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Daily Report

Daily Endocrinology Research Analysis

01/12/2025
3 papers selected
3 analyzed

Mechanistic work links saturated fat to NASH progression by direct inhibition of PRDX1 and identifies rosmarinic acid as a PRDX1 agonist that alleviates disease in mice. A phase 3 RCT (LEAP-012) shows that adding lenvatinib plus pembrolizumab to TACE significantly prolongs progression-free survival in unresectable, non-metastatic HCC. A meta-analysis of RCTs in hospitalized adults with diabetes indicates that adding CGM to standard POC testing improves time-in-range.

Summary

Mechanistic work links saturated fat to NASH progression by direct inhibition of PRDX1 and identifies rosmarinic acid as a PRDX1 agonist that alleviates disease in mice. A phase 3 RCT (LEAP-012) shows that adding lenvatinib plus pembrolizumab to TACE significantly prolongs progression-free survival in unresectable, non-metastatic HCC. A meta-analysis of RCTs in hospitalized adults with diabetes indicates that adding CGM to standard POC testing improves time-in-range.

Research Themes

  • Oxidative stress mechanisms and therapeutic targeting in metabolic liver disease
  • Combination locoregional and systemic therapy for hepatocellular carcinoma
  • Inpatient diabetes management using continuous glucose monitoring

Selected Articles

1. Inhibited peroxidase activity of peroxiredoxin 1 by palmitic acid exacerbates nonalcoholic steatohepatitis in male mice.

8.65Level VBasic/Mechanistic research
Nature communications · 2025PMID: 39799115

PRDX1 peroxidase activity is reduced in NASH, and palmitic acid directly binds PRDX1 to inhibit its activity, worsening disease. Genetic and mechanistic data show PRDX1 protects the liver by limiting ROS signaling; rosmarinic acid binds and activates PRDX1, alleviating NASH in mice.

Impact: This study pinpoints a direct, druggable link between saturated fat and oxidative stress in NASH and provides a structural basis for pharmacologic activation of PRDX1.

Clinical Implications: While preclinical, targeting PRDX1 peroxidase activity—potentially via optimized PRDX1 agonists—could represent a therapeutic strategy for NASH. Translation requires safety, selectivity, and efficacy studies in humans.

Key Findings

  • Global hepatic PRDX peroxidase activity is reduced in NASH; palmitic acid binds PRDX1 and inhibits its peroxidase activity.
  • Hepatic PRDX1 protects against NASH in male mice across three genetic models by scavenging H2O2, suppressing STAT signaling, and preventing PTP oxidation and lipid peroxidation.
  • Rosmarinic acid binds PRDX1 (crystal structure), stabilizes the peroxidatic cysteine, activates PRDX1, and alleviates NASH in vivo.

Methodological Strengths

  • Convergent mechanistic evidence spanning in vivo genetic models, biochemical assays, and X-ray crystallography.
  • Pharmacologic rescue using a defined small-molecule agonist (rosmarinic acid) with structural validation.

Limitations

  • Findings are preclinical and primarily in male mice; human relevance and sex differences remain to be established.
  • Selectivity, pharmacokinetics, and safety of PRDX1 agonism (e.g., rosmarinic acid) were not characterized for clinical translation.

Future Directions: Validate PRDX1 agonism in female models and human tissues, develop selective drug-like PRDX1 activators, and assess long-term efficacy and safety in NASH models.

Reactive oxygen species exacerbate nonalcoholic steatohepatitis (NASH) by oxidizing macromolecules; yet how they promote NASH remains poorly understood. Here, we show that peroxidase activity of global hepatic peroxiredoxin (PRDX) is significantly decreased in NASH, and palmitic acid (PA) binds to PRDX1 and inhibits its peroxidase activity. Using three genetic models, we demonstrate that hepatic PRDX1 protects against NASH in male mice. Mechanistically, PRDX1 suppresses STAT signaling and protects mitochondrial function by scavenging hydrogen peroxide, and mitigating the oxidation of protein tyrosine phosphatases and lipid peroxidation. We further identify rosmarinic acid (RA) as a potent agonist of PRDX1. As revealed by the complex crystal structure, RA binds to PRDX1 and stabilizes its peroxidatic cysteine. RA alleviates NASH through specifically activating PRDX1's peroxidase activity. Thus, beyond revealing the molecular mechanism underlying PA promoting oxidative stress and NASH, our study suggests that boosting PRDX1's peroxidase activity is a promising intervention for treating NASH.

