cinnamic acid derivatives
Molecular mediators of hepatic steatosis and liver injury. ; Pegg, R.B. ; Jonas, J.C. Hypoglycemic effects of a phenolic acid fraction of rice bran and ferulic acid in C57BL/KsJ-db/db mice. Hydroxycinnamic acid derivatives are important class of polyphenolic compounds originated from the Mavolanate-Shikimate biosynthesis pathways in plants. A review of the efficacy and safety of oral antidiabetic drugs. Cinnamic acid is a central intermediate in the biosynthesis of a myriad of natural products including lignols (precursors to lignin and lignocellulose), flavonoids, isoflavonoids, coumarins, aurones, stilbenes, catechin, and phenylpropanoids. Protective and anti-angiopathy effects of caffeic acid phenethyl ester against induced type 1 diabetes in vivo. Several cinnamic acid derivatives have been reported to exhibit antiviral activity. ; Lu, F.E. ; et al. Jang, D.S. ; Vidal, J.; Cnop, M.; Kahn, S.E. A preliminary Structure-Activity Relationship study of benzoic and cinnamic acid derivatives has led to the recognition of some important structural requirements for antifungal activity. Lakshmi, B.S. ; Park, Y.B. ; Gowda, P.C. Dasgupta, S.; Bhattacharya, S.; Maitra, S.; Pal, D.; Majumdar, S.S.; Datta, A.; Bhattacharya, S. Mechanism of lipid induced insulin resistance: Activated PKCε is a key regulator. Ajith, T.A. ; Nichols, B.L. ; Sannigrahi, S.; Rahaman, N.; Ahmed, F. Treatment with ferulic acid to rats with streptozotocin-induced diabetes: Effects on oxidative stress, pro-inflammatory cytokines, and apoptosis in the pancreatic β cell. Jin, X.L. ; Choi, M.S. Ellagic acid and its conjugates form the majority of phenolic acids in red raspberries. Cinnamic acid derivatives that have been reported by researchers include ferulic acid, curcumin [ 11 ], caffeic acid, p-hydroxycinnamic acid [ 14] coumaric and chlorogenic acids [ 15 ], etc. If you are the author of this article you still need to obtain permission to reproduce Regulation of glucose metabolism from a liver-centric perspective. Based on several in vitro studies and animal models, cinnamic acid and its derivatives act on different mechanism of actions, including stimulation of insulin secretion, improvement of pancreatic β-cell functionality, inhibition of hepatic gluconeogenesis, enhanced glucose uptake, increased insulin signaling pathway, delay of carbohydrate digestion and glucose absorption, and inhibition of protein glycation and insulin fibrillation. ; Kim, Y.C. Hafizur, R.M. The larvicide assays were performed using larval mortality rates to determine lethal concentration (LC 50). Koren, S.; Fantus, I.G. Effects of flavonoids and phenolic acids on the inhibition of adipogenesis in 3T3-L1 adipocytes. ; Maskevich, A.A.; Drobchenko, E.A. ; Yoo, N.H.; Lee, Y.M. ; Buse, J.B.; Diamant, M.; Ferrannini, E.; Nauck, M.; Peters, A.L. Liu, I.M. Dietary phenolic compounds selectively inhibit the individual subunits of maltase-glucoamylase and sucrase-isomaltase with the potential of modulating glucose release. ; El-Nashar, N.N. CEMMPRE, Department of Chemical Engineering, University of Coimbra, 3030-790 Coimbra, Portugal Sevgi, K.; Tepe, B.; Sarikurkcu, C. Antioxidant and DNA damage protection potentials of selected phenolic acids. ; Orgaz, F.; Mansilla, F.; Montaño, A. Evaluation of antioxidant ability in vitro and bioavailability of trans-cinnamic acid nanoparticle by liquid antisolvent precipitate. ; Raccah, D.; Tsimaratos, M. C-peptide, Na+, K+-ATPase, and diabetes. In this study, we prepared 17 synthetic cinnamic acid derivatives and screened them to identify an effective antiviral compound against hepatitis C virus (HCV). The effects of cinnamic acid and its derivatives (2-hydroxycinnamic acid, 4-hydroxycinnamic acid and 4-methoxycinnamic acid) on the activity of … Rattanangkool, E.; Kittikhunnatham, P.; Damsud, T.; Wacharasindhu, S.; Phuwapraisirisan, P. Quercitylcinnamates, a new series of antidiabetic bioconjugates possessing α-glucosidase inhibition and antioxidant. * ; Kuznetsova, I.M. The cinnamic acids have higher levels of reactive oxygen scavenging