• Title/Summary/Keyword: Corpus cavernosum

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Effects of Compositions of Saponin Fraction from Korean Red Ginseng in the Relaxation of Rabbit and Rat Corpus Cavernosum (토끼와 흰쥐 음경해면체 이완작용에 미치는 홍삼사포닌 분획별 효과)

  • Choi Young Deuk;Park Jin Ah;Choi Hyung Ki;Nam Ki Yeul
    • Journal of Ginseng Research
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    • v.23 no.1 s.53
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    • pp.13-20
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    • 1999
  • We previously reported that Korean red ginseng (KRG) has a relaxation effect on the smooth muscles of corpus cavernosum via nitric oxide (NO) pathway and calcium and potassium channels. However, it is suggested that the active ingredients of KRG might be different depending on the sources of preparation, and there might be differences in actions for different compositions. We first investigated the composition of KRG saponins according to the extractions of the various sources of KRG, then with these extractions the relaxation effects were evaluated in vitro and hemodynamical in vivo using New Zealand white rabbit and rat corpus cavernosum. The total compositions of ginsenoside $(G-Rb_1,\;-Rb_2,\;-Rc,\;-Rd,\;G-Re,\;-Rf,\;-Rg_1)$ in fractionated KRG saponin designated as TS-1, TS-2, TS-3 were $41\%,\;40\%,\;and\;62\%,$ respectively, and the ratios of PD saponin and PT saponin (PD/PT) were 1,55, 1.72, 2.25, and 2.61, the values of which were statistically significant. In vitro studies using the rabbit corpus cavernosal muscle strips, the KRG saponin relaxed cavernosal strips in a dose-dependent manner, and same results were observed in in vivo studies, that KRG saponin increased the intracavernosal pressure in the rat. There was difference in the efficacy according to fractionation techniques. The differences in the total contents of ginsenosides did not affect relaxation, rather PT saponin content was statistically related to the degree of cavernosal relaxation, and this action presumed to be mediated by NO pathway and calcium and potassium channels. In conclusion, KRG exerts relaxation which is a key step in erection via combination of effects on NO system or calcium and potassium channels. The efficacy of this action is different to the sources of ginseng, which is affected by the different composition of ginsenosides $(G-Rb_1,\;-Rb_2,\;-Rc,\;-Rd,\;G-Re,\;-Rf,\;-Rg_1).$ Thus the further studies on the active ingredients such as minor ginsenosides and non-saponin components of red ginseng with maximum potency should be sought.

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The Effects of Ginseng Saponin on Relaxation of Smooth Muscle in the Lower Urinary Tract and the Corpus Cavernosum (인삼 사포닌이 하부요로와 음경해면체 평활근의 이완작용에 미치는 효과)

  • Jung, Hee-Chang;Oh, Tae-Hee
    • Journal of Yeungnam Medical Science
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    • v.23 no.1
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    • pp.52-61
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    • 2006
  • Background: Korean ginseng (KG) has been used as a general tonic, and for voiding dysfunction for a long time in oriental society. However, scientific basic studies on the use of KG, have been rare, especially for voiding and erectile dysfunction. This study was performed to investigate the effects of KG on voiding and erectile function by examining the effects of total saponin (TS) on the bladder, urethral and penile cavernosal smooth muscle. Materials and methods: To examine the effects of TS, NewZeland white rabbits were used to obtain tissue strips from the smooth muscle of the bladder, proximal urethra and corpus cavernosum. Adult Sprague Dawley rats were used to examine the changes in urodynamic findings and penile erection after administration of TS. Results: In proximal urethral strips, the rate of relaxation of the proximal urethra was increased from $9.0{\pm}2.9$ to $33.7{\pm}4.8%$ in a dose-dependent manner when the concentration of TS was added accumulatively from 0.25 mg/ml to 4.0 mg/ml (p<0.05). However, no significant response was observed in the bladder strips within these concentration ranges. For the corpus cavernosal strips, the rate of relaxation ranged from $5.8{\pm}2.1$ to $36.7{\pm}5.8%$, increasing in a dose-dependent manner when TS was increased from 1.0 mg/ml to 4.0 mg/ml (p<0.05). After administration of 0.1 ml of TS (32 mg/ml) in the rat, the bladder pressure was $37.5{\pm}8.5$ mmHg at $52.1{\pm}7.0$ sec. during isovolumetric bladder contraction, showing no significant differences from $35.7{\pm}7.8mmHg$ and $50.7{\pm}7.2$ sec, respectively, before treatment. However, when 0.1 ml of TS (32 mg/ml) was administered, the relative reduction of urethral pressure was $6.9{\pm}0.5mmHg$ at $62{\pm}7.5$ sec, which was significantly higher compared to $4.6{\pm}1.1mmHg$ at $45{\pm}10$ sec before treatment (p<0.05). For the cavernosal injection study, the change in intracavernosal pressure (${\Delta}ICP$) was examined after administering 0.1 ml of TS. The cumulative additions of TS at concentrations from 0.5 mg/ml to 32 mg/ml increased ${\Delta}ICP$ from $1.3{\pm}0.5$ to $21.3{\pm}7.8mmHg$ in a dose-dependent manner (p<0.05). The duration of tumescence was from $0.3{\pm}0.1$ to $5.2{\pm}0.2$ min, showing dose-dependent increase (p<0.05). Furthermore, the cumulative addition of TS at concentrations from 0.5 mg/ml upto 32 mg/ml did not cause any significant change in systemic blood pressure. Conclusion: These results suggest that ginseng improves voiding functions, which is mainly achieved by TS relaxing the proximal urethra, the most important part of the bladder outlet function. In addition, ginseng safely induced a penile erection hemodynamically by relaxing the corpus cavernosum.

