1.Curcumin treatment recovery the decrease of protein phosphatase 2A subunit B induced by focal cerebral ischemia in Sprague-Dawley rats.
Fawad Ali SHAH ; Dong Ju PARK ; Sang Ah GIM ; Phil Ok KOH
Laboratory Animal Research 2015;31(3):134-138
Curcumin provides various biological effects through its anti-inflammatory and antioxidant properties. Moreover, curcumin exerts a neuroprotective effect against ischemic condition-induced brain damage. Protein phosphatase 2A (PP2A) is a ubiquitous serine and threonine phosphatase with various cell functions and broad substrate specificity. Especially PP2A subunit B plays an important role in nervous system. This study investigated whether curcumin regulates PP2A subunit B expression in focal cerebral ischemia. Cerebral ischemia was induced surgically by middle cerebral artery occlusion (MCAO). Adult male rats were injected with either vehicle or curcumin (50 mg/kg) 1 h after MCAO and cerebral cortex tissues were isolated 24 h after MCAO. A proteomics study, reverse transverse-PCR and Western blot analyses were performed to examine PP2A subunit B expression levels. We identified a reduction in PP2A subunit B expression in MCAO-operated animals using a proteomic approach. However, curcumin treatment prevented injury-induced reductions in PP2A subunit B levels. Reverse transverse-PCR and Western blot analyses confirmed that curcumin treatment attenuated the injury-induced reduction in PP2A subunit B levels. These findings can suggest that the possibility that curcumin maintains levels of PP2A subunit B in response to cerebral ischemia, which likely contributes to the neuroprotective function of curcumin in cerebral ischemic injury.
Adult
;
Animals
;
Blotting, Western
;
Brain
;
Brain Ischemia*
;
Cerebral Cortex
;
Curcumin*
;
Humans
;
Infarction, Middle Cerebral Artery
;
Male
;
Nervous System
;
Neuroprotective Agents
;
Phosphoprotein Phosphatases
;
Protein Phosphatase 2*
;
Proteomics
;
Rats
;
Rats, Sprague-Dawley*
;
Serine
;
Substrate Specificity
2.Curcumin attenuates the middle cerebral artery occlusion-induced reduction in gamma-enolase expression in an animal model.
Sang Ah GIM ; So Ra LEE ; Fawad Ali SHAH ; Phil Ok KOH
Laboratory Animal Research 2015;31(4):198-203
Curcumin exerts a protective effect in cerebral ischemia through its anti-oxidant and anti-inflammatory activities. gamma-enolase is a glycolytic enzyme expressed in neurons that is known to exerts a neuroprotective effect. We investigated whether curcumin regulates gamma-enolase expression in focal cerebral ischemic injury in rats. Middle cerebral artery occlusion (MCAO) was performed to induce focal cerebral ischemia. Adult male rats were injected intraperitoneally with either vehicle or curcumin (50 mg/kg) 1 h after MCAO and cerebral cortex tissues were isolated 24 h after MCAO. We found that MCAO-induced injury resulted in a reduction in gamma-enolase expression in vehicle-treated animals using a proteomics approach. However, this reduction was attenuated in animals with MCAO treated with curcumin. Reverse-transcription PCR and Western blot analyses also showed that curcumin treatment prevented the MCAO injury-induced reduction in gamma-enolase expression. The results of this study suggest that curcumin exerts its neuroprotective function in focal cerebral ischemia by regulating the expression of gamma-enolase.
Adult
;
Animals*
;
Blotting, Western
;
Brain Ischemia
;
Cerebral Cortex
;
Curcumin*
;
Humans
;
Infarction, Middle Cerebral Artery
;
Male
;
Middle Cerebral Artery*
;
Models, Animal*
;
Neurons
;
Neuroprotective Agents
;
Phosphopyruvate Hydratase*
;
Polymerase Chain Reaction
;
Proteomics
;
Rats
3.Ginkgo biloba extract (EGb 761) prevents the ischemic brain injury-induced decrease in parvalbumin expression.