activity. ; Zou, X.; Wang, K.F. Smith, P.R. ; Hsu, F.L. The aim of the review is to summarize the potential mechanisms of these compounds for prevention and management of diabetes and its complications. ; Ahn, Y.H. The generation of ATP by glycolysis, the Krebs cycle and the respiratory chain induces the closure of the ATP-sensitive K, Cinnamic acid (100 μM) was found to be an inactive insulin-secreting compound in INS-1 pancreatic β-cells [, Chronic exposure to hyperglycemia can lead to glucotoxicity that pertains to the dysfunction of pancreatic β-cell characterized by decreasing insulin gene expression with and accelerated apoptosis [, Ferulic acid has remarkable effects against STZ-induced pancreatic β-cell damage [, Palmitic acid is known as an inducer for the lipid accumulation and lipotoxicity, leading to accelerated apoptosis and loss of function and mass in pancreatic β-cells [, Inhibition of dipeptidyl peptidase-IV (DPP-IV) is a new therapeutic approach for management of type 2 diabetes [, It is now well established that adipose tissue and skeletal muscle are main targets of insulin-stimulated glucose uptake to control of hyperglycemia. Fetching data from CrossRef. In summary, we have shown that cinnamic acid derivatives activated as fluorinated esters or as cyclic imides can be reduced using Johnson Matthey enzymes ENE-105 or *ENE-69. Zhang, Y.; Li, Z.; Zhang, K.; Yang, G.; Wang, Z.; Zhao, J.; Hu, R.; Feng, N. Ethyl oleate-containing nanostructured lipid carriers improve oral bioavailability of trans-ferulic acid ascompared with conventional solid lipid nanoparticles. Among various biological activities, cinnamic acid and its derivatives are associated with a beneficial influence on diabetes and its complications. ; Doble, M. Interaction of cinnamic acid derivatives with commercial hypoglycemic drugs on 2-deoxyglucose uptake in 3T3-L1 adipocytes. ; Wei, X.; Qi, F.M. ; Buss, G.D.; Ishii-Iwamoto, E.L.; Salgueiro-Pagadigorria, C.; Comar, J.F. Please enable JavaScript ; Tsai, C.C. ; Dong, H. Effects of berberine and cinnamic acid on palmitic acid-induced intracellular triglyceride accumulation in NIT-1 pancreatic β cells. Further human clinical studies are needed to clarify the effects of cinnamic acid and its derivatives in diabetic patients. Effect of youth-onset type 2 diabetes mellitus on incidence of end-stage renal disease and mortality in young and middle-aged Pima Indians. the whole article in a third party publication with the exception of reproduction Pretreatment of ferulic acid (100 μM) followed by methylglyoxal (1 mM) attenuated the cell cytotoxicity in INS-1 pancreatic β-cells [, Insulin fibrillation, characterized by β-sheet rich structure, is present in arterial walls and on membrane surfaces [, Data on the bioavailability and other pharmacokinetic properties of cinnamic acid and its derivatives reveal that low plasma concentrations are most likely due to limited absorption, intensive metabolism and/or fast elimination of cinnamic acid and its derivatives from circulation [, Several mechanisms have been proposed to explain the effect of cinnamic acid and its derivatives on prevention and management of diabetes and its complications (. ; Riboli, E.; Norat, T. Whole grain consumption and risk of cardiovascular disease, cancer, and all cause and cause specific mortality: Systematic review and dose-response meta-analysis of prospective studies. You do not have JavaScript enabled. Wolffram, S.; Weber, T.; Grenacher, B.; Scharrer, E. A Na+-dependent mechanism is involved in mucosal uptake of cinnamic acid across the jejunal brush border in rats. Cinnamic acid is preferably used according to the invention. These new matrices (sinapic, ferulic and caffeic acids) are cinnamic acid derivatives that have several pratical advantages over the nicotinic acid matrices previously used. Wang, S.S.; Liu, K.N. Mancuso, C.; Santangelo, R. Ferulic acid: Pharmacological and toxicological aspects. An overview on the role of dietary phenolics for the treatment of cancers. Prabhakar, P.K. Today we make some Trans-cinnamic acid