Investigation of Microvascular Involvement Through Nailfold Capillaroscopic Examination in Children with Familial

Fatih Kurt1, Belkız Uyar2, Muferet Erguven3

  • 1Department of Pediatrics, Duzce University, 81620 Duzce, Turkey.

PubMed

Insights

Familial Mediterranean fever (FMF) patients show microvascular changes like microhemorrhages and avascular areas in nailfold capillaries. Capillaroscopy reveals these secondary effects of inflammation, offering a safe diagnostic tool for FMF patients.

Area of Science:

  • Rheumatology
  • Autoinflammatory Diseases
  • Vascular Biology

Background:

  • Familial Mediterranean fever (FMF) is a chronic autoinflammatory disorder causing recurrent fever and polyserositis.
  • FMF is often linked to vasculitis, suggesting potential microcirculatory involvement.
  • Nailfold capillaroscopy is a non-invasive method to assess microcirculation.

Purpose of the Study:

  • To investigate the impact of FMF on microcirculation using nailfold capillaroscopy.
  • To identify specific capillaroscopic findings associated with FMF.
  • To correlate capillaroscopic findings with clinical and genetic factors in FMF.

Main Methods:

  • 32 FMF patients and 30 age-matched controls underwent nailfold capillaroscopy.
  • Demographic data, clinical symptoms (fever, pain), and medical history were collected.
  • MEFV gene mutations, inflammatory markers, and urine analysis were evaluated.

Main Results:

  • FMF patients exhibited significantly higher rates of microhemorrhages and avascular areas (p < 0.001).
  • Control subjects showed more hairpin-shaped capillaries and shortened loops (p = 0.001; p = 0.034).
  • No significant correlation was found between capillaroscopic findings and disease duration, kidney involvement, or MEFV mutation type.

Conclusions:

  • Capillaroscopy effectively demonstrates secondary microvascular abnormalities in FMF patients due to systemic inflammation.
  • This technique is a safe, cost-effective tool for assessing microvascular changes in FMF.
  • Further research may elucidate the precise mechanisms linking FMF and microcirculatory dysfunction.