2. Transarterial chemoembolisation combined with lenvatinib plus pembrolizumab versus dual placebo for unresectable, non-metastatic hepatocellular carcinoma (LEAP-012): a multicentre, randomised, double-blind, phase 3 study.

8.45Level IRCT
Lancet (London, England) · 2025PMID: 39798578

In the phase 3 LEAP-012 trial, adding lenvatinib plus pembrolizumab to TACE prolonged progression-free survival versus TACE plus placebo in unresectable, non-metastatic HCC (median 14.6 vs 10.0 months; HR 0.66; one-sided p=0.0002). Overall survival showed a favorable trend at 24 months, with higher toxicity in the combination group.

Impact: This large, double-blind, multicentre phase 3 trial provides high-level evidence that systemic lenvatinib plus pembrolizumab can augment TACE, a standard locoregional therapy, in unresectable HCC.

Clinical Implications: If longer follow-up confirms an overall survival benefit, TACE plus lenvatinib and pembrolizumab could become a new standard for unresectable, non-metastatic HCC in Child-Pugh A patients, with careful management of hypertension and other toxicities.

Key Findings

  • Progression-free survival improved with TACE plus lenvatinib plus pembrolizumab vs TACE plus placebo (median 14.6 vs 10.0 months; HR 0.66; one-sided p=0.0002).
  • At 24 months, overall survival rates were 75% vs 69% (HR 0.80; one-sided p=0.087), indicating a favorable trend but not yet statistically significant.
  • Grade ≥3 treatment-related adverse events occurred in 71% vs 32%, with hypertension and thrombocytopenia most common; treatment-related deaths were 2% vs <1%.

Methodological Strengths

  • Randomised, double-blind, multicentre phase 3 design with blinded independent central review of PFS.
  • Prespecified endpoints, stratified randomisation, and trial registration (NCT04246177).

Limitations

  • Overall survival was not yet statistically significant at interim; longer follow-up is required.
  • Higher toxicity with the combination and eligibility limited to Child-Pugh A may constrain generalisability.

Future Directions: Mature OS analysis, biomarker-driven selection, toxicity mitigation strategies, and cost-effectiveness analyses will inform adoption.

BACKGROUND: Transarterial chemoembolisation (TACE) is standard care for unresectable, non-metastatic hepatocellular carcinoma. We aimed to evaluate the addition of lenvatinib and pembrolizumab to TACE versus dual placebo plus TACE in patients with unresectable, non-metastatic hepatocellular carcinoma. METHODS: In this multicentre, randomised, double-blind, phase 3 study (LEAP-012), patients were recruited from 137 global sites in 33 countries or regions. Eligible patients were age 18 years or older with unresectable, non-metastatic hepatocellular carcinoma not amenable to curative treatment, but with tumours amenable to TACE, Eastern Cooperative Oncology Group (ECOG) performance status of 0 or 1, and Child-Pugh class A disease. Eligible participants were randomly assigned (1:1), stratified by study site, α-fetoprotein level, ECOG performance status, albumin-bilirubin grade, and tumour burden, by a central interactive response system, to receive TACE and either oral lenvatinib (bodyweight ≥60 kg: 12 mg; bodyweight <60 kg: 8 mg; once daily) plus intravenous pembrolizumab (400 mg once every 6 weeks for up to 2 years) or matched dual placebo (oral and intravenous). Primary endpoints were progression-free survival (threshold one-sided p=0·025), per Response Evaluation Criteria in Solid Tumours version 1.1 (modified for the current study to allow for up to five target tumours in the liver and requiring new intrahepatic tumours to meet LI-RADS 5 criteria to be considered progressive disease) by blinded independent central review, and overall survival (threshold one-sided p=0·0012) in the intention-to-treat (ITT) population (ie, all participants randomly assigned to treatment). Safety was assessed in the as-treated population (ie, all participants who were randomly assigned and received at least one dose of any study treatment). Here, we report results from the first interim analysis (final analysis for progression-free survival). This study is registered with ClinicalTrials.gov, NCT04246177, and is active but not recruiting. FINDINGS: Between May 22, 2020, and Jan 11, 2023, 847 patients were screened, of whom 480 (57%) were enrolled and randomly assigned to receive TACE plus lenvatinib plus pembrolizumab (n=237) or TACE plus dual placebo (n=243; ITT population). Median age was 66 years (IQR 58-73), 82 (17%) of 480 participants were female, 398 (83%) were male, 98 (20%) were White, 347 (72%) were Asian, four (1%) were Black or African American, and five (1%) were American Indian or Alaska Native. Median follow-up as of data cutoff (Jan 30, 2024) was 25·6 months (IQR 19·5-32·4). Median progression-free survival was 14·6 months (95% CI 12·6-16·7; 132 events [20 deaths and 112 progressions]) with lenvatinib plus pembrolizumab and 10·0 months (8·1-12·2; 154 events [eight deaths and 146 progressions]) with placebo (hazard ratio [HR] 0·66 [95% CI 0·51-0·84]; one-sided p=0·0002). 69 (29%) of 237 in the lenvatinib plus pembrolizumab group and 82 (34%) of 243 from the placebo group died, with a 24-month overall survival rate of 75% (95% CI 68-80) in the lenvatinib plus pembrolizumab group and 69% (62-74) in the placebo group (HR 0·80 [95% CI 0·57-1·11]; one-sided p=0·087). Grade 3 or worse treatment-related adverse events occurred in 169 (71%) of 237 participants in the lenvatinib plus pembrolizumab group and in 76 (32%) of 241 in the placebo group, the most common of which were hypertension (57 [24%] vs 18 [7%]) and platelet count decreased (27 [11%] vs 15 [6%]). Deaths due to treatment-related adverse events occurred in four (2%) participants in the lenvatinib plus pembrolizumab group (n=1 each due to hepatic failure, gastrointestinal haemorrhage, myositis, and immune-mediated hepatitis) and one (<1%) in the placebo group (due to brain stem haemorrhage). INTERPRETATION: TACE plus lenvatinib plus pembrolizumab showed significant, clinically meaningful improvement in progression-free survival in patients with unresectable, non-metastatic hepatocellular carcinoma compared with TACE plus placebo. The numerical improvement in overall survival is encouraging, but longer follow-up is necessary. FUNDING: Merck Sharp & Dohme, a subsidiary of Merck & Co, Inc, Rahway, NJ, USA, and Eisai, Nutley, NJ, USA.

