Design and Synthesis of Imidazoline Derivatives Active on Glucose Homeostasis in a Rat Model of Type II Diabetes. 1. Synthesis and Biological Activities of N-Benzyl-N ‘-(arylalkyl)-2-(4‘,5‘-dihydro-1‘H-imidazol-2‘-yl)piperazines
Тип публикации: Journal Article
Дата публикации: 1997-11-01
scimago Q1
wos Q1
БС1
SJR: 1.801
CiteScore: 11.5
Impact factor: 6.8
ISSN: 00222623, 15204804
PubMed ID:
9371245
Drug Discovery
Molecular Medicine
Краткое описание
The physiopathology of non-insulin-dependent diabetes mellitus is associated with a dysfunction in the regulation of insulin secretion. The alpha 2-adrenoceptors have been reported to be involved in this alteration, although alpha 2-antagonists containing an imidazoline ring may stimulate insulin secretion independently of alpha 2-adrenoceptor blockage. Recently, a new "imidazoline-binding site" involved in the control of K(+)-ATP channels in the B cell has been proposed. In the course of searching for new antidiabetic agents, 1-alkyl-2-(4',5'-dihydro-1'H-imidazol-2'-yl)-4-benzylpiperazines, 1-benzyl-2-(4',5'-dihydro-1'H-imidazol-2'-yl)-4-alkylpiperazines, and 1-benzyl-2-(4',5'-dihydro-1'H-imidazol-2'-yl)-4-benzylpiperazines have been designed and evaluated as potential adrenoceptor antagonists. Pharmacological evaluation was performed in vivo using glucose tolerance tests performed on a rat model of type II diabetes obtained by injection of a low dose (35 mg/kg) of streptozotocin (STZ). For some compounds, binding experiments were performed on alpha 2 adrenoceptors and I1 and I2 imidazoline-binding sites. The biological and physicochemical data have been combined with molecular modeling studies to establish structure-activity relationships. The most active compound was 1-(2',4'-dichlorobenzyl)-2-(4',5'-dihydro-1'H-imidazol-2'-yl)- 4-methylpiperazine (7f); intraperitoneal administration (100 mumol/kg) of 7f strongly improved glucose tolerance in STZ diabetic rats. This effect seemed at least partly mediated by a significant increase of insulin secretion. Other compounds of the same family (7b, 16f, 23b) have also shown potent activity. We found no correlation between in vivo antihyperglycemic properties and in vitro affinities for alpha 2-adrenoceptors or I1, and I2 binding sites. These compounds can be considered as antihyperglycemic agents potentially useful for treatment of type II diabetes and are currently under complementary investigation.
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Rondu F. et al. Design and Synthesis of Imidazoline Derivatives Active on Glucose Homeostasis in a Rat Model of Type II Diabetes. 1. Synthesis and Biological Activities of N-Benzyl-N ‘-(arylalkyl)-2-(4‘,5‘-dihydro-1‘H-imidazol-2‘-yl)piperazines // Journal of Medicinal Chemistry. 1997. Vol. 40. No. 23. pp. 3793-3803.
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Rondu F., Le Bihan G., Wang X., Lamouri A., Touboul E., Dive G., Bellahsene T., PFEIFFER B., Renard P., Guardiola-Lemaitre B., Manechez D., Pénicaud L., Ktorza A., GODFROID J. Design and Synthesis of Imidazoline Derivatives Active on Glucose Homeostasis in a Rat Model of Type II Diabetes. 1. Synthesis and Biological Activities of N-Benzyl-N ‘-(arylalkyl)-2-(4‘,5‘-dihydro-1‘H-imidazol-2‘-yl)piperazines // Journal of Medicinal Chemistry. 1997. Vol. 40. No. 23. pp. 3793-3803.
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TY - JOUR
DO - 10.1021/jm9608624
UR - https://doi.org/10.1021/jm9608624
TI - Design and Synthesis of Imidazoline Derivatives Active on Glucose Homeostasis in a Rat Model of Type II Diabetes. 1. Synthesis and Biological Activities of N-Benzyl-N ‘-(arylalkyl)-2-(4‘,5‘-dihydro-1‘H-imidazol-2‘-yl)piperazines
T2 - Journal of Medicinal Chemistry
AU - Rondu, Frédéric
AU - Le Bihan, Gaëlle
AU - Wang, Xu’an
AU - Lamouri, Aazdine
AU - Touboul, Estéra
AU - Dive, Georges
AU - Bellahsene, Tounes
AU - PFEIFFER, Bruno
AU - Renard, Pierre
AU - Guardiola-Lemaitre, Béatrice
AU - Manechez, Dominique
AU - Pénicaud, Luc
AU - Ktorza, Alain
AU - GODFROID, Jean-Jacques
PY - 1997
DA - 1997/11/01
PB - American Chemical Society (ACS)
SP - 3793-3803
IS - 23
VL - 40
PMID - 9371245
SN - 0022-2623
SN - 1520-4804
ER -
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@article{1997_Rondu,
author = {Frédéric Rondu and Gaëlle Le Bihan and Xu’an Wang and Aazdine Lamouri and Estéra Touboul and Georges Dive and Tounes Bellahsene and Bruno PFEIFFER and Pierre Renard and Béatrice Guardiola-Lemaitre and Dominique Manechez and Luc Pénicaud and Alain Ktorza and Jean-Jacques GODFROID},
title = {Design and Synthesis of Imidazoline Derivatives Active on Glucose Homeostasis in a Rat Model of Type II Diabetes. 1. Synthesis and Biological Activities of N-Benzyl-N ‘-(arylalkyl)-2-(4‘,5‘-dihydro-1‘H-imidazol-2‘-yl)piperazines},
journal = {Journal of Medicinal Chemistry},
year = {1997},
volume = {40},
publisher = {American Chemical Society (ACS)},
month = {nov},
url = {https://doi.org/10.1021/jm9608624},
number = {23},
pages = {3793--3803},
doi = {10.1021/jm9608624}
}
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Rondu, Frédéric, et al. “Design and Synthesis of Imidazoline Derivatives Active on Glucose Homeostasis in a Rat Model of Type II Diabetes. 1. Synthesis and Biological Activities of N-Benzyl-N ‘-(arylalkyl)-2-(4‘,5‘-dihydro-1‘H-imidazol-2‘-yl)piperazines.” Journal of Medicinal Chemistry, vol. 40, no. 23, Nov. 1997, pp. 3793-3803. https://doi.org/10.1021/jm9608624.