Search Results - "Chae, Mee Ree"

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  1. 1

    Perspectives on Potential Fatty Acid Modulations of Motility Associated Human Sperm Ion Channels by Cooray, Akila, Kim, Ji Hyun, Chae, Mee Ree, Lee, Sungwon, Lee, Kyu Pil

    “…Human spermatozoan ion channels are specifically distributed in the spermatozoan membrane, contribute to sperm motility, and are associated with male…”
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  2. 2

    The agonistic action of URO-K10 on Kv7.4 and 7.5 channels is attenuated by co-expression of KCNE4 ancillary subunit by Lee, Jung Eun, Park, Christine Haewon, Kang, Hana, Ko, Juyeon, Cho, Suhan, Woo, JooHan, Chae, Mee Ree, Lee, Sung Won, Kim, Sung Joon, Kim, Jinsung, So, Insuk

    “…KCNQ family constitutes slowly-activating potassium channels among voltage-gated potassium channel superfamily. Recent studies suggested that KCNQ4 and 5…”
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  3. 3

    Onion peel extract and its constituent, quercetin inhibits human Slo3 in a pH and calcium dependent manner by Wijerathne, Tharaka Darshana, Kim, Ji Hyun, Kim, Min Ji, Kim, Chul Young, Chae, Mee Ree, Lee, Sung Won, Lee, Kyu Pil

    “…Sperm function and male fertility are closely related to pH dependent $K^+$ current (KSper) in human sperm, which is most likely composed of Slo3 and its…”
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  4. 4

    In vitro assessment of Prunus japonica seed extract on human spermatozoa hypermotility and intracellular alkalization by Kim, Ji Hyun, Chae, Mee Ree, Wijerathne, Tharaka Darshana, Cooray, Akila Dushyantha, Kim, Chul Young, Lee, Sung Won, Lee, Kyu Pil

    Published in Andrologia (01-09-2022)
    “…Prunus japonica var. nakaii is used in traditional Korean medicine to treat various conditions; however, it has not been investigated for treating male…”
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  5. 5

    Characterization and functional roles of KCNQ-encoded voltage-gated potassium (Kv7) channels in human corpus cavernosum smooth muscle by Lee, Jun Ho, Chae, Mee Ree, Kang, Su Jeong, Sung, Hyun Hwan, Han, Deok Hyun, So, Insuk, Park, Jong Kwan, Lee, Sung Won

    Published in Pflügers Archiv (2020)
    “…The group of KCNQ-encoded voltage-gated potassium (Kv7) channels includes five family members (Kv7.1–7.5). We examined the molecular expression and functional…”
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  6. 6

    Urinary Bladder-Relaxant Effect of Kurarinone Depending on Potentiation of Large-Conductance Ca2+-Activated K+ Channels by Lee, Sojung, Chae, Mee Ree, Lee, Byoung-Cheol, Kim, Yong-Chul, Choi, Jae Sue, Lee, Sung Won, Cheong, Jae Hoon, Park, Chul-Seung

    Published in Molecular pharmacology (01-08-2016)
    “…The large-conductance calcium-activated potassium channel (BKCa channel) plays critical roles in smooth muscle relaxation. In urinary bladder smooth muscle,…”
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  7. 7

    Hexane fraction of Prunus japonica thunb. Seed extract enhances boar sperm motility via CatSper ion channel by Cooray, Akila, Chae, Mee Ree, Wijerathne, Tharaka Darshana, Kim, Dae Geun, Kim, Jeongsook, Kim, Chul Young, Lee, Sung Won, Lee, Kyu Pil

    Published in Heliyon (01-02-2023)
    “…Mammalian sperm motility is facilitated by flagellar beating, which depends on active ion movement through ion channels and their regulation. Prunus japonica…”
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  8. 8

    Persistent Erectile Dysfunction after Discontinuation of 5-Alpha Reductase Inhibitor Therapy in Rats Depending on the Duration of Treatment by Sung, Hyun Hwan, Yu, Jiwoong, Kang, Su Jeong, Chae, Mee Ree, So, Insuk, Park, Jong Kwan, Lee, Sung Won

    Published in The world journal of men's health (01-05-2019)
    “…The current study is aimed to assess whether a longer duration of 5α-reductase inhibitor (5α-RI) exposure was associated with higher rate of permanent erectile…”
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  9. 9

    The agonistic action of URO-K10 on Kv7.4 and 7.5 channels is attenuated by co-expression of KCNE4 ancillary subunit by Lee, Jung Eun, Park, Christine Haewon, Kang, Hana, Ko, Juyeon, Cho, Suhan, Woo, JooHan, Chae, Mee Ree, Lee, Sung Won, Kim, Sung Joon, Kim, Jinsung, So, Insuk

    “…KCNQ family constitutes slowly-activating potassium channels among voltage-gated potassium channel superfamily. Recent studies suggested that KCNQ4 and 5…”
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    Journal Article
  10. 10