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Relaxation Effects of Rubus coreanus in Isolated Rabbit Corpus Cavernosum Smooth Muscle (복분자(覆盆子)의 토끼 음경해면체 평활근 이완효과)

  • Park, Sun Young;Lee, Pyeng Jae;Shin, Seon Mi;Kim, Ho Hyun
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.27 no.4
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    • pp.400-408
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    • 2013
  • This study aimed to investigate the relaxation effects and its underlying mechanisms of Rubus coreanus(RC) extract in contracted rabbit corpus cavernous tissues by phenylephrine(PE) $1{\mu}M$. In order to define the relaxation effects of RC, rabbit corpus cavernous tissues were prepared in $2{\times}2{\times}6mm$ sized strip. The dose-dependent relaxation responses of RC at 0.01-3.0 $mg/m{\ell}$ in contracted strips induced by PE were measured and also observed after endothelial denudation. To analyze the underlying mechanisms of RC-induced relaxation, indomethacin(IM), tetraethylammonium chloride(TEA), $N{\omega}$-nitro-L-arginine (L-NNA), methylene blue(MB) were treated before RC extract infused into precontracted strips induced by PE. To study the effect of RC extract on influx of extracellular $Ca^{2+}$ in corpus cavernous strips, calcium chloride(Ca) 1 mM infused into precontracted strips induced by PE after pretreatment of RC extract in $Ca^{2+}$-free krebs-ringer solution. To investigate cytotoxic activity and nitric oxide(NO) concentration of RC extract on human umbilical vein endothelial cell(HUVEC), cell viability on HUVEC was measured by MTT assay, and NO concentration was measured by Griess reagent system. The cavernous strips were significantly relaxed by RC extract at 1.0 $mg/m{\ell}$, 3.0 $mg/m{\ell}$ and the relaxation responses to RC were inhibited significantly by endothelial disruption. The pretreatment of IM, TEA didn't affect RC extract-induced endothelium-dependent relaxation, but the pretreatment of L-NNA, MB reduced RC extract-induced endothelium-dependent relaxation. When $Ca^{2+}$ was supplied the cavernous strips which were precontracted by PE in a $Ca^{2+}$-free krebs-ringer solution, contraction of strips was increased, but pretreatment of RC inhibited contractile response to $Ca^{2+}$. When RC extract was applicated on HUVEC, NO concentration was increased. Our findings show that RC extract exerts a relaxing effect on corpus cavernosum in part by suppressing influx of extracellular $Ca^{2+}$ through activating the NO-cGMP system.

Effects of Schisandra chinensis fruit extract and gomisin A on the contractility of penile corpus cavernosum smooth muscle: a potential mechanism through the nitric oxide - cyclic guanosine monophosphate pathway

  • Choi, Bo Ram;Kim, Hye Kyung;Park, Jong Kwan
    • Nutrition Research and Practice
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    • v.12 no.4
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    • pp.291-297
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    • 2018
  • BACKGROUND/OBJECTIVES: This study evaluated the effects and molecular mechanisms of the Schisandra chinensis fruit extract (SC) and its major compound gomisin A (GA), on the contractility of rabbit penile corpus cavernosum smooth muscle (PCCSM). MATERIALS/METHODS: PCCSM was exposed to SC or GA after appropriate pretreatment with nitric oxide synthase (NOS) blocker, guanylate cyclase blocker, adenylyl cyclase blocker or protein kinase A blocker. Subsequently, we evaluated the cyclic nucleotide in the perfusate by radioimmunoassay, protein expression level of neuronal NOS (nNOS) and endothelial NOS (eNOS) by western blot, and the interaction of SC or GA with udenafil and rolipram. RESULTS: Both SC and GA induce PCCSM relaxations in a concentration-dependent manner. Pretreatment with NOS blocker, guanylate cyclase blocker, adenylyl cyclase blocker or protein kinase A blocker result in significantly decreased relaxation. SC and GA also induce the levels of cyclic nucleotide in the perfusate in a concentration-dependent manner. Perfusion with GA also showed significantly higher levels of eNOS protein. Furthermore, the udenafil and rolipram induced relaxations of PCCSM were enhanced after exposure to SC and GA. Our results indicate that SC and GA induce the relaxation of PCCSM via the nitric oxide (NO)-cGMP and cAMP signaling pathways. CONCLUSIONS: The SC and GA are potential alternative treatments for men who want to consume natural products to ameliorate erectile function, or who do not respond to the commercially available medicines.

