Search PubMed⌕ Search

Biomedical subjects

K Kamata

Publications and source records attributed to K Kamata.

At least 55 records · Page 3Linked to original sources

Regression of gastric mucosa-associated lymphoid tissue lymphoma with reduced telomerase activity after eradication of Helicobacter pylori.

Recently, telomerase activity has been demonstrated in a large number of malignant tumors whereas its activity is not detected in most normal somatic cells suggesting its role in the immortalization process. Here we report the first investigation of telomerase activity in a case of gastric mucosa-associated lymphoid tissue (MALT) lymphoma. Elevated telomerase activity was detected in biopsy specimens of the lymphoma. After eradication of Helicobacter pylori, the level of telomerase activity returned to normal with histological regression of the lymphoma. The telomerase activity was associated with the disease activity of the gastric MALT lymphoma after eradication therapy in the present case.

Aged↗

Marked dissociation between intracellular Ca2+ level and contraction on exposure of rat aorta to lysophosphatidylcholine.

We investigated the relationship between tension development and the cytosolic free Ca2+ level ([Ca2+]i) on exposure of the endothelium-denuded isolated rat aorta to palmitoyl-L-alpha-lysophosphatidylcholine. Lysophosphatidylcholine concentration-dependently induced a gradual increase in [Ca2+]i. Application of 10(-4) M lysophosphatidylcholine induced a large and sustained tonic increase in [Ca2+]i (the peak [Ca2+]i was 125.2 +/- 11.5% of the 80 mM K+-induced response) but only a small contraction (4.0 +/- 1.4% of the 80 mM K+ induced contraction). The sustained increase in [Ca2+]i was attenuated when extracellular Ca2+ was removed but it was unaffected by verapamil or 1-(5-isoquinolinesulphonyl)-2-methylpiperazine dihydrochloride (H-7). Digitonin also produced a gradual increase in [Ca2+]i but with a pronounced contraction. Triton X-100 (0.1%) produced a marked elevation in [Ca2+]i with no detectable contraction. Triton X-100, however, caused a rapid leakage of fura PE-3. Treatment with 10(-4) M lysophosphatidylcholine for 1 or 2 h did not affect the contractile response induced by 80 mM K+ and this treatment did not release lactate dehydrogenase from the rat aorta. Treatment with lysophosphatidylcholine did not affect either the cyclic AMP level or the cyclic GMP level in endothelium-denuded aortic tissues. These results show that in the rat aorta lysophosphatidylcholine produces a large increase in [Ca2+]i (possibly in a non-contractile compartment) which does not induce contraction. Thus, the increase in [Ca2+]i induced by lysophosphatidylcholine (i) requires external Ca2+ but is not due to an increased Ca2+ influx through voltage-dependent L-type Ca2+ channels, (ii) is not primarily due to protein kinase C activation and (iii) is probably not due to a detergent action (like those of digitonin and triton X-100). The relative lack of a contractile response to lysophosphatidylcholine is not due to formation of cyclic AMP or cyclic GMP.

Animals↗

Relationship among cholesterol, superoxide anion and endothelium-dependent relaxation in diabetic rats.

The purpose of the present study was to investigate the time course of changes in plasma low-density lipoprotein (LDL) cholesterol, tissue lipid peroxidation, the expression of hepatic LDL-receptor mRNA and aortic superoxide dismutase, and the relaxation response to acetylcholine in streptozotocin-induced diabetic rats. Plasma cholesterol and LDL levels were significantly increased in both 4- and 10-week diabetic rats. The tissue malonic dialdehyde content in aortas was increased in 10-week compared to 1- or 4-week diabetic rats. The expression of mRNA for LDL receptor mRNA in the liver showed a decrease in both 4- and 10-week diabetic rats. Hepatic LDL-receptor binding activity decreased significantly in 10-week diabetic rats, and decreased binding activity in diabetic rats was improved by the chronic administration of cholestyramine. The relaxation responses to acetylcholine in helical strips of the aorta precontracted with noradrenaline were significantly decreased in 10-week, but not in 1- or 4-week streptozotocin-induced diabetic rats. The decreased relaxation response to acetylcholine was improved by chronic cholestyramine. Both the expression of Mn-superoxide dismutase mRNA and the activity of superoxide dismutase in the aorta were decreased in 10-week, but not in 4-week diabetic rats. From time-course studies, our data suggest that not only increased LDL cholesterol but also decreased activity of superoxide dismutase are responsible for the decreased relaxation response induced by acetylcholine.

