1.Multi-targeted therapeutic effects of Huangkui Capsules on insulin resistance and urine microalbumin in early diabetic kidney disease patients.
Wei WU ; Ying-Lu LIU ; Yi-Gang WAN ; Dong-Wei CAO ; Qi-Jun FANG ; Yue TU ; Bu-Hui LIU ; Wen-Wen WANG ; Mei-Zi WANG ; Hong-Yun YEE ; Can-Can YUAN ; Wei HU
China Journal of Chinese Materia Medica 2020;45(23):5797-5803
To observe the multi-targeted therapeutic effects of Huangkui Capsules(HKC)on insulin resistance(IR)and urine microalbumin in the early diabetic kidney disease(DKD)patients. The case data from the 83 DKD patients at G2 and A2 stage were collected respectively and analyzed retrospectively. According to the different treatment,all patients were divided into the control(A)group(40 cases)and the treated(B)group(43 cases). Among them,the A group patients were received "routine basic treatment";the B group patients were received "routine basic treatment+HKC". For the 2 group patients,firstly,the baseline parameters before receiving the treatment were compared respectively,and then,the changes of the total scores of traditional Chinese medicine(TCM) syndromes and the indicators of IR,urine protein,renal function,blood lipids and safety after receiving the treatment for 8 weeks were compared,respectively. Furthermore,for the all patients,the correlation analysis between IR and urine protein or IR and the total scores of TCM syndromes was carried out,respectively. The results showed that,for the B group patients received "routine basic treatment",their total scores of TCM syndromes,urine protein indicators including urine microalbumin(micro-UAlb) and urine microalbumin/urinary creatinine(UACR),IR indicators including fasting serum insulin(FIN)and homeostasis model assessment of insulin resistance(HOMA-IR)were significantly improved,respectively. For the all DKD patients,before and after the treatment,the main IR indicators(FIN and HOMA-IR)were positively correlated with urine protein indicators(micro-UAlb and UACR). The main IR indicators(FIN and HOMA-IR) were also positively correlated with the total scores of TCM syndromes. In addition,2 treatments had no significant effects on renal function,blood lipids and safety indicators in the all DKD patients. Overall, "routine basic treatment+HKC" can ameliorate IR and reduce urine microalbumin in the early DKD patients. Its therapeutic targets may be not only proteinuria,but also IR,which is the upstream risk factor of proteinuria.
Albuminuria
;
Capsules
;
Diabetes Mellitus
;
Diabetic Nephropathies
;
Drugs, Chinese Herbal
;
Humans
;
Insulin
;
Insulin Resistance
;
Kidney
;
Retrospective Studies
2.Exploring molecular mechanisms of fucoidan in improving human proximal renal tubular epithelial cells aging by targeting autophagy signaling pathways.
Qi-Jun FANG ; Jian-Jing LIU ; Yi-Gang WAN ; Bu-Hui LIU ; Yue TU ; Wei WU ; Ying-Lu LIU ; Wen-Wen WANG ; Mei-Zi WANG ; Hong-Yun YEE ; Can-Can YUAN ; Fee-Lan CHONG
China Journal of Chinese Materia Medica 2020;45(24):6003-6011
Fucoidan(FPS) is an effective component of the Chinese patent medicine named Haikun Shenxi, which treats schronic renal failure in clinics, and has the potential anti-aging effects. However, it is still unclear whether FPS can improve renal aging, especially the molecular mechanism of its anti-aging. The human proximal renal tubular epithelial cells(HK-2) in vitro were divided into normal group(N), D-gal model group(D), low dose of FPS group(L-FPS), high dose of FPS group(H-FPS) and vitamin E group(VE), and treated by the different measures, respectively. More specifically, the HK-2 cells in each group were separately treated by 1 mL of 1% fetal bovine serum(FBS) or D-galactose(D-gal, 75 mmol·L~(-1)) or D-gal(75 mmol·L~(-1))+FPS(25 μg·mL~(-1)) or D-gal(75 mmol·L~(-1))+FPS(50 μg·mL~(-1)) or D-gal(75 mmol·L~(-1))+VE(50 μg·mL~(-1)). After the treatment for 24 h, firstly, the effects of D-gal on senescence-associated β-galactosidase(SA-β-gal) staining characteristics and klotho, P53 and P21 protein expression le-vels, as well as adenosine monophosphate activated protein kinase(AMPK)-uncoordinated 51-like kinase 1(ULK1) signaling pathway activation in the HK-2 