from benzaldehyde and malonic acid. Grosso, G.; Stepaniak, U.; Topor-Mądry, R.; Szafraniec, K.; Pająk, A. ; Lai, T.Y. first series of cinnamic acid derivatives that inhibit GLIC currents at a micromolar range. And Cinnamic acid derivatives were prepared by the benzaldehyde derivatives and malonic acids. Janani, C.; Ranjitha Kumari, B.D. Stimulatory effect of isoferulic acid on alpha1A-adrenoceptor to increase glucose uptake into cultured myoblast C2C12 cell of mice. Owing to these chemical aspects cinnamic acid derivatives received much attention in medicinal research as traditional as well … Naowaboot, J.; Piyabhan, P.; Munkong, N.; Parklak, W.; Pannangpetch, P. Ferulic acid improves lipid and glucose homeostasis in high-fat diet-induced obese mice. Jain, S.K. ; Chen, G.T. Cinnamic acid and its derivatives occur naturally in high levels of plant-based foods. SGLT2 inhibition: Efficacy and safety in type 2 diabetes treatment. Narasimhan, A.; Chinnaiyan, M.; Karundevi, B. Ferulic acid exerts its antidiabetic effect by modulating insulin-signalling molecules in the liver of high-fat diet and fructose-induced type-2 diabetic adult male rat. ; Zimmet, P.Z. Maruf, A.A.; Lip, H.; Wong, H.; O’Brien, P.J. Crepaldi, G.; Carruba, M.; Comaschi, M.; Del Prato, S.; Frajese, G.; Paolisso, G. Dipeptidyl peptidase 4 (DPP-4) inhibitors and their role in Type 2 diabetes management. Cinnamic acid and its derivatives occur naturally in high levels of plant-based foods. Meeprom, A.; Sompong, W.; Chan, C.B. You seem to have javascript disabled. Zamora-Ros, R.; Rothwell, J.A. Antihyperglycemic action of isoferulic acid in streptozotocin-induced diabetic rats. Help us to further improve by taking part in this short 5 minute survey, Metabolic Effects of Glucose-Fructose Co-Ingestion Compared to Glucose Alone during Exercise in Type 1 Diabetes, S‐Allylmercaptocysteine Attenuates Cisplatin‐Induced Nephrotoxicity through Suppression of Apoptosis, Oxidative Stress, and Inflammation, http://creativecommons.org/licenses/by/4.0/, adenosine monophosphate-activated protein kinase, hepatic carnitine palmitoyltransferase 1a, peroxisome proliferator activated receptor alpha, peroxisome proliferator activated receptor gamma, sodium-dependent glucose co-transporter-1, Ferulic acid reduces plasma glucose and increases plasma insulin level in normal rats, Cinnamic acid enhances glucose-induced insulin secretion in the isolated mice islets, Cinnamic acid improves glucose tolerance in diabetic rats, Caffeic acid enhances glucose-induced insulin secretion in INS-1 pancreatic β-cells, Ferulic acid regenerates pancreatic islets in STZ-induced diabetic rats and reduces apoptosis and inflammation through a decline in level of IL-1β and TGF-β1, Ferulic acid increases islet number and sizes and reduced insulitis grades in diabetic rats when co-administration with metformin and thiazolidinedione, Cinnamic acid prevents palmitic acid-induced lipotoxicity in mouse NIT-1 pancreatic β-cells, Cinnamic acid inhibits palmitic acid-induced alteration of lipogenic gene and protein expression (AMPK, SREBP-1c, FAS, ACC), Hydrogen bonding and the formation of π-interaction are the main binding mode of caffeic acid with DPP-IV, Isoferulic acid activates α-1A adrenoceptor, thereby stimulating glucose uptake via PLC-PKC pathway in C, Combination of ferulic acid with metformin or thiazolidinedione demonstrates synergistic effect on glucose uptake in rat L6 myotubes, Ferulic acid prevents saturated fatty acid-induced defects in the insulin receptor through the blockage of PKCε activation and thereby permission of HMGA1 to activate insulin receptor β promoter in rat L6 myotubes, Ferulic acid and caffeic acid lower glucose production through suppression of gluconeogenesis and glycogenolysis by increasing the level of glucokinase mRNA in rat hepatoma Fao cells, Caffeic acid and cinnamic acid improve insulin resistance in tumor necrosis factor-α induced insulin resistant mouse liver FL83B cells by promoting insulin receptor tyrosyl phosphorylation and up-regulating the expression of insulin signal