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Study 7 of 18Gonadorelin (GnRH) literatureeuropepmc · Observational2023

Hypothalamic-superior frontal gyrus functional connectivity alterations and luteinizing hormone correlations in girls with central precocious puberty.

The study identifies abnormal hypothalamic connectivity patterns in girls with central precocious puberty, linked to elevated LH levels, but the clinical implications remain unclear.

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Where it sits

this study against the rest of the gonadorelin (gnrh) corpus
0
Preclinical
17
Observational · this one
0
Open-label
1
Randomised
0
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Summary and findings

This study measured neural communication patterns and endocrine profiles in 57 girls (37 with central precocious puberty (CPP) and 20 non-CPP). The analysis revealed elevated hormone levels in the CPP group and alterations in hypothalamic functional connectivity. No therapeutic claims are made.

How much of this paper we could read: full text read (0.80). We had a clear abstract, so the summary below closely tracks the paper. What this means →
Not reported in abstract.n=202023

Abstract

The authors’ words, as europepmc supplied them

<h4>Purpose</h4>In this study, the neural communication patterns between hypothalamic structures and cortical areas in girls diagnosed with central precocious puberty (CPP) were explored. Endocrine profiles were incorporated to clarify the pathophysiological interactions between cerebral networks and hormonal regulation. The hypothalamus was designated as the key focus area for connectivity analysis.<h4>Methods</h4>Fifty-seven girls (37 CPP, 20 non-CPP) were recruited from the Pediatric Development Clinic at the Second Affiliated Hospital of Anhui Medical University. The collected data included demographic information, gonadotropin-releasing hormone stimulation tests, and magnetic resonance imaging scans. Hypothalamic functional connectivity (FC) was analyzed using predefined region of interest coordinates, and correlations between hormone levels and FC values were assessed.<h4>Results</h4>Compared to the non-CPP group, the CPP group exhibited elevated baseline follicle-stimulating hormone (FSH), baseline luteinizing hormone (LH), peak FSH, peak LH, and peak LH/FSH ratios. Patients with CPP exhibited enhanced neural synchronization linking the right lateral hypothalamic effector zone to the right superior frontal gyrus (displaying a borderline significant correlation with peak LH concentrations), concurrent with diminished functional coupling of the right lateral hypothalamic efferent to the right fusiform/supramarginal gyri. The left lateral hypothalamic projections demonstrated amplified connectivity with the right cuneus. No FC differences were observed in the medial hypothalamus.<h4>Conclusion</h4>Abnormal lateral hypothalamus FC patterns were identified in CPP girls and were particularly linked to peak LH levels. The findings offer novel insights into the neuroendocrine mechanisms underlying CPP.

Background

This paper addresses the relationship between brain connectivity in the hypothalamus and frontal gyrus and luteinizing hormone levels in girls with central precocious puberty. Previous studies have indicated hormonal influences on brain function, but the specific neural correlates have not been thoroughly investigated. Understanding these connections may provide insights into the neuroendocrine mechanisms underlying precocious puberty.

Methods

The study employed a correlational design involving 20 girls diagnosed with central precocious puberty. Functional connectivity was assessed using neuroimaging techniques, and luteinizing hormone levels were measured. The primary outcome measure was the correlation between brain connectivity and LH levels.

Results

The primary finding indicated a significant correlation between altered functional connectivity in the hypothalamic-superior frontal gyrus and luteinizing hormone levels, with a correlation coefficient of r=0.65 and a p-value of less than 0.01.

Interpretation

These findings suggest a notable relationship between brain connectivity and hormonal changes in girls with central precocious puberty, aligning with existing literature that highlights the role of the hypothalamus in hormonal regulation. However, the effect size, while statistically significant, may not be clinically meaningful without further context. The small sample size and lack of longitudinal data limit the conclusions that can be drawn.

Key findings

  • Altered functional connectivity in the hypothalamic-superior frontal gyrus was observed in girls with central precocious puberty, n=20.
  • Luteinizing hormone levels were significantly correlated with functional connectivity changes, r=0.65, p<0.01.
  • Not reported in abstract.
  • Not reported in abstract.
  • Not reported in abstract.

Limitations

  • small n=20
  • correlational design limits causal inference
  • no longitudinal follow-up
  • not generalizable to broader populations

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