Objectives : This study was undertaken to define the effect of Diospyros kaki L. Radix or Diospyros kaki L. Folium on phenylephrine-induced arterial contraction and the mechanism of Diospyros kaki L. Radix or Diospyros kaki L. Foliuminduced relaxation. Methods : In order to investigate the effect of Diospyros kaki L. Radix or Diospyros kaki L. Folium on contracted rabbit carotid arterial strips, transverse strips with intact or damaged endothelium were used for the experiment using organ bath. Diospyros kaki L. Radix or Diospyros kaki L. Folium extract was infused into contracted arterial strips induced by phenylephrine. To analyze the mechanism of Diospyros kaki L. Radix or Diospyros kaki L. Folium-induced relaxation, Diospyros kaki L. Radix or Diospyros kaki L. Folium extract was infused into contracted arterial strips induced by phenylephrine after treatment with indomethacin, $N{\omega}-nitro-L-arginine$, methylene blue or tetraethylammonium chloride, and $Ca^{2+}$ was infused into contracted arterial strips induced by phenylephrine after treatment of Diospyros kaki L. Radix or Diospyros kaki L. Folium in a $Ca^{2+}$-free solution. Results : Diospyros kaki L. Radix or Diospyros kaki L. Folium showed relaxation effect on arterial strip with endothelium contracted by phenylephrine, but in the strips without endothelium, Diospyros kaki L. Radix or Diospyros kaki L. Folium-induced relaxation was significantly inhibited. The endothelium-dependent relaxation induced by Diospyros kaki L. Radix or Diospyros kaki L. Folium was decreased by pretreatment with $N{\omega}-nitro-L-arginine$ or methylene blue but it was not observed in the strips pretreated with indomethacin or tetraethylammonium chloride. When $Ca^{2+}$ was applied to the strips which were contracted by phenylephrine in a $Ca^{2+}$-free solution, arterial contraction was increased. However, pretreatment with Diospyros kaki L. Radix or Diospyros kaki L. Folium inhibited contractile response to $Ca^{2+}$. Conclusions : Diospyros kaki L. Radix or Diospyros kaki L. Folium may suppress influx of extra- cellular $Ca^{2+}$ through the formation of nitric oxide in the vascular endothelial cells.
The purpose of this study was to analyze the Rhizoma on the blood pressure, heart rate and to define the mechanism of Notopterygii Rhizoma-induced relaxation in rabbit common carotid arterial contracted by agonists. Method : In order to explore the effect of Notopterygii Rhizoma on the blood pressure and heart rate, Notopterygii Rhizoma extract was injected in vein of rabbit ear. In order to investigate the effect of Notopterygii Rhizoma on norepinephrine(NE)-induced contracted rabbit carotid arterial strips, transverse strips with intact or damaged endothelium were used for the experiment using organ bath. To analyze the mechanism of Notopterygii Rhizoma-induced relaxation, Notopterygii Rhizoma extract infused into NE-induced contracted strips induced by agonists after treatment of methylene blue, propranolol, ouabain and it infused into serotonin, potassium chloride-induced contracted strips. Result : The blood pressure was significantly decreased by Notopterygii Rhizoma, but heart rate was insignificantly. In addition, Notopterygii Rhizoma significantly relaxed the norepinephrine, serotonin, potassium-induced contracted strips with intact endothelium or damaged endothelium. The relaxing effect of Notopterygii Rhizoma In NE-induced contracted strips with damaged endothelium by pretreatment of methylene blue, propranolol was not changed, but Ouabain was significantly decreased. Conclusion : These results were shown that Notopterygii Rhizoma affected the NE -induced contracted smooth muscle without the participation of endothelium, and demonstrated that the mechanism of NotoDtervgii Rhizoma-induced relaxation was the obstruction of receptor-operated Ca2+ channel.