cells were detected, respectively. Secondly, the effects of FPS and VE on SA-β-gal staining characteristics and klotho, P53 and P21 protein expression levels in the HK-2 cells exposed to D-gal were investigated, respectively. Finally, the effects of FPS and VE on microtubule-associated protein 1 light chain 3(LC3) protein expression level and AMPK-ULK1 signaling pathway activation in the HK-2 cells exposed to D-gal were examined severally. The results indicated that, for the HK-2 cells, the dose of 75 mmol·L~(-1) D-gal could induce the changes of SA-β-gal staining characteristics and klotho, P53 and P21 protein expression levels. That is causing cells aging. FPS and VE could both ameliorate the changes of SA-β-gal staining characteristics and klotho, P53 and P21 protein expression levels in the HK-2 cells exposed to D-gal. That is anti-cells aging, here, the functions of FPS and VE are similar. D-gal could not only induce cell aging but also increase LC3Ⅱ, phosphorylated-AMPK(p-AMPK) and phosphorylated-ULK1(p-ULK1) protein expressions, and activate autophagy-related AMPK-ULK1 signaling pathway. FPS and VE could both improve the changes of LC3Ⅱ, p-AMPK and p-ULK1 protein expression levels in the HK-2 cells exposed to D-gal. That is inhibiting autophagy-related AMPK-ULK1 signaling pathway activation. On the whole, for the human proximal renal tubular epithelial cells aging models induced by D-gal, FPS similar to VE, can ameliorate renal cells aging by possibly inhibiting autophagy-related AMPK-ULK1 signaling pathway activation. This finding provides the preliminary pharmacologic evidences for FPS protecting against renal aging.
Aging
;
Autophagy
;
Epithelial Cells
;
Humans
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Polysaccharides
;
Signal Transduction
3.Molecular regulative mechanisms of NLRP3 inflammasome activation in diabetic nephropathy and interventional effects of Chinese herbal medicine.
Wen-Wen WANG ; Wen-Bei HAN ; Yi-Gang WAN ; Yue TU ; Bu-Hui LIU ; Ying-Lu LIU ; Wei WU ; Hong-Yun YEE ; Qi-Jun FANG ; Jian YAO
China Journal of Chinese Materia Medica 2020;45(1):7-13
The progression of renal damage in diabetic nephropathy(DN)is closely related to Nod-like receptor protein3(NLRP3)inflammasome activation. The characteristics of NLRP3 inflammasome activation include the changed expression and combination levels of NLRP3, apoptosis-associated speck-like protein(ASC)and pro-caspase-1, the increased expression levels of caspase-1, interleukin(IL)-1β and IL-18 and the excessive release levels of the relative inflammatory mediators. Its molecular regulative mechanisms involve the activation of multiple signaling pathways including reactive oxygen species(ROS)/thioredoxin-interacting protein(TXNIP)pathway, nuclear factor(NF)-κB pathway, nuclear factor erythroid-related factor 2(Nrf2)pathway, long non-coding RNA(lncRNA)pathway and mitogen-activated protein kinases(MAPKs)pathway. In addition, more importantly, never in mitosis aspergillus-related kinase 7(Nek7), as a kinase regulator, could target-combine with NLRP3 at upstream to activate NLRP3 inflammasome. Some extracts of Chinese herbal medicines(CHMs)such as quercetin, curcumin, cepharanthine, piperine and salidroside, as well as Chinese herbal compound prescriptions such as Wumei Pills both could treat NLRP3 inflammasome to ameliorate inflammatory renal damage in DN. Therefore, accurately clarifying the targets of anti-inflammatory CHMs and Chinese herbal compound prescriptions delaying DN progression by targeting the molecular regulative mechanisms of NLRP3 inflammasome activation will be one of the development directions in the future.
Caspase 1/immunology*
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Diabetes Mellitus/drug therapy*
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Diabetic Nephropathies/immunology*
;
Drugs, Chinese Herbal/therapeutic use*
;
Humans
;
Inflammasomes/immunology*
;
Interleukin-18/immunology*
;
Interleukin-1beta/immunology*
;
NIMA-Related Kinases
;
NLR Family, Pyrin Domain-Containing 3 Protein/immunology*
4.Molecular mechanisms of insulin resistance and interventional effects of Chinese herbal medicine.