Acetylcholine↗

Functional properties of two bombesin-like peptide receptors revealed by the analysis of mice lacking neuromedin B receptor.

The neuromedin B-preferring receptor (NMB-R) is one of the members of the bombesin (BN)-like peptide receptor subfamily in mammals. Previously, we have generated and characterized mice with targeted disruption of the two other BN-like peptide receptors, bombesin receptor subtype-3 (BRS-3) and gastrin-releasing peptide-preferring receptor (GRP-R). Here we describe the generation and analysis of NMB-R-deficient mice to investigate how NMB-R differs from BRS-3 and GRP-R. Compensation for NMB-R deficiency by overexpression of GRP-R and/or BRS-3 was not detected. Although the hypothermic effect of NMB was reduced by 50% in NMB-R-deficient mice, the effect of GRP infusion was comparable to the wild-type mice. In contrast, fundic smooth muscle contraction on stimulation with NMB or GRP was normal in NMB-R-deficient mice. Administration of GRP but not NMB suppressed glucose intake in both normal and NMB-R-deficient mice. These results suggest that the NMB-R has an essential role in thermoregulation, but not for smooth muscle contraction of the fundus or for the suppression of feeding behavior. In addition, the behavioral phenotypes of GRP-R-deficient mice were not observed in NMB-R-deficient mice. These data show that the functions of NMB-R and GRP-R are distinct, with only partial overlap.

Animals↗

Cycloprodigiosin hydrochloride, a new H(+)/Cl(-) symporter, induces apoptosis in human and rat hepatocellular cancer cell lines in vitro and inhibits the growth of hepatocellular carcinoma xenografts in nude mice.

The effects of cycloprodigiosin hydrochloride (cPrG-HCl), a new H(+)/Cl(-) symporter, were examined in liver cancer cell lines in vitro and in vivo. In the in vitro MTT assay, cPrG-HCl inhibited the growth of 6 liver cancer cell lines (Huh-7, HCC-M, HCC-T, dRLh-84, and H-35, hepatocellular carcinoma; HepG2, hepatoblastoma) in a dose- and time-dependent manner. The 50% inhibitory concentrations (IC(50)) at 72 hours' treatment for liver cancer cell lines were 276 to 592 nmol/L, while that for isolated normal rat hepatocyte was 8.4 micromol/L. The cPrG-HCl treatment of Huh-7 cells induced apoptosis as confirmed by the appearance of a subG(1) population, intranucleosomal DNA fragmentation, and chromatin condensation. cPrG-HCl raised the pH of acidic organelles and lowered pHi (below pH 6.8). In addition, the apoptosis in Huh-7 cells induced by cPrG-HCl was strongly suppressed when the cells were cultured with imidazole, a cell-permeable base. In the in vivo assay, nude mice bearing subcutaneous xenografted Huh-7 cells received 2 weeks of treatment with cPrG-HCl (1 or 10 mg/kg/d) subcutaneously. This treatment significantly inhibited tumor growth compared with the control after 8 days. The control mice were treated with 1% dimethylsulfoxide (DMSO) in saline (vehicle). A histopathological examination using the terminal deoxynucleotidyl transferase mediated dUTP biotin nick end labeling (TUNEL) method showed apoptosis in the treated tumor cells. No pathological changes were observed in any organs, and the serum alanine transaminase levels remained within normal limits. These results suggest that cPrG-HCl may be useful for the treatment of hepatocellular carcinoma.

Animals↗

Effect of insulin treatment on smooth muscle contractility and endothelium-dependent relaxation in rat aortae from established STZ-induced diabetes.

