Tetragastrin
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Tetragastrin

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Tetragastrin is a potent releaser of insulin and other islet hormones.

Category
Others
Catalog number
BAT-015449
CAS number
1947-37-1
Molecular Formula
C29H36N6O6S
Molecular Weight
596.71
Tetragastrin
IUPAC Name
(3S)-3-[[(2S)-2-[[(2S)-2-amino-3-(1H-indol-3-yl)propanoyl]amino]-4-methylsulfanylbutanoyl]amino]-4-[[(2S)-1-amino-1-oxo-3-phenylpropan-2-yl]amino]-4-oxobutanoic acid
Synonyms
Gastrin tetrapeptide; Cholecystokinin tetrapeptide; CCK-4; (S)-4-(((S)-1-amino-1-oxo-3-phenylpropan-2-yl)amino)-3-((S)-2-((S)-2-amino-3-(1H-indol-3-yl)propanamido)-4-(methylthio)butanamido)-4-oxobutanoic acid
Density
1.348±0.06 g/cm3
Melting Point
185-195°C
Boiling Point
1070.0±65.0 °C at 760 mmHg
Sequence
H-Trp-Met-Asp-Phe-NH2
Storage
Store at -20°C
InChI
InChI=1S/C29H36N6O6S/c1-42-12-11-22(33-27(39)20(30)14-18-16-32-21-10-6-5-9-19(18)21)28(40)35-24(15-25(36)37)29(41)34-23(26(31)38)13-17-7-3-2-4-8-17/h2-10,16,20,22-24,32H,11-15,30H2,1H3,(H2,31,38)(H,33,39)(H,34,41)(H,35,40)(H,36,37)/t20-,22-,23-,24-/m0/s1
InChI Key
RGYLYUZOGHTBRF-BIHRQFPBSA-N
Canonical SMILES
CSCCC(C(=O)NC(CC(=O)O)C(=O)NC(CC1=CC=CC=C1)C(=O)N)NC(=O)C(CC2=CNC3=CC=CC=C32)N
1. Improvement of transdermal delivery of tetragastrin by lipophilic modification with fatty acids
K Setoh, M Murakami, N Araki, T Fujita, A Yamamoto, S Muranishi J Pharm Pharmacol. 1995 Oct;47(10):808-11. doi: 10.1111/j.2042-7158.1995.tb05745.x.
The in-vitro permeability of chemically modified tetragastrin with fatty acids through the rat skin was studied. The permeability of these compounds through intact skin and stripped skin of rat was determined with a Franz-type diffusion cell. The permeation of tetragastrin across the intact skin was improved by chemical modification with acetic acid and butyric acid. However, tetragastrin and caproyl-tetragastrin did not permeate across the intact skin up to the end of experiment. The permeation of tetragastrin across the stripped skin was improved by chemical modification, the skin flux of these acyl derivatives being in the order:acetyl > butyroyl > caproyl. The stability of tetragastrin in skin homogenate was also significantly improved by chemical modification with fatty acids. These results suggest that chemical modifications of tetragastrin with fatty acids increases its lipophilicity, which makes it permeable across the stratum corneum. Moreover, the chemical modification reduced the degradation of tetragastrin in the viable skin, resulting an increase in permeation of tetragastrin across the skin.
2. Effect of 6-hydroxydopamine on gastric carcinogenesis and tetragastrin inhibition of gastric carcinogenesis induced by N-methyl-N'-nitro-N-nitrosoguanidine in Wistar rats
M Tatsuta, H Iishi, M Baba, H Taniguchi Cancer Res. 1989 Aug 1;49(15):4199-203.
The effects of 6-hydroxydopamine (6-OHDA) on gastric carcinogenesis, on inhibition by tetragastrin of gastric carcinogenesis induced by N-methyl-N'-nitro-N-nitrosoguanidine, and on the tissue catecholamine concentrations of the gastric wall and the labeling index of the gastric mucosa were investigated in inbred Wistar rats. Rats received s.c. injections of tetragastrin (1 mg/kg of body weight every other day) in depot form, i.p. injections of 6-OHDA (42 mg/kg twice within 24 h and 105 mg/kg every 2 wk), or injections of both compounds after 25 wk of p.o. treatment with N-methyl-N'-nitro-N-nitrosoguanidine (100 micrograms/ml). At Wk 52, prolonged administration of tetragastrin or 6-OHDA had significantly reduced the incidence and the number of adenocarcinomas. Combined administration of tetragastrin and 6-OHDA significantly enhanced the inhibitory effects of tetragastrin or 6-OHDA on gastric carcinogenesis. Administration of 6-OHDA but not tetragastrin, caused a significant decrease in norepinephrine concentrations in the antral portion of the gastric wall. Rats treated with tetragastrin or 6-OHDA had a significantly lower labelling index of the antral mucosa, and this index was significantly decreased by combined administration of tetragastrin and 6-OHDA, as compared with labeling indices observed after treatment with tetragastrin or 6-OHDA alone. These findings indicate that 6-OHDA exerts a protective effect against gastric carcinogenesis and enhances the inhibitory effect of tetragastrin on gastric carcinogenesis. This effect of 6-OHDA may be related to its ability to inhibit cell proliferation of the antral mucosa.
3. Effect of ornithine decarboxylase inhibitor on tetragastrin treatment of gastric carcinogenesis induced by N-methyl-N'-nitro-N-nitrosoguanidine in Wistar rats
M Tatsuta, H Iishi, M Baba, H Taniguchi Int J Cancer. 1990 Feb 15;45(2):308-11. doi: 10.1002/ijc.2910450217.
The effects of combined administration of tetragastrin and the ornithine decarboxylase inhibitor 1,3-diaminopropane (DAP) on the incidence and number of gastric cancers induced by N-methyl-N'-nitro-N-nitrosoguanidine (MNNG), and the BUdR labelling indices of the fundic and antral mucosae, were investigated in inbred Wistar rats. Rats were given drinking water containing 2.5 g/l of DAP ad libitum and received alternate-day injections of 1 mg/kg body weight of tetragastrin in depot form after 25 weeks of oral treatment with MNNG. At week 52, prolonged administration of tetragastrin alone resulted in a significant reduction in the incidence and number of gastric cancers and a significant increase or decrease in the labelling indices of the fundic and antral mucosae, respectively. Concomitant administration of tetragastrin and DAP had no effect on the inhibition by tetragastrin of gastric carcinogenesis. With this treatment, the labelling index was significantly reduced in the fundic mucosa but not in the antral mucosa. These results suggest that ODC inhibitor does not attenuate tetragastrin inhibition of gastric carcinogenesis, and that anti-trophic action of tetragastrin on antral mucosa may be related to tetragastrin inhibition of gastric carcinogenesis.
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