Hong-Yun YEE ; Jing-Jing YANG ; Yi-Gang WAN ; Fee-Lan CHONG ; Wei WU ; Yan LONG ; Wen-Bei HAN ; Ying-Lu LIU ; Yue TU ; Jian YAO
China Journal of Chinese Materia Medica 2019;44(7):1289-1294
It is considered that insulin resistance(IR)and its signaling pathway disorder are one of pathogenesis that causes insulin target-organs/issues lesions and their slow progression. The clinical diagnosis index of IR is the homeostatic model of insulin resistance(HOMA-IR)based on fasting blood-glucose and fasting serum insulin. Furthermore, the emerging IR biomarkers including adiponectin may be the references for clinical diagnosis. The influence factors of IR are obesity, chronic microinflammation and a lack of exercise. The major signaling pathways of IR include insulin receptor substrate 1(IRS1)/phosphatidylinositiol-3-kinase(PI3 K)/serine-threonine kinase(Akt)pathway, mitogen-activated protein kinase(MAPK)pathway and Smad3 pathway. In clinics, insulin sensibility and IR could be increased and improved via promoting insulin secretion and enhancing insulin signaling activation. At present, insulin sensitizers treating IR not only have the classic thiazolidinediones and its ramifications but also have the newly discovered metformin and vitamin D. In addition, it is reported that some extracts from single Chinese herbal medicine(CHM)and Chinese herbal compound prescription such as total flavone from the flowers of Abelmoschl manihot, berberine, astragalus polysaccharides and Huang-qi decoction also have the beneficial effects in ameliorating IR. In the field of chronic kidney disease, targeting a common insulin target-organs/issues lesion, the early renal damage in diabetic mellitus, the intervention studies regarding to regulating podocyte IR signaling pathways by CHM will be one of the significant directions in the future.
Drugs, Chinese Herbal
;
therapeutic use
;
Humans
;
Insulin
;
Insulin Resistance
;
Signal Transduction
5.Molecular mechanisms of non-coding RNA regulating autophagy and interventional effects of Chinese herbal medicine.
Yue TU ; Yi-Gang WAN ; Yi-Huang GU ; Bu-Hui LIU ; Ying-Lu LIU ; Wen-Wen WANG ; Qi-Jun FANG ; Hong-Yun YEE ; Wei WU ; Zi-Yue WAN
China Journal of Chinese Materia Medica 2019;44(21):4545-4551
Long non-coding RNAs(lncRNAs) and microRNAs(miRNAs),as members of the non-coding RNA family,play important roles in upstream processes that regulate autophagy in mammalian cells. LncRNA and miRNA participate in various phases of the process of autophagy,including initiation,vesicle nucleation,autophagosome maturation and autophagosome fusion. Some non-coding RNAs exert bidirectional regulatory functions in the process of autophagy,include the maternally expressed gene 3(MEG3),H19 and miR-21,whereas others either inhibit autophagy(including GAS5,miR-34 a and miR-30 a) or promote autophagy(including MALAT1,miR-152 and miR-24). The regulation of autophagy by non-coding RNAs has characteristics of conditionality,diversity and complexity. In recent years,researchers at home and abroad have constantly found that some extracts from the individual Chinese herbal medicine(CHM) such as ampelopsin,salvianolic acid B and paeonol,as well as the Chinese herbal compound named Eight Ingredients Decoction,can regulate autophagy by interacting with non-coding RNA in vitro and in vivo. The latest studies have shown that plant-derived small non-coding RNAs(sncRNAs) as one of the active ingredients of CHMs can directly enter the bloodstream and internal organs to regulate gene expressions in humans. In addition,it has been reported that rhein,hyperoside and mycelium of Cordyceps sinensis all can modulate autophagy in renal tubular epithelial cell via regulating the autophagy-related signaling pathways in vivo and in vitro to reduce renal damage and aging,which is likely mediated by the miR-34 a pathway. In summary,the understanding of molecular mechanisms underlying the regulation of autophagy by non-coding RNAs(such as lncRNAs and miRNAs) is essential and required to develop new strategies for the treatments and managements of tumors,immune diseases,metabolic diseases,neurodegenerative diseases and other common diseases and decipher pharmacologic actions of CHMs.
Animals
;
Autophagy
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Drugs, Chinese Herbal
;
Humans
;
MicroRNAs
;
RNA, Long Noncoding
;
Signal Transduction
6.Triptolide inhibits NLRP3 inflammasome activation and ameliorates podocyte epithelial-mesenchymal transition induced by high glucose.