Jin Hee SUNG ; Fawad Ali SHAH ; Eun Hae CHO ; Sang Ah GIM ; Seong Jun JEON ; Kyung Min KIM ; Young Min KIM ; Myeong Ok KIM ; Phil Ok KOH
Laboratory Animal Research 2012;28(2):77-82
Ginkgo biloba extract (EGb 761) exerts a neuroprotective effect against ischemic brain injury through an anti-apoptotic mechanism. Parvalbumin is a calcium buffering protein that plays an important role in modulating intracellular calcium concentration and regulating apoptotic cell death. The aim of this study was to investigate whether EGb 761 affects parvalbumin expression in cerebral ischemic injury. Adult male Sprague-Dawley rats were treated with vehicle or EGb 761 (100 mg/kg) prior to middle cerebral artery occlusion (MCAO) and cerebral cortex tissues were collected 24 h after MCAO. A proteomic approach revealed a reduction in parvalbumin expression in the vehicle-treated animals, whereas EGb 761 pretreatment attenuates the ischemic injury-induced decrease in parvalbumin expression. RT-PCR and Western blot analyses clearly confirmed the fact that EGb 761 prevents the injury-induced decrease in parvalbumin. Moreover, the results of immunohistochemical staining showed that the number of parvalbumin-positive cells was lower in vehicle-treated animals than in sham-operated animals, and EGb 761 averted this decrease. Thus, these results suggest that the maintenance of parvalbumin expression is associated with the neuroprotective function of EGb 761 against neuronal damage induced by ischemia.
Adult
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Animals
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Blotting, Western
;
Brain
;
Brain Injuries
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Calcium
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Cell Death
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Cerebral Cortex
;
Ginkgo biloba
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Humans
;
Infarction, Middle Cerebral Artery
;
Ischemia
;
Male
;
Neurons
;
Neuroprotective Agents
;
Plant Extracts
;
Rats, Sprague-Dawley
4.Epidemiological Study of Hereditary Hemolytic Anemia in the Korean Pediatric Population during 1997–2016: a Nationwide Retrospective Cohort Study
Ye Jee SHIM ; Hye Lim JUNG ; Hee Young SHIN ; Hyoung Jin KANG ; Jung Yoon CHOI ; Jeong Ok HAH ; Jae Min LEE ; Young Tak LIM ; Eu Jeen YANG ; Hee Jo BAEK ; Hyoung Soo CHOI ; Keon Hee YOO ; Jun Eun PARK ; Seongkoo KIM ; Ji Yoon KIM ; Eun Sil PARK ; Ho Joon IM ; Hee Won CHUEH ; Soon Ki KIM ; Jae Hee LEE ; Eun Sun YOO ; Hyeon Jin PARK ; Jun Ah LEE ; Meerim PARK ; Hyun Sik KANG ; Ji Kyoung PARK ; Na Hee LEE ; Sang Kyu PARK ; Young-Ho LEE ; Seong Wook LEE ; Eun Jin CHOI ; Seom Gim KONG
Journal of Korean Medical Science 2020;35(33):e279-
Background:
Hereditary hemolytic anemia (HHA) is a rare disease characterized by premature red blood cell (RBC) destruction due to intrinsic RBC defects. The RBC Disorder Working Party of the Korean Society of Hematology established and updated the standard operating procedure for making an accurate diagnosis of HHA since 2007. The aim of this study was to investigate a nationwide epidemiology of Korean HHA.
Methods:
We collected the data of a newly diagnosed pediatric HHA cohort (2007–2016) and compared this cohort's characteristics with those of a previously surveyed pediatric HHA cohort (1997–2006) in Korea. Each participant's information was retrospectively collected by a questionnaire survey.
Results:
A total of 369 children with HHA from 38 hospitals distributed in 16 of 17 districts of Korea were investigated. RBC membranopathies, hemoglobinopathies, RBC enzymopathies, and unknown etiologies accounted for 263 (71.3%), 59 (16.0%), 23 (6.2%), and 24 (6.5%) of the cases, respectively. Compared to the cohort from the previous decade, the proportions of hemoglobinopathies and RBC enzymopathies significantly increased (P < 0.001 and P = 0.008, respectively). Twenty-three of the 59 hemoglobinopathy patients had immigrant mothers, mostly from South-East Asia.
Conclusion
In Korea, thalassemia traits have increased over the past 10 years, reflecting both increased awareness of this disease and increased international marriages. The enhanced recognition of RBC enzymopathies is due to advances in diagnostic technique; however, 6.5% of HHA patients still do not have a clear diagnosis. It is necessary to improve accessibility of diagnosing HHA.