1. This study involved the chronic administration of low or high insulin to rats with established streptozotocin (STZ)-induced diabetes. We studied the effect of such treatment on smooth muscle contractility and endothelium-dependent relaxation using aortic strips. 2. Aortae from diabetic rats, but not those from high-insulin-treated diabetic rats, showed an impaired endothelium-dependent in response to acetylcholine (ACh) by comparison with untreated controls. 3. Isotonic high K+-induced contractility was impaired in diabetic aortae. This impairment was prevented by high-insulin treatment. 4. Noradrenaline (NA)-induced contractility was enhanced in aortae from high-insulin-treated diabetic rats, but not in those from untreated diabetic or low-insulin treated diabetic rats. 5. In the combined presence of the nitric oxide inhibitor N(G)-nitro-L-arginine and the cyclo-oxygenase inhibitor indomethacin, NA-induced contractility was significantly greater in aortae from high-insulin-treated diabetic rats than in those from controls or untreated diabetic rats. 6. An increased expression of the mRNA for the alpha1D and alpha1B adrenergic receptors was found in aortae from high-insulin-treated diabetic rats. 7. These results demonstrate that in rats with established STZ-induced diabetes, high-insulin treatment prevents the development of an impaired endothelium-dependent relaxation in the aorta, and that such treatment enhances NA-induced contractility. This enhancement may be related to an upregulation in the expression of the mRNA for the alpha1B or alpha1D adrenergic receptor that is secondary to the hyperinsulinaemia.

Acetylcholine↗

Effect of probucol on hypercholesterolemia in renal transplant patients.

BACKGROUND: Hypercholesterolemia is a well-known complication in kidney transplant recipients, although its pathogenesis may be multifactorial. The therapeutic effect of probucol on post-transplant hypercholesterolemia was prospectively evaluated. METHODS: Twelve hypercholesterolemic kidney transplant patients with serum total cholesterol > or = 250 mg/dl without diabetes mellitus or hypoproteinemia were prospectively treated with probucol (250 mg, bid, for three months). Before initiating and at the end of treatment, blood was drawn after at least a 12-hour fast to measure lipids in serum and lipoprotein fractions, apoproteins (apo), lipoprotein fractions, lethicin cholesterol acyl transferase (LCAT), free fatty acids (FFAs), and cholesterol ester. The lipid profiles of 17 healthy subjects were also examined. RESULTS: After treatment with probucol, serum total cholesterol, low-density lipoprotein (LDL) cholesterol, high-density lipoprotein (HDL) cholesterol, and apo AI were significantly decreased, whereas cholesterol ester increased significantly. CONCLUSIONS: Post-transplant hypercholesterolemia is featured with abnormalities in very low-density lipoprotein (VLDL) metabolism. Although HDL cholesterol decreased, probucol might have acted as an antiatherogenic by modulating HDL metabolism and stimulating reverse transfer of cholesterol from peripheral tissue.

Adult↗

Effects of superoxide dismutase on the acetylcholine-induced relaxation response in cholesterol-fed and streptozotocin-induced diabetic mice.

High concentration of acetylcholine (ACh) caused a rapid and long lasting relaxation response in age-matched controls, whereas this response was significantly weaker in streptozotocin (STZ)-diabetic and cholesterol fed mice. The levels of basal and ACh-stimulated cyclic GMP in the aorta was also significantly smaller in STZ-diabetic and cholesterol-fed mice. The attenuated relaxation responses to ACh in both STZ-diabetic and cholesterol-fed mice were ameliorated by the chronic administration of cholestyramine. A prior incubation of aortic strips with superoxide dismutase (SOD, 60 U/ml) improved the recovery phase of the relaxation of diabetic aorta after single administration of ACh, whereas SOD had no effects on ACh-induced relaxation of aortic strips from cholesterol fed mice. These results suggest that superoxide anion may be responsible for an impairment of endothelium-dependent relaxation of aorta from STZ induced diabetic mice. It is further suggested that impairment of endothelium-dependent relaxation in STZ-diabetic and cholesterol fed mice may be caused by different mechanisms.

Acetylcholine↗

Insulin resistance and impaired endothelium-dependent renal vasodilatation in fructose-fed hypertensive rats.