Wei WU ; Bu-Hui LIU ; Yi-Gang WAN ; Wei SUN ; Ying-Lu LIU ; Wen-Wen WANG ; Qi-Jun FANG ; Yue TU ; Hong-Yun YEE ; Can-Can YUAN ; Zi-Yue WAN
China Journal of Chinese Materia Medica 2019;44(24):5457-5464
The aim of this paper was to explore the effects of triptolide( TP),the effective component of Tripterygium wilfordii on improving podocyte epithelial-mesenchymal transition( EMT) induced by high glucose( HG),based on the regulative mechanisms of Nod-like receptor protein 3( NLRP 3) inflammasome in the kidney of diabetic kidney disease( DKD). The immortalized podocytes of mice in vitro were divided into the normal( N) group,the HG( HG) group,the low dose of TP( L-TP) group,the high dose of TP( HTP) group and the mannitol( MNT) group,and treated by the different measures,respectively. More specifically,the podocytes in each group were separately treated by D-glucose( DG,5 mmol·L~(-1)) or HG( 30 mmol·L~(-1)) or HG( 30 mmol·L~(-1)) + TP( 5 μg·L~(-1))or HG( 30 mmol·L~(-1)) + TP( 10 μg·L~(-1)) or DG( 5 mmol·L~(-1)) + MNT( 24. 5 mmol·L~(-1)). After the treatment of HG or TP at 24,48 and 72 h,firstly,the activation of podocyte proliferation was investigated. Secondly,the protein expression levels of the epithelial markers in podocytes such as nephrin and ZO-1,the mesenchymal markers such as collagen Ⅰ and fibronectin( FN) were detected,respectively. Finally,the protein expression levels of NLRP3 and apoptosis-associated speck-like protein( ASC) as the key signaling molecules of NLRP3 inflammasome activation,as well as the downstream effector proteins including caspase-1,interleutin( IL)-1β and IL-18 were examined,severally. The results indicated that,for the cultured podocytes in vitro,HG could cause the low protein expression levels of nephrin and ZO-1,induce the high protein expression levels of collagen Ⅰ and FN and trigger podocyte EMT. Also HG could cause the high protein expression levels of NLRP3,ASC,caspase-1,IL-1β and IL-18 and induce NLRP3 inflammasome activation. On the other hand,the co-treatment of TP( L-TP or H-TP) and HG for podocytes could recover the protein expression levels of nephrin and ZO-1,inhibit the protein expression levels of collagen Ⅰ and FN and ameliorate podocyte EMT. Also the co-treatment of TP( L-TP or H-TP) and HG could down-regulate the protein expression levels of NLRP3 and ASC,inhibit NLRP3 inflammasome activation and reduce the protein expression levels of the downstream effector molecules including caspase-1,IL-1β and IL-18. On the whole,HG could activate NLRP3 inflammasome and induce podocyte EMT in vitro. TP at the appropriate dose range could inhibit NLRP3 inflammasome activation and ameliorate podocyte EMT,which may be one of the critical molecular mechanisms of TP protecting againstpodocyte inflammatory injury in DKD.
Animals
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Caspase 1/metabolism*
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Cells, Cultured
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Diabetic Nephropathies
;
Diterpenes/pharmacology*
;
Epithelial-Mesenchymal Transition
;
Epoxy Compounds/pharmacology*
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Glucose
;
Inflammasomes/metabolism*
;
Interleukin-18/metabolism*
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Interleukin-1beta/metabolism*
;
Mice
;
NLR Family, Pyrin Domain-Containing 3 Protein/metabolism*
;
Phenanthrenes/pharmacology*
;
Podocytes/drug effects*
7.Temozolomide Salvage Chemotherapy for Recurrent Anaplastic Oligodendroglioma and Oligo-Astrocytoma.