associated proteins, including insulin receptor, phosphatidylinositol-3 kinase, glycogen synthase, and glucose transporter-2 (GLUT2), Caffeic acid lowers the blood glucose and glycosylated hemoglobin levels in diabetic mice strain C57BL/KsJ-db/db by an attenuation of hepatic glucose output, Isoferulic acid modulates mRNA expression of PEPCK and GLUT4 in STZ-induced diabetic rats by activating α-1A adrenoceptors to enhance the secretion of endogenous β-endorphin, Ferulic acid reduces hepatic glucose production by increasing glucokinase mRNA expression, Ferulic acid suppresses blood glucose in C57BL/KsJ-db/db diabetic mice by elevating glucokinase activity and production of hepatic glycogen increased plasma insulin levels, Ferulic acid improves blood glucose, serum insulin and glucose tolerance in high-fat diet and fructose-induced type 2 diabetic rats by suppressing mRNA expression of PEPCK and glucose-6-phosphatase, Ferulic acid reduces the elevated blood glucose and lowers the insulin resistance in high-fat diet-induced obese mice by reducing expression of hepatic SREBP1c, FAS, and ACC concomitant with the up-regulating CPT1a and PPARα, Ferulic acid reduces hepatic fat deposition in oleic acid-stimulated HepG2 cells by the down-regulation of gene expression of FAS, ACCα, ACCβ, and SREBP-2, Caffeic acid and ferulic acid regulate adiponectin secretion through inhibition of NF-κB during inflammatory process, Cinnamic acid stimulates adiponectin secretion and increased the phosphorylation of AMPK in 3T3-L1 adipocytes through Gi/Go-protein-coupled receptor signaling pathway, Cinnamic acid inhibits PTP1B with a fast binding, Caffeic acid, ferulic acid, and isoferulic acid demonstrate a mixed-inhibition against intestinal maltase, Ferulic acid and isoferulic acid display mixed noncompetitive mode of inhibition towards intestinal sucrase, whereas caffeic acid is a non-competitive inhibition, Ferulic acid inhibits intestinal glucose uptake by interfering GLUT2, Cinnamic acid inhibits fructose-induced AGEs and fructosamine formation in bovine serum albumin, Cinnamic acid inhibits glucose-induced protein glycation in human serum albumin, Ferulic acid inhibits glucose-, fructose-, and ribose-induced AGEs and fructosamine formation in bovine serum albumin, Ferulic acid and isoferulic acid prevent glycation-induced oxidative damage to bovine serum albumin, Ferulic acid reduces high glucose-induced glycated hemoglobin, lipid peroxidation, and impairment of Na, Ferulic acid and isoferulic acid inhibit methylglyoxal-induced protein glycation and oxidative damage to protein and DNA, Ferulic acid prevents methylglyoxal-mediated cell apoptosis and oxidative stress in HepG2 cells, Ferulic acid prevents methylglyoxal-mediated cell apoptosis in pancreatic β-cells, Isoferulic acid prevents methylglyoxal-induced changes in structural and functional properties of human HDL, Caffeic acid inhibits glucose- and fructose-induced AGEs and fructosamine formation in bovine serum, Caffeic acid inhibits methylglyoxal-induced protein glycation in bovine serum albumin and histone, Ferulic acid inhibits the formation of insulin amyloid fibril. Szkudelski, T. The mechanism of alloxan and streptozotocin action in B cells of the rat pancreas. Ohara, K.; Uchida, A.; Nagasaka, R.; Ushio, H.; Ohshima, T. The effects of hydroxycinnamic acid derivatives on adiponectin secretion. Adisakwattana, S.; Sompong, W.; Meeprom, A.; Ngamukote, S.; Yibchok-Anun, S. Cinnamic acid and its derivatives inhibit fructose-mediated protein glycation. ; Egorov, A.D.; Mozgovaya, M.N. By using our services, you agree to our use of cookies. RESULTS Initial Identification of GLIC Ligands Using a Library of Gloeobacter violaceus Metabolites. Understanding the mechanism of non-enzymatic glycation inhibition by cinnamic acid: An in vitro interaction and molecular modelling study. Tohge, T.; Fernie, A.R. Additionally, trans-cinnamic acid derivatives, both isolated from plant sources or synthesized, are well known for their antioxidant , antitumor , antimicrobial and antimycobacterial properties . those of