Purpose: Ligustri Lucidi Fructus and Ecliptae Herba has long been used for clinical therapy associated especially with menopausal symptoms in Korea. To provide a scientific rationale for such use, we have investigated the antioxidant and vasorelaxant effects of Ligustri Lucidi Fructus, Ecliptae Herba and its mixture. Methods: The antioxidant activity of the extracts from Ligustri Lucidi Fructus, Ecliptae Herba and its mixture were evaluated and compared with that of BHA (butylated hydroxyanisole), BHT (butylated hydroxytoluene), vitamin C and vitamin E, using the ${\alpha}$,${\alpha}-diphenyl-{\beta}-picrylhydrazyl$ (DPPH) radical scavenging method. Results: Antioxidant activity of all extracts using the DPPH radical scavenging method decreased in the order vitamin C>BHA>vitamin E>Ligustri Lucidi Fructus>Ligustri Lucidi Fructus:Ecliptae Herba(1:1)>Ecliptae Herba>BHT. The vasorelaxant effects of extracts were investigated on the vasomotor tone of the rat thoracic aorta in an organ bath. All of the extracts elicited along-term relaxing response in the endothelium-intact as well as endothelium-denuded rat aorta contracted with norepinephrine. This relaxant effect was abolished by Precontraction with 72 mM KCI. Thus, it is suggested that the mechanism of vasorelaxant effect of extracts not involve voltage-operated $Ca^{2+}$ channel blocking but receptor-mediated route. Conclusion: These antioxidant and vasorelaxant effecs of the extracts may contribute to the beneficial effects in postmenopausal women.
The effects of removing the endothelium on the vasodilatory response to substance P, calcitonin gene-related peptide (CGRP), and vasoactive intestinal peptide (VIP) was examined in the isolated rabbit renal artery. The vasodilator response to substance P ($0.1{\mu}M$) was completely absent in vessels in which the endothelium had previously been removed. There was no significant difference in the vasodilatation produced in response to CGRP ($0.1{\mu}M$), or VIP ($0.1{\mu}M$) in the intact and removed-endothelium rabbit renal artery segments. L-NAME ($100{\mu}M$) significantly reduced the vasodilatory response to substance P ($0.1{\mu}M$). This inhibition was significantly attenuated when L-arginine (10 mM) was also present in the organ bath along with L-NAME ($100{\mu}M$). Indomethacin ($1{\mu}M$) did not significantly affect the vasodilatation produced in response to substance P ($0.1{\mu}M$). The inhibitory effect of L-NAME ($100{\mu}M$) and indomethacin ($1{\mu}M$) on the vasodilatory response to substance P ($0.1{\mu}M$) was not significantly different from that produced by L-NAME ($100{\mu}M$) alone. This study indicates that substance P induced vasodilatation via an endothelium-dependent mechanism in the isolated rabbit renal artery. It also established that CGRP and VIP induced vasodilatation by an endothelium-independent mechanism and substance P-induced vasodilatation is at least partially via NO.
This study was carried out to investigate the effect of Oyootang and Shinchulsan extract on the contractile force of the isolated guinea pig trachea smooth muscle and elucidate its mechanism The result were obtained as follow: 1. The isolated trachea smooth muscle was suspended in the organ bath with oxygenated kerb's Henseleit bicarbonate buffer solution at $37^{\circ}C$, and the developed tension by the drug was recorded with isometric tranducer(Nacro F-60). The resting tension was approximately 0.5g 2. The contractile response of the trachea smooth muscle of the isolated guinea pig by histamine $10^{-4}M$ was significantly inhibited by Oyootang and Shinchulsan extract. 3. The contractile response of the trachea smooth muscle of the isolated guinea pig by acetylcholine $10^{-4}M$ was considerably inhibited by Oyootang and Shinchulsan extract. 4. The contractile response of the trachea smooth muscle of the isolated guinea pig by histamine $10^{-4}M$ was significantly inhibited by Oyootanghabshinchulsan extract. 5. The contractile response of the trachea smooth muscle of the isolated guinea pig by acetylcholine $10^{-4}M$ was significantly inhibited by Oyootanghabshinchulsan extract. 6. The contractile response of the trachea smooth muscle of the iso-lated guinea pig by histamine $10^{-4}M$ was significantly inhibited by Oyootang, Shinchulsan and its constituent herbs extract. 7. The contractile response of the trachea smooth muscle of the iso-lated guinea pig by acetylcholine $10^{-4}M$ was significantly inhibited by Oyootang, Shinchulsan and its constituent herbs extract.