    Effects of Schisandra chinensis extract on the contractility of corpus cavernosal smooth muscle (CSM) and Ca2+ homeostasis in CSM cells by Han, Deok Hyun, Lee, Jun Ho, Kim, Hyunjung, Ko, Mi Kyeong, Chae, Mee Ree, Kim, Hye Kyung, So, Insuk, Jeon, Ju‐Hong, Park, Jong Kwan, Lee, Sung Won

    Published in BJU international (01-05-2012)
    “…What's known on the subject? and What does the study add? Schisandra chinensis extract (SCE) has been known to have relaxative effects on penile smooth muscle…”
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  11. 11

    Effect of the Novel BKCa Channel Opener LDD175 on the Modulation of Corporal Smooth Muscle Tone by Sung, Hyun Hwan, Choo, Seol Ho, Han, Deok Hyun, Chae, Mee Ree, Kang, Su Jeong, Park, Chul-Seung, So, Insuk, Park, Jong Kwan, Lee, Sung Won

    Published in Journal of sexual medicine (01-01-2015)
    “…The BKCa channel has been reported to play an important role in erectile function. Recently, novel BKCa channel activator, LDD175, was introduced. This study…”
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  12. 12
  13. 13

    Gene transfer of the KATP channel restores age‐related erectile dysfunction in rats by So, Insuk, Chae, Mee Ree, Lee, Sung Won

    Published in BJU international (01-11-2007)
    “…OBJECTIVE To determine if gene transfer of the ATP‐sensitive potassium (KATP) channel can reverse age‐related erectile dysfunction in the rat, as the KATP…”
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  14. 14

    Gene expression profile comparison in the penile tissue of diabetes and cavernous nerve injury-induced erectile dysfunction rat model by Kam, Sung Chul, Lee, Sang Hoon, Jeon, Ju Hong, So, Insuk, Chae, Mee Ree, Park, Jong Kwan, Lee, Sung Won

    Published in Investigative and clinical urology (01-07-2016)
    “…To investigate the effects of cavernous nerve injury (CNI) on gene expression profiles in the cavernosal tissue of a CNI-induced erectile dysfunction (ED)…”
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  15. 15

    Effect of Testosterone on Potassium Channel Opening in Human Corporal Smooth Muscle Cells by Han, Deok Hyun, Chae, Mee Ree, Jung, Jae Hun, So, Insuk, Park, Jong Kwan, Lee, Sung Won

    Published in Journal of sexual medicine (01-04-2008)
    “…In humans, the role of testosterone in sexual functions, including sexual desire, nocturnal penile erections, and ejaculatory volume, has been relatively well…”
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  16. 16

    Protective Effect of C-Reactive Protein against the Lethality Induced by Vibrio vulnificus Lipopolysaccharide by Chae, Mee-ree, Park, Byung-hyun, Kim, Jong-suk, Rho, Hye-won, Park, Jin-woo, Kim, Hyung-rho

    Published in MICROBIOLOGY and IMMUNOLOGY (01-01-2000)
    “…Vibrio vulnificus infection has attracted special interest because of its high mortality. A strong clinical association exists between hepatic dysfunction and…”
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  17. 17

    Effects of Ginkgo biloba extracts with mirodenafil on the relaxation of corpus cavernosal smooth muscle and the potassium channel activity of corporal smooth muscle cells by Kim, Jung Jun, Han, Deok Hyun, Lim, Soo Hyun, Kim, Tae Hun, Chae, Mee Ree, Chung, Kyung Jin, Kam, Sung Chul, Jeon, Ju-Hong, Park, Jong Kwan, Lee, Sung Won

    Published in Asian journal of andrology (01-09-2011)
    “…In this study, we investigated the effects of a combination of Ginkgo biloba extracts (GBE) and phosphodiesterase type 5 (PDE-5) inhibitors on the muscular…”
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  18. 18

    Cytotoxicity of Vibrio vulnificus Cytolysin on Rat Peritoneal Mast Cells by Kim, Jong-suk, Chae, Mee-ree, Chang, Keun, Park, Kwang-hyun, Rho, Hye-won, Park, Byung-hyun, Park, Jin-woo, Kim, Hyung-rho

    Published in MICROBIOLOGY and IMMUNOLOGY (01-01-1998)
    “…Histamine has been thought to be a permeability enhancing factor in Vibrio vulnificus infection. The injection of living bacteria or purified V. vulnificus…”
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  19. 19
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    The regulation of transient receptor potential canonical 4 (TRPC4) channel by phosphodiesterase 5 inhibitor via the cyclic guanosine 3′5′-monophosphate by Wie, Jinhong, Jeong, SeungJoo, Kwak, Misun, Myeong, Jongyun, Chae, MeeRee, Park, Jong Kwan, Lee, Sung Won, So, Insuk

    Published in Pflügers Archiv (01-06-2017)
    “…The transient receptor potential (TRP) protein superfamily consists of a diverse group of cation channels that bear structural similarities to the fruit fly…”
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