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1.
International Eye Science ; (12): 1029-1032, 2023.
Artículo en Chino | WPRIM | ID: wpr-973799

RESUMEN

AIM: To investigate the postoperative ocular surface changes in acute attack eye and contralateral eye with primary angle-closure glaucoma(PACG)and cataract.METHODS: A total of 40 patients with monocular acute PACG combined with cataract who admitted to Zhengzhou Central Hospital Affiliated to Zhengzhou University from January 2021 to January 2022 were selected. Trabeculectomy combined with phacoemulsification and intraocular lens implantation was carried out in the acute attack eyes, and phacoemulsification and intraocular lens implantation were carried out in the contralateral eyes. The ocular surface disease index(OSDI)questionnaire, noninvasive first tear film break-up time(NifBUT), noninvasive average tear film break-up time(NiaBUT)and tear meniscus height(TMH)were assessed preoperatively and 1, 3 and 6mo postoperatively.RESULTS: The OSDI scores of the included patients at 1 and 3mo postoperatively(14.72±3.07, 11.39±2.24)were significantly higher than those preoperatively(9.68±1.98; all P<0.0083), and there was no significant difference between 6mo postoperatively(10.18±1.84)and preoperatively. NifBUT of the acute attack eyes at 1 and 3mo postoperatively was significantly lower than that preoperatively, and NiaBUT of the acute attack eyes at 1, 3 and 6mo postoperatively was significantly lower than that preoperatively(all P<0.0083). The NifBUT and NiaBUT of the contralateral eyes at 1mo postoperatively were significantly lower than those preoperatively(all P<0.0083), and there was no significant difference between 3 and 6mo postoperatively and preoperatively. There was no significant difference in TMH of the attack eyes and the contralateral eyes postoperatively and preoperatively(P>0.05).CONCLUSION: The stability of tear film after surgery of PACG and cataract is decreased. The acute attack eye needs 6mo or even longer to recover, while the contralateral eye needs roughly 3mo.

2.
Chinese Journal of Integrated Traditional and Western Medicine ; (12): 1367-1371, 2013.
Artículo en Chino | WPRIM | ID: wpr-231681

RESUMEN

<p><b>OBJECTIVE</b>To observe the effect of acupuncture method for benefiting qi, regulating blood, supplementing the root, and cultivating the essence (BQRBSRCE) on the p53 protein expression of mice with Alzheimer's disease (AD).</p><p><b>METHODS</b>SAMP8 mice were divided into the control group, the acupuncture group, and the non-acupoint group. The homologous SAMR1 control group was set up. Mice in the acupuncture group used acupuncture method for BQRBSRCE by needling at Tanzhong (RN17), Zhongwan (RN12), Qihai (RN6), and bilateral Xuehai (SP10), and bilateral Zusanli (ST36).Two fixed non-acupoints from bilateral ribs were needled in the non-acupoint group. The p53 protein expression in the cortex and hippocampus of mice was determined using Western blot. The pathological changes of neurons in the hippocampal CA1 region, the temporal lobe, and the occipital lobe were observed using HE staining. The expression of cortical p53-positive cells was detected by immunohistochemical assay.</p><p><b>RESULTS</b>The p53 protein was highly expressed in the cortex of SAMP8, which was significantly down-regulated after acupuncture, showing statistical difference when compared with the SAMP8 control group (P < 0.05), but with no statistical difference when compared with the SAMR1 control group (P > 0.05). Needling at non-acupoints had no obvious effect on the p53 protein expression. There was no statistical difference in the p53 protein expression of the hippocampus (P > 0.05).</p><p><b>CONCLUSION</b>Acupuncture method for BQRBSRCE could down-regulate the p53 protein expression in the brain of mice, improve the pathological state of brain cells, thus enhancing learning and memory capabilities of AD mice, improving their cognitive functions, with specificity of acupoints.</p>


Asunto(s)
Animales , Masculino , Ratones , Terapia por Acupuntura , Envejecimiento , Enfermedad de Alzheimer , Metabolismo , Terapéutica , Encéfalo , Metabolismo , Modelos Animales de Enfermedad , Proteína p53 Supresora de Tumor , Metabolismo
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