We investigated the contribution made by hyperinsulinemia and endothelial dysfunction to the hypertension of rats that had received 10% fructose in their drinking water for 12 weeks. As control animals with endothelial dysfunction, we used streptozotocin-induced diabetic rats. Measurements were made at 12 weeks after the start of fructose feeding or a single streptozotocin injection. Systolic blood pressure was greater in fructose-fed rats than in either streptozotocin-diabetic rats or age-matched controls. By comparison with the age-matched controls, the plasma levels of glucose, triglyceride, high density lipoprotein cholesterol, low density lipoprotein cholesterol and free fatty acids were all significantly raised in both fructose-fed rats and streptozotocin-diabetic rats. The plasma insulin was significantly raised in fructose-fed rats, whereas it was significantly lowered in streptozotocin-diabetic rats. The vasodilatation induced in the perfused kidney by acetylcholine was weaker in both fructose-fed rats and streptozotocin-diabetic rats than in the age-matched controls and these weakened responses were further attenuated by indomethacin. Acetylcholine increased the nitrite and nitrate (NO2- and NO3-) levels in the renal perfusate in age-matched controls. This effect was much weaker in the two experimental groups. These results suggest that endothelial dysfunction in fructose-fed rats and streptozotocin-diabetic rats may be due to a decreased synthesis of nitric oxide at least in the perfused kidney. It is further suggested that hyperinsulinemia is more important than endothelial dysfunction as a cause of hypertension in fructose-fed rats.

Acetylcholine↗

Effects of chronic treatment with the spontaneous nitric oxide releaser FK409 on vascular responses in established streptozotocin-induced diabetic rat.

Experiments were designed to investigate the effects of chronic administration of an NO donor, (+/-)-(E)-ethyl-2-[(E)-ethylhydroxyimino]-5-nitro-3-hexeneamide (FK409), on the impairment of the acetylcholine-induced endothelium-dependent relaxations of the aorta, perfused mesenteric arterial bed and perfused kidney that seen in streptozotocin-induced diabetic rats. In aortic strips and in the perfused kidney, the decreased acetylcholine-induced relaxation seen in diabetes was restored to normal by chronic (daily for 4 weeks) administration of FK409 (20 mg/kg or 10 mg/kg, respectively). Acetylcholine increased the NOx (NO2- and NO3-) level in the perfusates from aortic strips, the perfused kidney and the perfused mesenteric arterial bed. These increases were significantly weaker for diabetic rats than for the controls. This effect of diabetes was ameliorated by chronic administration of FK409 (20 mg/kg) in aortic strips and perfused kidney, but not in the perfused mesenteric arterial bed. These results demonstrate that chronic administration of the novel NO releaser FK409 can improve diabetes-impaired endothelium-dependent vasodilatation in the rat aorta and perfused kidney.

Acetylcholine↗

Changes in angiotensin converting enzyme activity in the renal vascular bed of streptozotocin-induced diabetic rat.

The purpose of this study was to look for evidence of changes in angiotensin converting enzyme activity in the renal vascular bed of streptozotocin (STZ)-induced diabetic rats. To assess the activity of the enzyme, we examined angiotensin I- and angiotensin II-induced vasoconstriction in perfused kidneys from controls and diabetic rats. Angiotensin I (3x10(-9) to 3x10(-6) M) induced a dose-dependent vasoconstriction in control kidneys; this response was completely inhibited by losartan (10(-5) M) and markedly inhibited by both captopril (10(-4) M) and indomethacin (10(-5) M). Angiotensin II (10(-10) to 3x10(-7) M) also caused a dose-dependent vasoconstriction in control kidneys; this response was markedly enhanced by 10(-4) M L-NNA, and significantly inhibited by losartan (10(-5) M). Angiotensin I-induced vasoconstriction was slightly greater in STZ-induced diabetic rats than in controls, but the maximal response was unaffected. These results suggest that angiotensin I is rapidly converted to angiotensin II in the renal vascular bed, and that converting enzyme activity in the renal vascular bed may be decreased in STZ-induced diabetic rats.

Angiotensin I↗

Enhanced Ca2+ sensitization of the bronchial smooth muscle contraction in antigen-induced airway hyperresponsive rats.

To investigate the alteration in acetylcholine (ACh)-induced increase in Ca2+ sensitization of bronchial smooth muscle contraction concurrent with the airway hyperresponsiveness (AHR), the ACh-induced increases in cytosolic Ca2+ ([Ca2+]) level and contractile response were simultaneously determined by using Fura-2 loaded bronchial smooth muscle. The left main bronchi were isolated from AHR rats which were sensitized and repeatedly challenged with DNP-Ascaris antigen. The tissue ring preparations were incubated in loading solution containing 10 microM Fura-2AM for 3 hr at room temperature. Then the isometrical contraction and [Ca2+]i (F340/F380) were monitored. Although the ACh (10(-3) M)-induced contractile response in AHR group (322 +/- 60 % of 60 mM K+ induced contraction) was significantly greater than that in control animals (173 +/- 15 %, p<0.05), the ACh (10(-3) M)-induced increase in [Ca2+]i was without significant difference between the two groups (128 +/- 15 and 171 +/- 29% of 60 mM K+ -induced increase in [Ca2+]i, respectively). These findings suggest that an augmentation of ACh-induced Ca2+ sensitization may occur in bronchial smooth muscle of the rats with antigen-induced AHR.

