Impact of 900 MHz electromagnetic field exposure on main male reproductive hormone levels: a Rattus norvegicus model
Abstract
This work analyzes the effects of radiofrequency-electromagnetic field (RF-EMF) exposure on the reproductive system of male rats, assessed by measuring circulating levels of FSH, LH, inhibin B, activin B, prolactin, and testosterone. Twenty adult male Sprague-Dawley rats (180 ± 10 g) were exposed to 900 MHz RF-EMF in four equal separated groups. The duration of exposure was 1, 2, and 4 h/day over a period of 30 days and sham-exposed animals were kept under the same environmental conditions as the exposed group except with no RF-EMF exposure. Before the exposure, at 15 and 30 days of exposure, determination of the abovementioned hormone levels was performed using ELISA. At the end of the experiment, FSH and LH values of the long time exposure (LTE) group were significantly higher than the sham-exposed group (p < 0.05). Serum activin B and prolactin in the LTE group showed significant increase and inhibin B showed significant decrease than sham and short time exposed (STE) groups after 30 days RF-EMF exposure (p < 0.05). Also, a significant decrease in serum testosterone levels in the LTE group was found compared to short and moderate time exposed (MTE) groups after 30 days RF-EMF exposure (p < 0.05). Results suggest that reproductive hormone levels are disturbed as a result of RF-EMF exposure and it may possibly affect reproductive functions. However, testosterone and inhibin B concentrations as a fertility marker and spermatogenesis were decreased significantly.
AI evidence extraction
Main findings
After 30 days, the long time exposure group had significantly higher FSH and LH than sham (p<0.05). Activin B and prolactin increased and inhibin B decreased in the long time exposure group versus sham and short exposure groups (p<0.05). Testosterone decreased in the long time exposure group compared with short and moderate exposure groups after 30 days (p<0.05).
Outcomes measured
- FSH
- LH
- inhibin B
- activin B
- prolactin
- testosterone
Limitations
- Animal model; findings may not generalize to humans
- SAR/dosimetry not reported in abstract
- Exposure source/setup not described in abstract
- Small sample size (n=20)
Suggested hubs
-
male-fertility
(0.86) Assesses effects of 900 MHz RF-EMF on male reproductive hormone levels including testosterone and inhibin B.
View raw extracted JSON
{
"study_type": "animal",
"exposure": {
"band": "RF",
"source": null,
"frequency_mhz": 900,
"sar_wkg": null,
"duration": "1, 2, or 4 h/day for 30 days (sham control)"
},
"population": "Adult male Sprague-Dawley rats (Rattus norvegicus)",
"sample_size": 20,
"outcomes": [
"FSH",
"LH",
"inhibin B",
"activin B",
"prolactin",
"testosterone"
],
"main_findings": "After 30 days, the long time exposure group had significantly higher FSH and LH than sham (p<0.05). Activin B and prolactin increased and inhibin B decreased in the long time exposure group versus sham and short exposure groups (p<0.05). Testosterone decreased in the long time exposure group compared with short and moderate exposure groups after 30 days (p<0.05).",
"effect_direction": "harm",
"limitations": [
"Animal model; findings may not generalize to humans",
"SAR/dosimetry not reported in abstract",
"Exposure source/setup not described in abstract",
"Small sample size (n=20)"
],
"evidence_strength": "low",
"confidence": 0.7800000000000000266453525910037569701671600341796875,
"peer_reviewed_likely": "yes",
"keywords": [
"900 MHz",
"RF-EMF",
"radiofrequency",
"male reproductive hormones",
"FSH",
"LH",
"testosterone",
"inhibin B",
"activin B",
"prolactin",
"Sprague-Dawley rat",
"ELISA"
],
"suggested_hubs": [
{
"slug": "male-fertility",
"weight": 0.85999999999999998667732370449812151491641998291015625,
"reason": "Assesses effects of 900 MHz RF-EMF on male reproductive hormone levels including testosterone and inhibin B."
}
]
}
AI can be wrong. Always verify against the paper.
Comments
Log in to comment.
No comments yet.