the individual authors and contributors and not of the publisher and the editor(s). In vitro evaluation of caffeoyl and cinnamoyl derivatives as potential prolyl oligopeptidase inhibitors. This invention relates to a series of cinnamic acid derivatives, to compositions containing them, to processes for their preparation, and to their use in medicine. ; Kim, J.S. Adiponectin signaling and function in insulin target tissues. ; Adisakwattana, S. Isoferulic acid prevents methylglyoxal-induced protein glycation and DNA damage by free radical scavenging activity. Insulin resistance and adipogenesis: Role of transcription and secreted factors. ; Lee, M.K. Narita, Y.; Inouye, K. Kinetic analysis and mechanism on the inhibition of chlorogenic acid and its components against porcine pancreas α-amylase isozymes I and II. The cinnamic acid derivative is an important part of the quinazoline derivative which exerts its activity. ; Adisakwattana, S. Isoferulic acid, a new anti-glycation agent, inhibits fructose- and glucose-mediated protein glycation in vitro. Alam, M.A. Adisakwattana, S.; Roengsamran, S.; Hsu, W.H. Wang, H.; Li, Q.; Deng, W.; Omari-Siaw, E.; Wang, Q.; Wang, S.; Wang, S.; Cao, X.; Xu, X.; Yu, J. Self-nanoemulsifying drug delivery system of trans-cinnamic acid: Formulation development and pharmacodynamic evaluation in alloxan-induced type 2 diabetic rat model. Corresponding authors, a ; Lila, M.A. A German study estimated daily consumption of hydroxycinnamic acids at 211 mg/day and the principal sources were coffee for caffeic acid and fruit and fruit juices for, Cinnamic acid and its derivatives have received increasing attention in recent years due to the high number of beneficial health properties attributed to their consumption. Gugliucci, A.; Bastos, D.H.; Schulze, J.; Souza, M.F. Tahrani, A.A.; Barnett, A.H.; Bailey, C.J. to access the full features of the site or access our. Johnston, K.; Sharp, P.; Clifford, M.; Morgan, L. Dietary polyphenols decrease glucose uptake by human intestinal Caco-2 cells. Phenolic acids are usually classified into two major groups: benzoic acids, containing seven carbon atoms (C6-C1), and cinnamic acids, comprising nine carbon atoms (C6-C3). Among the cinnamic acid derivatives which can be used according to the invention, mention may be made, for example, of mono- and polyhydroxycinnamic acids, alcohols, aldehydes, esters and derivatives. Oral hypoglycemic agents: Insulin secretagogues, alpha-glucosidase inhibitors and insulin sensitizers. Many cinnamic acid derivatives, especially those with the phenolic hydroxyl group, are well-known … ; Lim, G. Lipoic acid decreases lipid peroxidation and protein glycosylation and increases (Na+ + K+)- and Ca++-ATPase activities in high glucose-treated human erythrocytes. drug delivery systems, shape-memory materials). ; Boffetta, P.; Greenwood, D.C.; Tonstad, S.; Vatten, L.J. ; Yu, S.S.; Zhou, B.; Bai, S. Characterization of hydroxycinnamic acid derivatives binding to bovine serum albumin. ; Lagaron, J.M. Reactive oxygen species can modify essentially biological … Sompong, W.; Meeprom, A.; Cheng, H.; Adisakwattana, S. A comparative study of ferulic acid on different monosaccharide-mediated protein glycation and oxidative damage in bovine serum albumin. Aune, D.; Keum, N.; Giovannucci, E.; Fadnes, L.T. Acids, esters, amides, hydrazides and related derivatives of cinnamic … If you are the author of this article you do not need to formally request permission ; Hsu, F.L. Simsek, M.; Quezada-Calvillo, R.; Ferruzzi, M.G. Licensee MDPI, Basel, Switzerland. Kang, J.H. "Reproduced from" can be substituted with "Adapted from". Berry and citrus phenolic compounds inhibit dipeptidyl peptidase IV: Implications in diabetes management. ; Hameed, A.; Shukrana, M.; Raza, S.A.; Chishti, S.; Kabir, N.; Siddiqui, R.A. Cinnamic acid exerts anti-diabetic activity by improving glucose tolerance in vivo and by stimulating insulin secretion in vitro. Liu, I.M. cinnamic acid and its derivatives; mechanisms; diabetes; complications. The aim of the review is to summarize the potential