Synergistic Effects of 2600 MHz Radiofrequency Exposure and Indomethacin on Oxidative Stress and Gastric Mucosal Injury in Rats
Abstract
Category: Toxicology Tags: radiofrequency, oxidative stress, gastric injury, indomethacin, NSAIDs, apoptosis, electromagnetic fields DOI: 10.1007/s44411-025-00382-4 URL: link.springer.com Overview With the widespread use of mobile technologies and NSAIDs, there is increasing concern about their combined impact on gastric health. This research investigates the synergistic effects of 2600 MHz radiofrequency field (RFF) exposure together with indomethacin (IND), a commonly used NSAID, in rats, focusing on oxidative stress and gastric mucosal injury. Materials and Methods - Forty male Wistar albino rats divided into five groups: control, sham, IND, RFF, and IND + RFF. - Exposure protocol: 2600 MHz RFF (1 hr/day, 5 days/week for 15 days) and/or IND (4 mg/kg, intragastric gavage). - Gastric tissues were assessed biochemically for oxidative markers (TOS, OSI, MDA, GSSG), antioxidant markers (TAC, SOD, CAT, GSH, GPx), histologically for tissue injury, and immunohistochemically for HSP70 and apoptosis. Findings - Both IND and RFF alone significantly increased oxidative stress markers and lowered antioxidant levels in gastric tissues (p < 0.001). - Combined IND + RFF exposure resulted in significantly greater gastric injury, including increased HSP70 expression and higher apoptotic cell counts compared to separate exposures (p < 0.001). Conclusion Co-exposure to 2600 MHz RFF and IND greatly intensified oxidative stress, apoptosis, and gastric mucosal injury in rats. The findings indicate a synergistic detrimental effect, where combined exposure causes more severe gastric tissue damage than either factor alone. This highlights a connection between electromagnetic fields and amplified health risks when combined with common pharmaceuticals.
AI evidence extraction
Main findings
In rats, 2600 MHz radiofrequency field exposure and indomethacin each significantly increased gastric oxidative stress markers and reduced antioxidant levels (p < 0.001). Combined indomethacin + radiofrequency exposure produced significantly greater gastric mucosal injury, higher HSP70 expression, and increased apoptotic cell counts compared with either exposure alone (p < 0.001).
Outcomes measured
- Oxidative stress markers (TOS, OSI, MDA, GSSG) in gastric tissue
- Antioxidant markers (TAC, SOD, CAT, GSH, GPx) in gastric tissue
- Histological gastric mucosal injury
- HSP70 expression (immunohistochemistry)
- Apoptotic cell counts (immunohistochemistry)
Limitations
- SAR (W/kg) not reported in the abstract
- Animal study; generalizability to humans not established in the abstract
- Exposure setup/dosimetry details beyond frequency and schedule not provided in the abstract
Suggested hubs
-
who-icnirp
(0.2) RF exposure health effects context; no explicit WHO/ICNIRP mention in abstract.
View raw extracted JSON
{
"study_type": "animal",
"exposure": {
"band": "RF",
"source": "other",
"frequency_mhz": 2600,
"sar_wkg": null,
"duration": "1 hr/day, 5 days/week for 15 days"
},
"population": "Male Wistar albino rats",
"sample_size": 40,
"outcomes": [
"Oxidative stress markers (TOS, OSI, MDA, GSSG) in gastric tissue",
"Antioxidant markers (TAC, SOD, CAT, GSH, GPx) in gastric tissue",
"Histological gastric mucosal injury",
"HSP70 expression (immunohistochemistry)",
"Apoptotic cell counts (immunohistochemistry)"
],
"main_findings": "In rats, 2600 MHz radiofrequency field exposure and indomethacin each significantly increased gastric oxidative stress markers and reduced antioxidant levels (p < 0.001). Combined indomethacin + radiofrequency exposure produced significantly greater gastric mucosal injury, higher HSP70 expression, and increased apoptotic cell counts compared with either exposure alone (p < 0.001).",
"effect_direction": "harm",
"limitations": [
"SAR (W/kg) not reported in the abstract",
"Animal study; generalizability to humans not established in the abstract",
"Exposure setup/dosimetry details beyond frequency and schedule not provided in the abstract"
],
"evidence_strength": "low",
"confidence": 0.7800000000000000266453525910037569701671600341796875,
"peer_reviewed_likely": "yes",
"keywords": [
"radiofrequency",
"2600 MHz",
"oxidative stress",
"gastric mucosal injury",
"indomethacin",
"NSAIDs",
"apoptosis",
"HSP70",
"rats"
],
"suggested_hubs": [
{
"slug": "who-icnirp",
"weight": 0.200000000000000011102230246251565404236316680908203125,
"reason": "RF exposure health effects context; no explicit WHO/ICNIRP mention in abstract."
}
]
}
AI can be wrong. Always verify against the paper.
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