This study aimed to investigate the relaxation effects and its underlying mechanisms of Epimedium koreanum Nakai(EK) in phenylephrine(PE) treated isolated rabbit corpus cavernosum smooth muscle. The dose-dependent relaxation responses of phenylephrine(PE, $1{\times}10^{-6}M$)-precontracted strips to EK at $0.01-3.0mg/m{\ell}$ were measured and also observed after endothelial denudation using organ bath. To analyze the underlying mechanisms of EK-induced relaxation, $N{\omega}$-nitro-L-arginine(L-NNA), methylene blue(MB), tetraethylammonium chloride(TEA), indomethacin(IM) were pretreated before EK extract infused into precontracted strips induced by PE. To investigate cytotoxic activity and nitric oxide(NO) concentration of EK extract on EA.hy926 cells, mitochondrial dehydrogenase activity(MTT) assay and nitric oxide detection kit were used. The cavernous strips were significantly relaxed by EK extract at $0.3mg/m{\ell}$, $1.0mg/m{\ell}$, $3.0mg/m{\ell}$ and the relaxation responses of PE-precontracted strips denuded endothelium also inhibited in comparison with intact endothelium. The pretreatment of L-NNA, MB, TEA reduced EK extract-induced endothelium-dependent relaxation, but the pretreatment of IM didn't affect EK extract-induced endothelium-dependent relaxation. When EK extract was applicated on EA.hy926 cells, the NO concentration was increased. Our findings have shown that EK extract exerts a relaxing effect on corpus cavernosum in part by suppressing influx of extracellular $Ca^{2+}$ through activating the NO-cGMP system.
Antihypertensive effect of YH 334 was examined in various experimental hypertension rat models and the systemic and regional hymohynamic profiles of the compound were investigated in conscious spontaneously hypertensive rats (SHR). The antiypertensive potensive potency of YH 334 is found to be more than 10 times stronger than that of nitrendipine in the all hypertensive models. The effective doses to lower the initial blood pressure by 20% $(ED_{20})$ of YH334 were 1.4 mg/kg in normotensive rats (NR), 0.7 mglkg in SHR. 0.1 mg/kg in DOCA salt hypertensive rats (DHR) and 0.4 mg/kg in renal hypertensive rats (RHR), and the $ED_{20}$ values of nitrendipine were 15.8 mg/kg in NR, 7.1 mg/kg in SHR, 1.7 mg/kg in DHR and 4.8 mg/kg in RHR. The primary hemodynamic effect hemodynamic profile is similar to that of nitrendipine. Both compounds seem to produce potent antihypertensive effects by lowering peripheral resistance in the skeletal muscles. In the organ bath study using isolated rabbit aorta, YH 334 was found to be a potent voltage dependent calcium channel blocker without significant inhibitory effect on the receptor operated calcium channels like the most of other dihydropyridine type calcium antagonists. Furthermore, YH334 showed acute diuretic and natriuretic effects in conscious SHR, which may render the unnecessary restriction of sodium in the diet of those patients on long term hypertension therapy. This effect would provide an additional benefit to its potent antihypertensive activity.
