BACKGROUND:This study investigated the neuroprotective and anti-inflammatory effects of the mGluR5-specific positive allosteric modulator VU0360172 on germinal matrix hemorrhage (GMH) in neonatal rats, as well as the pharmacological mechanism pathway that may underlie this anti-inflammatory effect.
METHODS:A GMH model was established by intracerebral injection of 0.3 U collagenase VII-S in 7-day-old Sprague-Dawley rats. Animals were randomly divided into the following seven groups: (1) Sham, (2) GMH, (3) GMH +VU0360712 (0.75 mg/kg), (4) GMH + VU0360712 (1.5 mg/kg), (5) GMH + VU0360712 (3.0 mg/kg), (6) GMH + VU0360172 (3.0 mg/kg) + MTEP (0.6 mg/kg), and (7) GMH + VU0360172 (3.0 mg/kg) + AS-605240 (1.8 mg/kg). Western blot analysis was conducted on samples collected at 0, 3, 12 and 24 h and 3 and 7 days post-surgery to observe the postoperative changes in metabotropic glutamate receptor 5 (mGluR5). The neuroprotective and anti-inflammatory effects of different doses of VU0360172 (0.75, 1.5, and 3.0 mg/kg) on GMH were evaluated through neurological behavior testing, brain water content, brain hemorrhage volume, hematoxylin and eosin staining, and ELISA. Finally, MTEP and AS-605240 as inhibitors, were administered to explore the inflammatory regulation and microglial polarization regulation of the mGluR5/PI3Kγ/PPARγ pathway.
RESULTS:The results demonstrated that mGluR5 levels started to decline as early as 3 hours after GMH and reached a minimum at 24 hours. Compared with the GMH group, treatment with VU0360172 reduced improved neurological deficits, brain edema, and hemorrhage, reduced tissue loss and inflammatory cell infiltration, and alleviated the inflammatory response, with the middle and high doses showing particularly notable effects (P < 0.05). However, both MTEP and AS-605240 reversed the regulatory effects of VU0360172 on the mGluR5/PI3Kγ/PPARγ pathway. Significant reversals in the expression of key inflammatory factors and microglial markers were observed in the MTEP and AS-605240 groups compared to the high-dose VU0360172 group (P < 0.05).
CONCLUSION:VU3060172 has a neuroprotective effect and anti-inflammatory properties on the GMH mouse model. Its anti-inflammatory mechanism may be achieved by activating the mGluR5/PI3Kγ/PPARγ pathway to regulate microglial polarization.