioprotective effect may be related to internalization-dependent or -independent ERK1/2 activation.

Beta Adrenergic Receptors

TIGAR deficiency enhances cardiac resilience through epigenetic programming of Parkin expression.

Mitochondrial dysfunction devastates the heart in major cardiovascular diseases, yet the mechanisms governing mitochondrial quality control remain elusive. We discovered that TIGAR (TP53-induced glycolysis and apoptosis regulator) deficiency established profound cardiac protection through developmental epigenetic programming of Parkin expression. Using mice with whole-body and cardiomyocyte-specific TIGAR knockout, we demonstrated remarkable cardioprotection following myocardial infarction with maintained ejection fraction, and complete resistance to diet-induced cardiac hypertrophy despite comparable weight gain. TIGAR deficiency triggered dramatic increases in Parkin expression across all somatic tissues except testes, where Parkin levels remained extraordinarily high (100-fold greater than cardiac levels) regardless of TIGAR status, revealing tissue-specific regulatory mechanisms. This protection was entirely Parkin dependent, as double-knockout mice lost all cardioprotective benefits. Crucially, adult TIGAR manipulation failed to alter Parkin levels, demonstrating that this pathway operated exclusively during critical developmental windows to program lifelong cardiac resilience. Whole-genome bisulfite sequencing identified reduced DNA methylation in Prkn intron 10 as the key regulatory mechanism, with CRISPR deletion dramatically increasing Parkin expression in multiple cell lines. Our findings reveal how early cardiac metabolism programs lifelong cardiac function through epigenetic mechanisms, and identify developmental metabolic programming as a potential therapeutic target for preventing both ischemic heart disease and metabolic cardiomyopathy.

Animals

Experiments in animals on the pharmacological effects of metipranolol in comparison with propranolol and pindolol.

The beta-blocking agent 1-(4-acetoxy-2,3,5-trimethylphenyloxy)-3-isopropylamino-propan-2-ol (metipranolol) was compared with propranolol and pindolol. The beta-blocking activity on isoproterenol induced tachycardia was determined in rabbits (ED250bpm). The following doses in microgram/kg i.v. were required to produce the same inhibition: 410 propranolol; 160 metipranolol; 130 pindolol. When intrinsic sympathomimetic activity was determined in reserpinized rats metipranolol was found to produce less than 10% of the increase in heart rate induced by a standard isoproterenol dose (1 mg/kg i.p.), whereas propranolol caused less than 20% and pindolol ca. 60%. The membrane stabilising activity, determined by the elevation of the fibrillation threshold (ED delta100muA) in rabbit hearts, was found to be greatest with propranolol (0.98 mg/kg i.v.) and least with metipranolol (1.68 mg/kg), with pindolol occupying an intermediate position (1.10 mg/kg). The cardioprotective action to hypoxia stress of metipranolol in rats was found to be the best, requiring a dose of only 5 microgram/kg i.p. compared with values of 28 microgram/kg for pindolol and 250 microgram/kg for propranolol. These results show that metipranolol has a high beta-sympatholytic activity which is not accompanied by either marked intrinsic activity or membrane-stabilising properties. The relatively marked cardioprotective action, which is probably due to a metabolic action, is particularly noteworthy.

Adrenergic beta-Antagonists

Major cardiovascular event risk of advanced therapies in inflammatory bowel diseases: systematic review and meta-analysis.

BACKGROUND: Patients with chronic immune-mediated disorders (IMIDs), including inflammatory bowel disease (IBD), are at increased risk of cardiovascular disease. While advanced therapies show cardioprotective effects in other IMIDs, their impact on major adverse cardiovascular events (MACE) in IBD remains unclear. We conducted a meta-analysis of randomized controlled trials (RCTs) and observational studies evaluating MACE risk with advanced therapies in IBD. METHODS: Systematic search of PubMed, Embase, and Cochrane Central Register of Controlled Trials identified 43 studies (36 RCTs, including 9 long-term follow-up (LTF) studies, and 7 observational studies) published between 2002 and 2024. Primary analyses estimated odds ratios (OR) for MACE comparing advanced therapy to placebo, with secondary analyses stratifying studies by drug class and length of follow-up. Sensitivity analyses were conducted using alternative methods to account for zero-event data. RESULTS: Placebo-controlled RCTs showed a nonsignificant trend toward reduced MACE risk (OR 0.60; 95% CI 0.24-1.51), with similar findings across sensitivity analyses accounting for sparse and zero-event data. Class-specific trends suggested lower MACE risk with IL-12/IL-23 inhibitors (OR 0.35; 95% CI 0.05-2.21), JAK inhibitors (OR 0.57; 95% CI 0.16-2.06), and a potential increase with Anti-TNF agents (OR: 3.04; 95% CI 0.31-29.47), though none reached statistical significance. LTF studies showed consistent findings. Observational studies suggested lower MACE risk with Anti-TNF therapies (OR 0.29; 95% CI 0.21-0.40), but not with IL-12/IL-23 (OR 4.41; 95% CI 0.49-39.28) or JAK inhibitors (OR 1.57; 95% CI 0.86-2.84). CONCLUSION: Advanced therapies did not demonstrate a clear increase or decrease in cardiovascular risk in IBD. The discrepancies between RCTs and observational studies underscore the urgent need for rigorous-designed observational research with long-term follow-up to evaluate the real-world impact of advanced therapies on MACE risk.