3. Use of continuous glucose monitoring and point-of-care glucose testing in hospitalized patients with diabetes mellitus in non-intensive care unit settings: A systematic review and meta-analysis of randomized controlled trials.

7.5Level IMeta-analysis
Diabetes research and clinical practice · 2025PMID: 39798897

Across six RCTs (n=979), adding CGM to standard POC glucose testing in non-critically ill hospitalized adults with diabetes increased time-in-range by 7.24 percentage points (95% CI +5.06, +9.42; P<0.00001).

Impact: Provides randomized evidence supporting CGM integration into inpatient diabetes care to improve glycemic control metrics.

Clinical Implications: Hospitals should consider protocols to integrate CGM alongside POC testing for non-ICU inpatients with diabetes to improve time-in-range, with attention to alarms, staffing, and data workflows.

Key Findings

  • Six RCTs (n=979) comparing CGM+POC vs POC alone in non-ICU hospitalized adults with diabetes were synthesized.
  • CGM addition improved time-in-range by +7.24% (95% CI +5.06 to +9.42; P<0.00001).

Methodological Strengths

  • Restriction to randomized controlled trials enhances internal validity.
  • Consistent direction of effect on a clinically relevant glycemic metric (time-in-range).

Limitations

  • Limited number of trials and potential heterogeneity across settings and protocols; incomplete reporting of other glycemic and safety endpoints in the abstract.
  • Generalizability to ICU settings, surgical populations, and resource-limited hospitals remains uncertain.

Future Directions: Head-to-head comparisons of CGM systems, cost-effectiveness analyses, and evaluation of hypoglycemia, alerts, workflow integration, and clinical outcomes (LOS, readmission).

The benefits of using continuous glucose monitoring (CGM) in hospitalized patients with diabetes remain uncertain. Point-of-care (POC) glucose testing is the standard of care in this setting. We compared the effect of adding CGM to POC testing versus POC testing alone on glycemic outcomes in this population. We have searched the Cochrane Library, Embase, and MEDLINE databases and relevant conferences up to May 2024. We have included six randomized controlled trials (n = 979 patients) comparing CGM plus POC testing to POC testing alone in non-pregnant, non-critically ill hospitalized adults with diabetes. The addition of CGM improved time in range (mean difference [MD] + 7.24 %; 95 % confidence interval [CI]: +5.06, +9.42; P < 0.00001; I