Cumulative Effects of Constituents from the Mushroom Calvatia nipponica on the Contractility of Penile Corpus Cavernosum Smooth Muscle

  • Lee, Seulah;Kim, Min-Ji;Lee, Bum Soo;Ryoo, Rhim;Kim, Hye Kyung;Kim, Ki Hyun
    • Mycobiology
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    • v.48 no.2
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    • pp.153-156
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    • 2020
  • Calvatia nipponica, a puffball mushroom (Agaricaceae), is thought to be an aphrodisiac, as this mushroom is traditionally known to improve sexual function in males. As part of the systematic study to determine the bioactive secondary metabolites from C. nipponica responsible for aphrodisiac effects, chemical analysis of methanol (MeOH) extracts of the fruiting bodies of C. nipponica resulted in the isolation of two major compounds: N,N-dimethyl-anthranilic acid (1) and (7Z,10Z)-7,10-octadecadienoic acid methyl ester (2). Compounds 1 and 2 were evaluated for cumulative dose-dependent relaxation responses to precontracted penile corpus smooth muscle (PCCSM). Results show that compounds 1 and 2 exhibited a maximum relaxation effect of 20.33 ± 2.18% and 24.63 ± 3.60%, respectively. These findings indicate that compounds 1 and 2, major components of C. nipponica, could potentially be used to treat erectile dysfunction, functioning as natural aphrodisiacs.

Effect of Ginseng on the Relaxation of the Penile Corpus Cavernosal Smooth Muscle in Rabbits (인삼이 토끼 음경해면체 평활근의 이완작용에 미치는 영향)

  • 안태영;김건석
    • Journal of Ginseng Research
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    • v.20 no.3
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    • pp.339-343
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    • 1996
  • The effect of ginseng on the reactivity of penile corpus cavernosal smooth muscle strips of rabbits was investigated to support the clinical application of ginseng for the treatment of erectile dysfunction. New Zealand white rabbits were randomly divided into two groups, normal diet group (n=9) and ginseng saponin diet group (n=5). Then, each group was fed normal diet and Korean red ginseng saponin diet (50 mg/kg/day) for 10 weeks. We measured concentration dependent relaxation of corporal smooth muscle to acetylcholine (10-8 M to 10-4M) in organ chamber. The degree of relaxation was expressed as percentage of maximal relaxation obtained by papaverine (10-4M). Dose dependent relaxation of corpus cavernosal smooth muscle to acetylcholine, at the concentration of 10-8 M to 10-4M by half log increment, was 4.06$\pm$0.00, 4.30$\pm$1.30, 5.32$\pm$0.68, 11.64$\pm$1.74, 16.24$\pm$1.61, 23.33$\pm$ 2.29, 26.45$\pm$2.25, 30.43$\pm$2.40 and 33.41 $\pm$2.48 (%), respectively in normal diet group and 9. 83$\pm$4.15, 20.60$\pm$4.62, 24.1815.12, 35.75$\pm$5.71, 43.35$\pm$6.11, 51.30$\pm$6.22, 56.33$\pm$6.22, 54.30$\pm$4.17 and 51.98$\pm$3.92 (Vc), respectively in ginseng group. These data suggest that ginseng enhances ondothelium-dependent acetylcholine-induced relaxation of penile corpus cal.ernosal smooth muscle in rabbits.