Acetylcholine↗

Lysophosphatidylcholine potentiates vascular contractile responses by enhancing vasoconstrictor-induced increase in cytosolic free Ca2+ in rat aorta.

We investigated the effects of palmitoyl-L-alpha-lysophosphatidylcholine on the contractile responses of the endothelium-denuded rat aorta to high K+, noradrenaline, UK14,304 (5-bromo-6-[2-imidazolin-2-ylamino]-quinoxaline) (a selective alpha2 adrenoceptor agonist) and phorbol 12-myristate 13-acetate (PMA). Lysophosphatidylcholine at concentrations from 10(-6) M to 10(-4) M did not contract aortic strips. However, lysophosphatidylcholine strongly potentiated the UK14,304-induced contraction. High K+ - and PMA-induced contractions were also potentiated. In contrast, the noradrenaline-induced contraction was only slightly potentiated by 10(-5) M lysophosphatidylcholine. In fura PE-3-loaded aortic strips, lysophosphatidylcholine (10(-5) M) markedly augmented the increase in both cytosolic free Ca2+ ([Ca2+]i) and contractile tension induced by UK14,304, high K+ and PMA. Nicardipine (10(-7) M) and 10(-6) M Ro-31-8220 (¿1-[3-(amidinothio)propyl-1H-indoyl-3-yl]-3-(1-methyl-1H-++ +indoyl-3-yl)-maleimide-methane sulfate) strongly inhibited the increase in [Ca2+]i and contractile tension induced by UK14,304 and in the presence of these inhibitors, the enhancing effects of lysophosphatidylcholine were attenuated. However, the enhancing effect on high K+ -induced contraction was not affected by Ro-31-8220. These results suggest that lysophosphatidylcholine may cause an augmentation of the increase in [Ca2+]i induced by UK14,304 which response is depend on protein kinase C activation and in this way potentiate contractile responses in the rat aorta. Protein kinase C independent mechanisms may also be involved in the enhancing effect of lysophosphatidylcholine on smooth muscle contraction.

Animals↗

Structural basis for chemical inhibition of human blood coagulation factor Xa.

Factor Xa, the converting enzyme of prothrombin to thrombin, has emerged as an alternative (to thrombin) target for drug discovery for thromboembolic diseases. An inhibitor has been synthesized and the crystal structure of the complex between Des[1-44] factor Xa and the inhibitor has been determined by crystallographic methods in two different crystal forms to 2.3- and 2.4-A resolution. The racemic mixture of inhibitor FX-2212, (2RS)-(3'-amidino-3-biphenylyl)-5-(4-pyridylamino)pentanoic acid, inhibits factor Xa activity by 50% at 272 nM in vitro. The S-isomer of FX-2212 (FX-2212a) was found to bind to the active site of factor Xa in both crystal forms. The biphenylamidine of FX-2212a occupies the S1-pocket, and the pyridine ring makes hydrophobic interactions with the factor Xa aryl-binding site. Several water molecules meditate inhibitor binding to residues in the active site. In contrast to the earlier crystal structures of factor Xa, such as those of apo-Des[1-45] factor Xa and Des[1-44] factor Xa in complex with a naphthyl inhibitor DX-9065a, two epidermal growth factor-like domains of factor Xa are well ordered in both our crystal forms as well as the region between the two domains, which recently was found to be the binding site of the effector cell protease receptor-1. This structure provides a basis for designing next generation inhibitors of factor Xa.

Binding Sites↗

Changes in electrophysiological properties and noradrenaline response in vas deferens of diabetic rats.