Ho Shin GWAK ; Gi Taek YEE ; Chul Kee PARK ; Jin Wook KIM ; Yong Kil HONG ; Seok Gu KANG ; Jeong Hoon KIM ; Ho Jun SEOL ; Tae Young JUNG ; Jong Hee CHANG ; Heon YOO ; Jeong Hyun HWANG ; Se Hyuk KIM ; Bong Jin PARK ; Sun Chul HWANG ; Min Su KIM ; Seon Hwan KIM ; Eun Young KIM ; Ealmaan KIM ; Hae Yu KIM ; Young Cho KO ; Hwan Jung YUN ; Ji Hye YOUN ; Juyoung KIM ; Byeongil LEE ; Seung Hoon LEE
Journal of Korean Neurosurgical Society 2013;54(6):489-495
OBJECTIVE: To evaluate the efficacy of temozolomide (TMZ) chemotherapy for recurrent anaplastic oligodendroglioma (AO) and anaplastic oligoastrocytoma (AOA). METHODS: A multi-center retrospective trial enrolled seventy-two patients with histologically proven AO/AOA who underwent TMZ chemotherapy for their recurrent tumors from 2006 to 2010. TMZ was administered orally (150 to 200 mg/m2/day) for 5 days per 28 days until unacceptable toxicity occurred or tumor progression was observed. RESULTS: TMZ chemotherapy cycles administered was median 5.3 (range, 1-41). The objective response rate was 24% including 8 cases (11%) of complete response and another 23 patients (32%) were remained as stable disease. Severe side effects (> or =grade 3) occurred only in 9 patients (13%). Progression-free survival (PFS) of all patients was a median 8.0 months (95% confidence interval, 6.0-10.0). The time to recurrence of a year or after was a favorable prognostic factor for PFS (p<0.05). Overall survival (OS) was apparently differed by the patient's histology, as AOA patients survived a median OS of 18.0 months while AO patients did not reach median OS at median follow-up of 11.5 months (range 2.7-65 months). Good performance status of Eastern Cooperative Oncology Group 0 and 1 showed prolonged OS (p<0.01). CONCLUSION: For recurrent AO/AOA after surgery followed by radiation therapy, TMZ could be recommended as a salvage therapy at the estimated efficacy equal to procarbazine, lomustine, and vincristine (PCV) chemotherapy at first relapse. For patients previously treated with PCV, TMZ is a favorable therapeutic option as 2nd line salvage chemotherapy with an acceptable toxicity rate.
Disease-Free Survival
;
Drug Therapy*
;
Follow-Up Studies
;
Humans
;
Lomustine
;
Oligodendroglioma*
;
Procarbazine
;
Recurrence
;
Retrospective Studies
;
Salvage Therapy
;
Vincristine
8.Does erroneous differentiation of tendon-derived stem cells contribute to the pathogenesis of calcifying tendinopathy?
Yun-feng RUI ; Pauline Po-yee LUI ; Lai-shan CHAN ; Kai-ming CHAN ; Sai-chuen FU ; Gang LI
Chinese Medical Journal 2011;124(4):606-610
Calcifying tendinopathy is a tendon disorder with calcium deposits in the mid-substance presented with chronic activity-related pain, tenderness, local edema and various degrees of incapacitation. Most of current treatments are neither effective nor evidence-based because its underlying pathogenesis is poorly understood and treatment is usually symptomatic. Understanding the pathogenesis of calcifying tendinopathy is essential for its effective evidence-based management. One of the key histopathological features of calcifying tendinopathy is the presence of chondrocyte phenotype which surrounds the calcific deposits, suggesting that the formation of calcific deposits was cell-mediated. Although the origin of cells participating in the formation of chondrocyte phenotype and ossification is still unknown, many evidences have suggested that erroneous tendon cell differentiation is involved in the process. Recent studies have shown the presence of stem cells with self-renewal and multi-differentiation potential in human, horse, mouse and rat tendon tissues. We hypothesized that the erroneous differentiation of tendon-derived stem cells (TDSCs) to chondrocytes or osteoblasts leads to chondrometaplasia and ossification and hence weaker tendon, failed healing and pain, in calcifying tendinopathy. We present a hypothetical model on the pathogenesis and evidences to support this hypothesis. Understanding the key role of TDSCs in the pathogenesis of calcifying tendinopathy and the mechanisms contributing to their erroneous differentiation would provide new opportunities for the management of calcifying tendinopathy. The re-direction of the differentiation of resident TDSCs to tenogenic or supplementation of MSCs programmed for tenogenic differentiation may be enticing targets for the management of calcifying tendinopathy in the future.
Animals
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Cell Differentiation
;
physiology
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Humans
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Mice
;
Rats
;
Stem Cells
;
pathology
;
Tendinopathy
;
etiology
;
pathology
;
Tendons
;
pathology
9.Prevalence and Genotype Distribution of Cervical Human Papillomavirus DNA in Korean Women: A Multicenter Study.