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Effect of Korean Red Ginseng on Rabbit and Rat Corpus Cavernosal Smooth (고려인삼 복용이 토끼 및 횐쥐의 음경해면체 평활근에 미치는 효과)

  • 최영득;마상열
    • Journal of Ginseng Research
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    • v.21 no.2
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    • pp.98-103
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    • 1997
  • On the precontracted rabbit cavernosal muscle strips with phenylephrine ($5\ast10^{-6}$M), Increasing concentrations of acetylcholine (10-7, 10-6, 10-5, 10-4M) showed relaxation effect dose-dependently in control group ($10^{-7}$M : 15.32%, $10^{-6}$M : 35.44%, 10-5M : 59.45%, 10-4M : 76.54%). After 3 months administering Korean red ginseng, the relaxation action of acetylcholine was significantly increased ($10^{-7}$M : 34.18%, $10^{-6}$M : 56.35%, $10^{-5}$M : 75.33%, $10^{-4}$M : 89.86%). Relaxation effect of Korean red ginseng was significantly increased after 3 months administering Korean red ginseng. Intracavernous pressure response to electrostimulation wan 107.52 cm$H_2O$ in control group and significantly increased to 138.34 cm $H_2O$ after 3 month administering Korean red ginseng. With these results, we can confirm that long-term administration of Korean red ginseng enhances the erectly capacity and that its action is mediated by endothelium derived relaxing factor and peripheral neurophysiologic enhancement.

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Bioactivity of an Extract of Lespedezea Cuneata G. Don to Rabbit Corpus Cavernosum Smooth Muscle Tone (야관문(Lespedezea cuneata G. Don) 추출물이 토끼 음경해면체 평활근에 미치는 생리활성)

  • Chung, Young-Ho;Lim, Chi-Hwan
    • Korean Journal of Agricultural Science
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    • v.32 no.1
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    • pp.63-70
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    • 2005
  • The extracts in n-hexane layer from Lespedezea cuneata G. Don exelled at sexual activity according to in vitro experiment using biopsy of rabbit corpus cavernosum to investigate effects on sexual function. The extracts were injected into 9 samples at $10{\mu}l$. The lowest relaxation was showed at sample C, $4.8{\pm}1.4%$ and the highest relaxation was showed at sample A, $20.2{\pm}6.0%$. The relaxation by every sample, except sample C and G-1, were higher than by $10^{-7}M$ ACh, $7.8{\pm}5.1%$, and their effects were above 10%. Also, the extracts were injected into 9 samples at $15{\mu}l$. The lowest relaxation was showed at sample C, $15.4{\pm}9.7%$ and the highest relaxation was showed at sample J, $54.8{\pm}9.7%$. The relaxation by sample A and D was as much as by $10^{-6}M$ ACh, $28.0{\pm}20.1%$. The relaxation by sample H was $41.9{\pm}7.3%$. The relaxation by sample J was $54.8{\pm}9.7%$ and it was higher than by $10^{-5}M$ ACh, $53.9{\pm}25.9%$. Also, the extracts were injected into 9 samples at $20{\mu}l$. The lowest relaxation was showed at sample E, $28.9{\pm}0.6%$ and it was a little higher than by $10^{-6}M$ ACh. The relaxation by sample G was as much as by $10^{-5}M$ ACh. The two higher relaxation were showed at sample H, $99.4{\pm}16.0%$ and J, $95.7{\pm}7.2%$, and their relaxation against contraction reaction by PhE were near 100%. Experiment by sample I was not performed for lack of sample amount.

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The agonistic action of URO-K10 on Kv7.4 and 7.5 channels is attenuated by co-expression of KCNE4 ancillary subunit

  • 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
    • The Korean Journal of Physiology and Pharmacology
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    • v.24 no.6
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    • pp.503-516
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    • 2020
  • KCNQ family constitutes slowly-activating potassium channels among voltage-gated potassium channel superfamily. Recent studies suggested that KCNQ4 and 5 channels are abundantly expressed in smooth muscle cells, especially in lower urinary tract including corpus cavernosum and that both channels can exert membrane stabilizing effect in the tissues. In this article, we examined the electrophysiological characteristics of overexpressed KCNQ4, 5 channels in HEK293 cells with recently developed KCNQ-specific agonist. With submicromolar EC50, the drug not only increased the open probability of KCNQ4 channel but also increased slope conductance of the channel. The overall effect of the drug in whole-cell configuration was to increase maximal whole-cell conductance, to prolongate the activation process, and left-shift of the activation curve. The agonistic action of the drug, however, was highly attenuated by the co-expression of one of the β ancillary subunits of KCNQ family, KCNE4. Strong in vitro interactions between KCNQ4, 5 and KCNE4 were found through Foster Resonance Energy Transfer and co-immunoprecipitation. Although the expression levels of both KCNQ4 and KCNE4 are high in mesenteric arterial smooth muscle cells, we found that 1 μM of the agonist was sufficient to almost completely relax phenylephrine-induced contraction of the muscle strip. Significant expression of KCNQ4 and KCNE4 in corpus cavernosum together with high tonic contractility of the tissue grants highly promising relaxational effect of the KCNQ-specific agonist in the tissue.