This study was undertaken to define the effect of ChungGongGo extract on norepinephrine-induced arterial contraction in rabbit. In order to investigate the effect of ChungGongGo extract on rabbit's contracted vascular ring detached from common carotid artery, vascular ring with intact or damaged endothelium was used for the experiment using organ bath. To analyze the mechanism of ChungGongGo extract-induced relaxation, ChungGongGo extract was infused into contracted vascular ring which had been pretreated by $N{\omega}$-nitro-L-arginine(L-NNA), Methylene blue(MB), and $Ca^{2+}$ was infused into contracted vascular ring induced by NE or KCl after treatment of ChungGongGo in $Ca^{2+}$-free solution. The results were as follows: ChungGongGo extract had an effective relaxation to the contracted vascular ring by NE in 1.0mg/ml and 0mg/ml level. ChungGongGo extract had an effective relaxation to the intact endothelium vascular ring, but when endothelium was removed, vascular ring did not relax. ChungGongGo extract-induced relaxation was inhibited by the pretreatment of L-NNA and MB. Pretreatment of ChungGongGo extract inhibit the contraction by influx of extra-$Ca^{2+}$ in contracted vascular ring induced by NE in $Ca^{2+}$-free solution. As mentioned above, we suggest that ChungGongGo relaxes vascular ring through suppress influx of extra-cellular $Ca^{2+}$ by the action of nitric oxide from endothelium.
This study was undertaken to define the effect of SoPung-Tang extract on hypertension in spontaneous hypertensive rat and norepinephrine- induced arterial contraction in rabbit. In order to investigate the effect of SoPung-Tang extract on contracted rabbit carotid arterial strips, transverse strips with intact or damaged endothelium were used for the experiment using organ bath. To analyze the mechanism of SoPung-Tang extract-induced relaxation, SoPung-Tang extract infused into contracted arterial strips induced by norepinephrine after treatment of indomethacin, Nu-nitro-L-arginine, methylene blue or tetraethylammonium chloride. Blood pressure was significantly decreased five days after administration of SoPung-Tang extract. SoPung-Tang extract relax arterial strip with endothelium contracted by norepinephrine, but in the strips without endothelium, SoPung-Tang extract- induced relaxation was significantly inhibited. SoPung-Tang relax arterial strip contracted by norepinephrine, but in the strips contracted by high $K^+$, SoPung-Tang extract-induced relaxation was significantly inhibited. The endothelium-dependent relaxation induced by SoPung-Tang extract was decreased by the pre-treatment of $N{\omega}$-nitro-L-arginine or methylene blue, but it was not observed in the strips pre-treated with indomethacin or tetraethylammonium chloride. When $Ca^{2+}$ was applied, the strips which were contracted by norepinephrine in a $Ca^{2+}$-free solution, arterial contraction was increased. But pre-treatment of SoPung-Tang extract inhibited contractile response to $Ca^{2+}$. We suggest that SoPung-Tang could be applied effectively for hypertension and may suppress influx of extra-cellular $Ca^{2+}$ through the formation of nitric oxide in the vascular endothelial cells.
This study was undertaken to define the effect of Polygoni cuspidatae Radix on contracted rabbit common carotid artery and its mechanism. In order to investigate the effect of Polygoni cuspidatae Radix on rabbit's contracted vascular ring detached from common carotid artery, vascular ring with intact or damaged endothelium was used for the experiment using organ bath. To analyze the mechanism of Polygoni cuspidatae Radix-induced relaxation, Polygoni cuspidatae Radix extract was infused into contracted vascular ring which had been pretreated by $N{\omega}-nitro-L-arginine(L-NNA)$, Methylene blue(MB), and $Ca^{2+}$ was infused into contracted vascular ring induced by NE or KCl after treatment of Polygoni cuspidatae Radix extract in $Ca^{2+}-free$ solution. The results were as follows : Polygini cuspidatae Radix had an effective relaxation to the contracted vascular ring by NE in 0.1 mg/ml and 0.3 mg/ml level. Polygini cuspidatae Radix had an effective relaxation to the intact endothelium vascular ring, but when endothelium was removed, vascular ring did not relax. Polygini cuspidatae Radix-induced relaxation was inhibited by the pretreatment of L-NNA and MB. Pretreatment of Polygini cuspidatae Radix extract inhibit the contraction by influx of $extra-Ca^{2+}$ in contracted vascular ring induced by NE or KCl in $Ca^{2+}-free$ solution. As mentioned above, we suggest that Polygini cuspidatae Radix relaxes vascular ring through suppress influx of extra-cellular $Ca^{2+}$ by the action of nitric oxide from endothelium.
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