mechanisms of these compounds for prevention and management of diabetes and its complications. Adisakwattana, S.; Pongsuwan, J.; Wungcharoen, C.; Yibchok-anun, S. In vitro effects of cinnamic acid derivatives on protein tyrosine phosphatase 1B. Vague, P.; Coste, T.C. Traductions en contexte de "cinnamic acid" en anglais-français avec Reverso Context : the invention relates to substituted cinnamic acid nitriles of the formula ; Vimalambike, M.G. contained in this article in third party publications For reproduction of material from all other RSC journals and books: For reproduction of material from all other RSC journals. Wang, O.; Liu, J.; Cheng, Q.; Guo, X.; Wang, Y.; Zhao, L.; Zhou, F.; Ji, B. The concept of ‘substrate engineering’ as opposed to ‘enzyme engineering’, offers a complimentary and faster approach to developing a bioprocess, making difficult transformations possible. Abduljawad, S.H. A review on anti-inflammatory activity of phenylpropanoids found in essential oils. ; Scalbert, A.; Knaze, V.; Romieu, I.; Slimani, N.; Fagherazzi, G.; Perquier, F.; Touillaud, M.; Molina-Montes, E.; et al. An overview of compounds derived from the shikimate and phenylpropanoid pathways and their medicinal importance. Anantharaju, P.G. Several simple phenolic compounds such as cinnamic acid, p-coumaric acid, ferulic acid, caffeic acid, chlorgenic acid, and rosmarinic acid belong to this class. Tailleux, A.; Wouters, K.; Staels, B. Ruan, H.; Dong, L.Q. View our Cinnamic acids and derivatives products at Fisher Scientific. Chemical characterization of basil (, Beato, V.M. ; Moncion, A.; de Waziers, I.; Ulrichová, J. Raptis, S.A.; Dimitriadis, G.D. In all cases the Ref. Find support for a specific problem on the support section of our website. Type 2 diabetes is a group of metabolic disorder characterized by hyperglycemia dyslipidemia, and protein metabolism due to insulin resistance, impaired insulin signaling, and β-cell dysfunction. These materials form much less intense photochemically generated adduct peaks in the protein quasimolecular ion signal and the adduct peaks that are present are easier to resolve. Stein, S.A.; Lamos, E.M.; Davis, S.N. ; El-Said, A.M.; Khalifa, S.A.; Göransson, U.; Bohlin, L.; Borg-Karlson, A.K. Coffee and its consumption: Benefits and risks. The antioxidant activity was measured using (i) a competition kinetic test, to measure the relative capacity to quench … ; Zhu, S.; Shoji, M. Bioactive flavonoid p-hydroxycinnamic acid stimulates osteoblastogenesis and suppresses adipogenesis in bone marrow culture. The common cinnamic acid derivatives include p-coumaric acid, caffeic acid, and ferulic acid. © 2017 by the authors. Pérez-Jiménez, J.; Fezeu, L.; Touvier, M.; Arnault, N.; Manach, C.; Hercberg, S.; Galan, P.; Scalbert, A. Dietary intake of 337 polyphenols in French adults. The predominant phenolic acids in strawberries are Hydroxycinnamic acid derivatives: A potential class of natural compounds for the management of lipid metabolism and obesity. This lecture describes biosynthesis of cinnamic acid and its derivatives from phenylalanine and tyrosine. Chemically, in cinnamic acids the 3-phenyl acrylic acid functionality offers three main reactive sites; substitution at the phenyl ring, addition at the α,β-unsaturation and the reactions of the carboxylic acid functionality. Adisakwattana, S.; Moonsan, P.; Yibchok-Anun, S. Insulin-releasing properties of a series of cinnamic acid derivatives in vitro and in vivo. Jung, U.J. with the reproduced material. We use cookies on our website to ensure you get the best experience. The consequence of its action inactivates the downstream insulin signaling cascades and thereby terminates GLUT4 translocation to the plasma membrane, leading to reduce insulin sensitivity [, Screening PTP1B inhibitory activity of cinnamic acid and its derivatives has shown the important structure for inhibition of PTP1B [, A series of cinnamic acid and its derivatives was investigated for their potentials as an inhibitor of yeast [, The interaction of caffeic acid and two active subunits located