Curcumin alleviates inflammatory effects of ketamine anesthesia in postnatal rats
Volume 15, Issue 9, September 2024, Pages 473-480
Soroush Afshar Ghahremani, Abbas Raisi, Sohrab Minaei Beirami, Houman Kahroba, Mahnaz Mardani, Omid Dezfoulian, Vahideh Tarhriz
Abstract Curcumin has been employed in traditional medicine for over a millennium to treat various ailments, and its global use is now widespread. Chinese medicine relies heavily on curcumin as a primary element and uses it to cure infectious diseases, skin disorders, depression, and stress. It has cardioprotective, neuroprotective, and anti-diabetic properties, as well as pharmacological effects on disorders like type II diabetes, atherosclerosis, and human immunodeficiency virus replication. The anti-cancer activity of curcumin has been studied extensively with notable improvements in gastrointestinal, melanoma, urogenital, breast, and lung malignancies. We investigated the anti-inflammatory effects of curcumin on expression of tumor necrosis factor (TNF)-α, c-Fos, and interleukin (IL)-6 genes in brain and liver tissue owing to the effects of ketamine anesthesia on postnatal rats. The thalamic and hepatic tissues were collected without anesthesia, immediately after anesthesia, and 4 and 12 hr after anesthesia in control and curcumin treated postnatal rats. The results showed that glucose, triglyceride, high- and low-density lipoprotein levels were lowered with curcumin treatment. We also found that ketamine increased c-Fos and inflammatory cytokines like TNF-α and IL-6, all of which contribute to inflammation. Brain and liver immunohistochemistry studies confirmed the real-time polymerase chain reaction findings. Curcumin injections alone may be effective in decreasing ketamine-induced inflammation in both brain and liver tissues.
Ultrasonographic examination of the normal caprine neonatal brain
Volume 11, Issue 1, Winter 2020, Pages 1-5
Elham Hassan, Ahmed Abdelgalil, Faisal Torad
Abstract Ultrasonography is a safe, rapid, and non-invasive diagnostic tool that has been previously used for imaging infants and canine neonatal brains. The purpose of the present study was to describe the ultrasonographic appearance of the brain in clinically normal caprine neonates. Ultrasonographic examination was done on 12 day-old goat kids, transverse and sagittal transcranial scans were obtained through the frontal bone. Three image planes were recorded through transverse scans including plane I (level of the caudate nucleus), plane II (level of the rostral diencephalon) and plane III (level of the caudal diencephalon). Parallel post mortem examinations were done for two kids that died a day following examination due to accidental trauma by the dam. Reliable and repeatable ultrasonographic images of the goat kid’s brain were described based on the gross post mortem findings. The head of the caudate nucleus was taken as an anatomical landmark in the plane I where it appeared as a curved hyperechoic structure. In plane II, the longitudinal fissure with its characteristic umbrella-like structure was taken as a landmark, while in plane III, the laterally located hyperechoic hippocampus was taken as a landmark. Normal ultrasonographic examination of the caprine neonatal brain represented the basis for diagnosing congenital brain lesions as well as intracranial hemorrhage.
Histopathological evaluation of the role of negative electrical charge on renal ischemia/reperfusion injuries on brain and heart tissues in rat
Volume 11, Issue 1, Winter 2020, Pages 15-20
Sara Dehyadegari, Mohammad Mehdi Oloumi, Shahrzad Azizi
Abstract This study was performed to evaluate the role of electroacupuncture on kidney 1 (Ki1) acupoint to prevent the heart and brain injury following ischemia/reperfusion of both kidneys. 24 Sprague Dawley rats were randomly assigned into four equal groups. In the treatment 1 group, following anesthesia, acupuncture needles were inserted on Ki1 on the palm of both hindlimbs and connected to electroacupuncture unit for a 3.00 Hz direct current, 1 hr before surgery until the end of surgery. In treatment two groups, the electroacupuncture was also performed 48 and 24 hr before the operation, with the same protocol as treatment 1. Control 1 and control 2 groups had the same procedures like the treatment ones, except for acupuncture. Immediately after reperfusion, the samples of brains and hearts were taken and prepared for microscopic examination. Histopathological study of the heart in the control and treatment groups showed the breakage of myofibrils, hyaline necrosis, edema and disorganization of myocytes. The severity of cardiac lesions was decreased in both treatment groups in comparison with the controls. Brain in control and treatment groups showed ischemic necrosis, disorganization of the neurons in the hippocampus, and edema. The severity of lesions was reduced in the treatment groups and showed a significant difference between the control and treatment 1. It could be concluded that electroacupuncture on the Ki1 point could reduce the severity of damages induced by renal ischemia/reperfusion in the remote organs of the heart and brain.
Central Effect of Exogenous Histamine on Pain Induced by Sub-Plantar Injection of Formalin in Rabbits
Volume 1, Issue 1, June 2010, Pages 1-6
Esmaeal Tamaddonfard
Abstract In the present study, the effects of intracerebroventricular (ICV) administration of normal saline (control), histamine, mepyramine (a histamine H1-receptor antagonist) and ranitidine (a histamine H2-receptor antagonist) were investigated on the formalin-induced pain in rabbits. Subcutaneous (SC) injection of a formalin (100 μl, 5%) solution into the ventral surface of the right hind paw was performed, and the time durations spent licking and biting the injected paw were measured in 10 min blocks for 1 h. The SC injection of formalin produced a short-lasting (10 min) pain response. The ICV injection of histamine at doses of 25, 50 and 100 μg significantly (P < 0.05) decreased the time duration spent licking and biting the injected paw. Mepyramine and ranitidine, used alone produced no effects. The ICV pretreatments with mepyramine and ranitidine at the same dose of 200 μg significantly (P < 0.05) prevented histamine (100 μg, ICV)-induced antinociception. These results indicate that activation of brain histamine with ICV injection of exogenous histamine produces antinociception. Central histamine H1 and H2 receptors may be involved in the centrally administered histamine-induced antinociception in the formalin-induced pain in rabbits.