Sung Ran HONG ; In Sun KIM ; Dong Won KIM ; Mi Jin KIM ; Ae Ree KIM ; Young Ok KIM ; Hye Sun KIM ; Seo Hee RHA ; Gyeong Sin PARK ; Yong Koo PARK ; Yong Wook PARK ; Ho Sung PARK ; Kwang Sun SUH ; Jin Hee SOHN ; Mi Kyung SHIN ; Hoon Kyu OH ; Ki Jung YUN ; Hye Kyoung YOON ; Shi Nae LEE ; Ah Won LEE ; Hyo Jin LEE ; Hyun Yee CHO ; Chan CHOI ; Woon Won JUNG
Korean Journal of Pathology 2009;43(4):342-350
Background: DNA prevalence and type distribution of human papillomavirus (HPV) varies geographically. We investigated HPV prevalence and type distribution in Korean women using the MyHPV DNA chip testing. Methods: A total of 2,368 women from five regions of the country underwent Pap smear examination and MyHPV chip testing. Results: Overall HPV positivity was 15.8% and 78.4% in women with normal and abnormal cytology, respectively. High-risk HPV infection was strongly correlated with cytological atypia. In women with abnormal cytology, the five most common HPV types were 16, 58, 18, 52, and 56/53, and HPV16 was significantly the most common type in most geographical regions. After HPV16, HPV58, and 52 were the next most frequently detected types. Women with normal cytology, in contrast, showed heterogeneity in HPV type distribution. High-grade intraepithelial lesions infected with HPV16, 18, 31 or 45 are more likely to progress to carcinoma. Conclusions: The HPV chip test can provide useful data regarding HPV positivity and type. The most common HPV type in Korean women with abnormal cytology is HPV16, with HPV58 and 52 being frequently present. Our data may have important implications for vaccination programs and the development of cervical screening.
Cervix Uteri
;
DNA
;
Female
;
Genotype
;
Humans
;
Mass Screening
;
Oligonucleotide Array Sequence Analysis
;
Population Characteristics
;
Prevalence
;
Republic of Korea
;
Vaccination
;
Vaginal Smears
10.Influence of Vasoactive Substances on the Regulation of Cardiac ATP-Sensitive Potassium Channel Activity.
Jae Ha KIM ; Jeong Min JU ; Ling Hua PIAO ; Yun Yee KIM ; Han Seong JEONG ; Hyung Wook PARK ; Dae Ho JEONG ; Sang Rok LEE ; Nam Sik YOON ; Kye Hun KIM ; Young Joon HONG ; Ju Han KIM ; Weon KIM ; Young Keun AHN ; Myung Ho JEONG ; Jeong Gwan CHO ; Jong Chun PARK ; Jung Chaee KANG
Korean Circulation Journal 2006;36(7):516-525
BACKGROUND AND OBJECTIVES: It has been known that various vasoactive agents are involved in the regulation of cardiac function through the modification of the K+ channel activities, including the ATP-sensitive K+ channel (KATP). We examined the effects of several vasoactive agents on the cardiac KATP currents in isolated cardiac myocytes. MATERIALS AND METHODS: Ventricular myocytes were isolated from the hearts of ICR mice by enzymatic digestion. The channel currents were recorded by the excised inside-out and cell-attached patch clamp configurations. RESULTS: In the excised inside-out patches, bradykinin (BRK; 1-10 micrometer) and prostaglandin I2 (PGI; 10-50 micrometer) did not affect the channel activities, whereas the vasodilators increased the attenuated channel activities in the presence of 100 micrometer ATP. BRK and PGI in parallel shifted the dose-response curves of ATP (1-1,000 micrometer), and this inhibited the KATP currents to the right. Endothelin (ET-1; 0.1-1 nM) and leukotriene D4 (LTD; 3-10 micrometer) decreased the channel activities immediately after making the inside-out patches. However, the vasoconstrictors did not affect the attenuated channel activities by ATP. In the cell-attached patches, both BRK and PGI increased the channel activities and these effects were markedly attenuated by glibenclamide (50 micrometer). ET-1 and LTD did not affect the baseline channel activities in the cell-attached patches, but they markedly attenuated the dinitrophenol-induced activities. CONCLUSION: It was inferred that certain vasoactive substances are involved in the regulation of cardiac KATP channel activities, and that bradykinin and PGI2 enhance the channel activities, and ET-1 and LTD4 inhibit the channel activities.
Adenosine Triphosphate
;
Animals
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Bradykinin
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Digestion
;
Endothelins
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Epoprostenol
;
Glyburide
;
Heart
;
Leukotriene D4
;
Mice
;
Mice, Inbred ICR
;
Muscle Cells
;
Myocytes, Cardiac
;
Potassium Channels*
;
Potassium*
;
Vasoconstrictor Agents
;
Vasodilator Agents

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