Prolactin levels in cerebrospinal fluid of patients with infantile spasms

Güzide Burça Aydln1, Gülşen Köse, Aydan Değerliyurt

  • 1SSK Ankara Children's Hospital, Department of Pediatrics, Ankara, Turkey.

Pediatric Neurology
|November 19, 2002
PubMed

Insights

Elevated prolactin in cerebrospinal fluid is linked to infantile spasms, a serious infant epilepsy. Levels were higher before and after treatment, suggesting a connection to neuronal injury in these epilepsy cases.

Area of Science:

  • Neurology
  • Pediatric Epilepsy
  • Endocrinology

Background:

  • Infantile spasms are an age-related epileptic syndrome in infants.
  • The exact cause and development of infantile spasms remain unclear.
  • Prolactin has been implicated in epileptic seizures.

Purpose of the Study:

  • To investigate the potential role of prolactin secretion in infantile spasms.
  • To examine cerebrospinal fluid prolactin levels in patients with infantile spasms.

Main Methods:

  • Analyzed cerebrospinal fluid prolactin levels in 15 infants with infantile spasms.
  • Compared prolactin levels before and after treatment.
  • Matched patients with age- and sex-matched control subjects.

Main Results:

  • Mean cerebrospinal fluid prolactin levels were significantly higher in infantile spasms patients compared to controls (3.25 +/- 1.48 ng/mL vs. 2.38 +/- 0.89 ng/mL, P < 0.001).
  • Prolactin levels increased significantly after treatment (4.69 +/- 1.47 ng/mL vs. 3.25 +/- 1.48 ng/mL, P = 0.037).

Conclusions:

  • Elevated cerebrospinal fluid prolactin levels before and after treatment suggest a relationship between prolactin and neuronal injury in infantile spasms.
  • Findings indicate prolactin may be a biomarker for neuronal damage in this condition.

Related Concept Videos

Alterations in Muscle Tone lll01:11

Alterations in Muscle Tone lll

Rigidity and myotonia are distinct abnormalities of muscle tone that affect resistance and relaxation during movement. Although both involve altered muscle contraction, they arise from different neurological and muscular mechanisms.CharacteristicsRigidity is characterized by uniform resistance to passive movement across the entire range, independent of speed, affecting flexors and extensors equally. It may appear as lead-pipe rigidity (smooth, constant resistance) or cogwheel rigidity...
Local Anesthetics: Clinical Application as Spinal Anesthesia01:11

Local Anesthetics: Clinical Application as Spinal Anesthesia

Spinal anesthetics are given during lower abdomen and limb surgeries to block sensory and motor neurons. They are administered in the mid to low lumbar regions, primarily acting on the cauda equina's nerve roots. The blockade level depends on the local anesthetic (LA) concentration. Usually, low LA concentrations are sufficient to block sensory fibers, while only high LA concentrations block motor fibers. Other factors like injection volume and speed, the patient's posture, and the drug...
Botulism01:22

Botulism

Botulism is a life-threatening neuroparalytic condition caused by botulinum neurotoxin, which is produced by the bacterium Clostridium botulinum, a Gram-positive, spore-forming, obligate anaerobe.In adults, the toxin enters the body in different ways: in foodborne botulism, the preformed toxin is absorbed in the intestine. In wound botulism, spores grow in injured tissue and release the toxin into the blood. Infant botulism differs mechanistically from adult forms. In infants, botulism commonly...