Humans

Suppression of OTUD4 protects against myocardial ischemia-reperfusion injury by increasing autophagic flux and inhibiting apoptosis in cardiomyocytes.

Dysregulated autophagic flux plays a critical role in myocardial ischemia-reperfusion injury (MIRI), complicating cardiac reperfusion therapy. In this study, we identified OTUD4 as a potential regulator of autophagic flux in MIRI using CRISPR/Cas9 sgRNA sequencing. However, the underlying mechanism is poorly understood. The purpose of this study is to investigate the effects of OTUD4 on autophagic flux in OGD-R treated AC16 cells (IRI model in vitro) and LAD artery ligation induced myocardial ischemia-reperfusion mice (MIRI model in vivo). In the in vitro IRI cell model, OTUD4 knockdown significantly reversed impaired autophagic flux, increased mitochondrial membrane potential, and decreased LDH activity, ROS production, autophagy and apoptosis. Overexpression of OTUD4 showed the opposite result. In the in vivo MIRI model, OTUD4 knockdown also significantly decreased infarct area, improved cardiac structure and function, reduced serum BNP and LDH levels, attenuated cardiac tissue injury/fibrosis/myocardial hypertrophy, and ultimately exerted myocardial protective effects against ischemia-reperfusion injury. Importantly, OTUD4 knockdown inhibited autophagosome-associated markers (LC3II/LC3I, Beclin1, ATG9), autophagy substrate p62, increased lysosomal activity marker LAMP2, and activated the autophagy pathway (AKT/mTOR), thereby promoting the recovery of impaired autophagic flux in the MIRI model. Moreover, OTUD4 showed strong interaction with UBAC1, and OTUD4 deficiency decreases UBAC1 protein expression by impairing its deubiquitination, thereby regulating autophagy. In short, blocking OTUD4 restored damaged autophagic flux in I/R induced myocardial injury both in vivo and in vitro, inhibited myocardial cell apoptosis, and greatly improved cardiac function in ischemia-reperfusion mice. KEY MESSAGES: OTUD4 was identified as a key negative regulator of autophagy flux in myocardial ischemia-reperfusion injury (MIRI) via genome-wide CRISPR/Cas9 screening. OTUD4 knockdown exerts cardioprotective effects by reducing apoptosis and ROS generation and improving heart function in both in vitro and in vivo models. The interaction between OTUD4 and UBAC1 was confirmed, and OTUD4 maintains UBAC1 stability through deubiquitination, providing new insights into the ubiquitination regulatory mechanism in myocardial injury. Targeting OTUD4 has therapeutic potential for MIRI, as OTUD4 knockdown alleviated MIRI in both in vitro and in vivo models, suggesting the possibility of developing OTUD4 inhibitors for cardiac reperfusion treatment.

Animals

Improving survival in Duchenne muscular dystrophy across eras: a systematic review and cumulative meta-analysis.

BACKGROUND: Duchenne muscular dystrophy (DMD) was historically associated with death in the late teens or early twenties, mainly from respiratory failure. Survival has improved substantially with home mechanical ventilation (HMV) and multidisciplinary care, although variability remains. This study evaluated temporal trends in survival in DMD and the impact of HMV. METHODS: A study-level cumulative meta-analysis (PROSPERO CRD420251163011) of studies reporting survival outcomes in patients with DMD was conducted (PubMed 1977 to 13 October 2025). Pooled estimates of median survival were calculated, and random-effects meta-analyses with predefined subgroups (HMV and study period) were performed, alongside meta-regressions. Risk of bias was assessed using the Newcastle-Ottawa Scale. RESULTS: 53 studies (median follow-up 8&#xa0;years), comprising more than 13,000 patients, of whom 60% received HMV, were included. Median survival differed substantially between ventilated (29&#xa0;years, 95%CI 27 to 31) and non-ventilated (19&#xa0;years, 95%CI 18 to 20) patients. Survival improved progressively over time in both groups. Glucocorticoid therapy was not associated with improved survival (p=0.45), whereas treatment with heart failure medications, including renin-angiotensin system inhibitors (p=0.002) and &#x3b2;-blockers (p=0.02), was associated with longer survival. The predominance of mortality shifted from respiratory to cardiac causes, while enhanced cardiac management was associated with a growing contribution of other causes of death. CONCLUSION: Survival in DMD has increased substantially over time, with median survival now approaching the third decade of life among ventilated patients. The growing contribution of cardiac and other non-respiratory causes of death highlights the importance of long-term multidisciplinary and early cardioprotective intervention. STUDY REGISTRATION: The meta-analysis and systematic review have been registered on PROSPERO (CRD420251163011).

Humans