1.Role of hyperbaric oxygen therapy in oral submucous fibrosis: a randomized comparative study from India
Rukmini SAH ; Vibha SINGH ; Uma Shanker PAL ; Shadab MOHAMMAD ; Vijay KUMAR ; Veerendra VERMA ; Amiya AGRAWAL ; Sandhya PANDEY ; Ranjana SINGH
Archives of Craniofacial Surgery 2026;27(1):10-17
Background:
To assess the effectiveness of hyperbaric oxygen therapy (HBOT) as an adjunct to standard treatment in early-stage oral submucous fibrosis (OSMF), focusing on mouth opening, burning sensation, pain, and systemic inflammation.
Methods:
A randomized comparative study was conducted on early-stage OSMF patients divided into two groups. Group 1 received HBOT along with intralesional triamcinolone, hyaluronidase, and oral antioxidants. Group 2 received only the standard intralesional therapy with antioxidants. Clinical parameters—interincisal distance, burning sensation, and pain—were recorded at baseline, first, and second followup. Serum C-reactive protein (CRP) levels were measured pre- and post-treatment. Statistical analysis included unpaired t-tests and chisquare tests.
Results:
Both groups improved clinically, but Group 1 showed significantly greater reductions in burning sensation (p= 0.020), pain, and CRP levels (p= 0.033). Although intergroup differences in mouth opening were not statistically significant, Group 1 showed greater improvement over time. Fibrotic band distribution remained unchanged in both groups. No complications were reported with HBOT.
Conclusion
HBOT provides enhanced symptomatic relief and anti-inflammatory effects in early-stage OSMF when used alongside conventional therapy. While it may not reverse fibrosis, its safety and noninvasive nature support its role in multimodal OSMF management.
2.Reproductive performance of genetically engineered mice housed in different housing systems.
Shikha YADAV ; Inderjeet YADAV ; Kunal PRATAP ; Pradeep Kumar TIWARI ; Vijay Pal SINGH
Laboratory Animal Research 2017;33(2):68-75
The genetically engineered mice require special husbandry care and are mainly housed in Individually Ventilated Cage (IVC) systems and Static Micro Isolator Cages (SMIC) to minimize the risk for spreading undesirable microorganisms. However, the static micro isolation cage housing like SMIC are being replaced with IVC systems in many facilities due to a number of benefits like a higher density housing in limited space, better protection from biohazards and allergens and decreased work load due to decreased frequency of cage changing required in this system. The purpose of this study was to examine the reproductive performance of genetically engineered mice housed in individually ventilated cages (IVC) and Static Micro Isolator Cages (SMIC). When the B6C3-Tg (APPswe, PSEN1dE9) 85Dbo/Mmjax transgenic mice were housed in these two housing systems, the number of litters per dam, number of pups born per dam and number of pups weaned per dam were found to be slightly higher in the IVC as compared to the SMIC but the difference was not significant (P<0.05). In case of Growth Associated Protein 43 (GAP-43) knockout mice, the number of litters born per dam and the number of pups born per dam were marginally higher in the IVC as compared to those housed in SMIC but the difference was not significant (P<0.05). Only the number of pups weaned per dam were found to be significantly higher as compared to those housed in the SMIC system at P<0.05.
Allergens
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Animals
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GAP-43 Protein
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Hazardous Substances
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Housing*
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Mice*
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Mice, Knockout
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Mice, Transgenic

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