The purpose of this study was to study changes in the sympathetic nerves of the vas deferens in 10-week-old streptozotocin-induced diabetic rats. To assess the activity of autonomic neurons, we recorded the amplitude and frequency of spontaneous junction potentials in vasa deferentia from age-matched controls and streptozotocin-induced diabetic rats. No change in the resting membrane potential of the smooth muscle of the vas deferens was found in streptozotocin-induced diabetic rats. The frequency of spontaneous junction potentials was significantly increased in the streptozotocin-induced diabetic rats and their amplitude was also markedly increased. The dose-response curve for the contractile response of the vas deferens to noradrenaline was significantly shifted to the right and the apparent affinity (pD2 value) was significantly decreased in streptozotocin-induced diabetic rats. These results suggest that degeneration of sympathetic neurons may occur in the vas deferens of 10-week streptozotocin-induced diabetic rats and that the greater amplitude of the spontaneous junction potentials may be related to an increase in Ca2+ mobilization, though the increase in Ca2+ mobilization does not lead to an enhanced contractile response.

Adrenergic alpha-Agonists↗

Hypertension, hypertriglyceridemia, and impaired endothelium-dependent vascular relaxation in mice lacking insulin receptor substrate-1.

Insulin resistance is often associated with atherosclerotic diseases in subjects with obesity and impaired glucose tolerance. This study examined the effects of insulin resistance on coronary risk factors in IRS-1 deficient mice, a nonobese animal model of insulin resistance. Blood pressure and plasma triglyceride levels were significantly higher in IRS-1 deficient mice than in normal mice. Impaired endothelium-dependent vascular relaxation was also observed in IRS-1 deficient mice. Furthermore, lipoprotein lipase activity was lower than in normal mice, suggesting impaired lipolysis to be involved in the increase in plasma triglyceride levels under insulin-resistant conditions. Thus, insulin resistance plays an important role in the clustering of coronary risk factors which may accelerate the progression of atherosclerosis in subjects with insulin resistance.

Animals↗

Possible modulation by endothelin-1, nitric oxide, prostaglandin I2 and thromboxane A2 of vasoconstriction induced by an alpha-agonist in mesenteric arterial bed from diabetic rats.

We hypothesized that in diabetes arterial reactivity to constrictors is attenuated by certain endothelium-derived substances. We examined the vasoconstriction induced by methoxamine (alpha1-agonist) in isolated mesenteric arterial beds from streptozotocin (STZ)-induced diabetic rats and age-matched control rats. The dose-response curve for methoxamine was shifted to the right and the maximum contractile response was impaired in mesenteric arterial beds from diabetic rats. The methoxamine vasoconstriction was reduced in endothelium-denuded preparations from controls rats, but increased in those from diabetic rats. Treatment with the nitric oxide synthase inhibitor NG-nitro-L-arginine enhanced the vasoconstrictions induced by methoxamine in both control and diabetic rats. Indomethacin had no effect on the methoxamine vasoconstriction in control rats, but it shifted the dose-response curve to the left in diabetic rats. Whether given with or without indomethacin, BQ-123, (an ET(A)-receptor antagonist) plus BQ-788 (an ET(B)-receptor antagonist) shifted the dose-response curve for methoxamine to the right in control rats (while reducing the maximum response) but to the left in diabetic rats. The methoxamine-stimulated release of 6-keto-prostaglandin F1alpha from the mesenteric arterial bed in diabetic rats was approximately four times that seen in the control rats, while the methoxamine-induced release of thromboxane B2 (TXB2), a metabolite of thromboxane A2 (TXA2), was less in diabetic rats than in the control animals. These results suggest that an increased production of prostaglandin I2 (PGI2) and decreased formation of TXA2 could be responsible for the attenuation of the methoxamine-induced mesenteric vasoconstriction seen in diabetic rats, and these changes in the diabetic state could be partly responsible for the lower blood pressure seen in our diabetic rats.

Adrenergic alpha-Agonists↗

Fluorescence detection of biotin using post-column derivatization with OPA in high performance liquid chromatography.

A sensitive and selective high-performance liquid chromatographic method with post-column derivatization, using o-phthalaldehyde (OPA) and 3-mercaptopropionic acid (3-MPA), is described for the determination of biotin in pharmaceutical preparations. The use of 3-MPA gives intense fluorescent derivative and improves the stability of biotin fluorophore towards oxidation to the picomole level. The fluorophore was detected at 453 nm (excitation at 342 nm). The calibration graph was linear for 20-200 ng per injection. The detection limit of biotin under these conditions was about 10 ng per injection. The RSDs were 1.9-3.4%. This method could be applied to pharmaceutical preparations without interference of other compounds.

3-Mercaptopropionic Acid↗