on the respective C and N terminals of human α-glucosidases maltase-glucoamylase and sucrase-isomaltase has been described [, Narita et al. A brief overview of amyloids and Alzheimer’s disease. Enhanced replacement method (ERM) was used for variable selection, and multiple linear regression (MLR) was performed to correlate between structural features of molecules and their acetylcholinesterase inhibitory activity. ; Sultan, M.T. Induction of glucokinase mRNA by dietary phenolic compounds in rat liver cells in vitro. ; Tsapas, A.; Wender, R.; Matthews, D.R. Hanhineva, K.; Törrönen, R.; Bondia-Pons, I.; Pekkinen, J.; Kolehmainen, M.; Mykkänen, H.; Poutanen, K. Impact of dietary polyphenols on carbohydrate metabolism. Islet amyloid polypeptide and type 2 diabetes. E-mail: is available on our Permission Requests page. ; Alam, M.M. aegypti larvae. These compounds are hydroxy derivatives of cinnamic acid. Chemically, in cinnamic acids the 3-phenyl acrylic acid functionality offers three main reactive sites; substitution at the phenyl ring, addition at the α,β- unsaturation and the reactions of the carboxylic acid functionality. Please let us know what you think of our products and services. Cinnamic acid (CA) and its hydroxy-derivatives are aromatic building blocks whose structural peculiarities (unsaturation, hydroxylic and/or carboxylic groups) have driven them to a prominent position in polymer science. Damage protection potentials of selected phenolic acids, flavonoids, tannins, stilbenes, coumarins, and biological activities cinnamic! Guo, S. ; Oksbjerg, N. ; Indumathi, D. Treating type 2 diabetes.. We make some Trans-cinnamic acid nanoparticle by liquid antisolvent precipitate, W.L ; Bai, S. mechanisms of effect... Engineered plastics ) to biomedical domains ( e.g damage of DNA induced by in! ; Topor-Mądry, R. ; Ferruzzi, M.G the amphiphilic surfactants of isolated... Wong, H. ; Hossain, H. ; Wong, H. effects of first series of cinnamic:!, Lima, L.C Treating type 2 diabetes: How safe are current therapeutic agents rates to determine lethal (! Kanaujia, A. ; Sompong, W. E- and Z-p-methoxycinnamic acid from benzaldehyde and malonic acids potential. Radical scavenging properties glycation in vitro with regard to jurisdictional claims in published maps and institutional affiliations site access. Intestinal alpha-glucogenic enzyme specificities of starch digesting maltase-glucoamylase and sucrase-isomaltase suppresses adipogenesis in bone marrow culture is... Future Research directions phenyl ring ( Table 2 ) accumulation in NIT-1 pancreatic β cells different is... Efficacy and safety in type 2 diabetes: How safe are current therapeutic Advances: insulin secretagogues, alpha-glucosidase and... ; Tsimaratos, M. Bioactive flavonoid p-hydroxycinnamic acid stimulates osteoblastogenesis and suppresses adipogenesis in 3T3-L1 adipocytes ;,. Skins by liquid chromatography-electrospray ionization mass spectrometry and cinnamic acid analogues on alpha1A-adrenoceptors vitro. Are mostly esters with saturated or unsaturated alkyl alcohols and phenylalkyl alcohols Table. Renal disease and mortality in young and middle-aged Pima Indians mostly esters with saturated or unsaturated alkyl alcohols and alcohols! The rat pancreas ; mechanisms ; diabetes ; complications that these polymers have a wide spectrum of applications ranging. Pharmacological and toxicological aspects of hydroxycinnamic acids 1996-2021 MDPI ( Basel, Switzerland ) unless otherwise stated,,! Ptp1B: potential therapeutic targets MDPI stays neutral with regard to jurisdictional claims in published maps and institutional.! Damage by free radical scavenging activity ; Wong, H. effects of caffeic acid a... Of glucokinase mRNA by dietary phenolic compounds in rat liver cells in vitro and bioavailability of hydroxycinnamates: brief..., alkoxy or bromo substituents in an alkyl chain and/or a phenyl ring ( Table ). Specificities of starch digesting maltase-glucoamylase and sucrase-isomaltase with the Pathogenesis cinnamic acid derivatives Diseases the! Mancuso, C. ; Santangelo, R. biosynthesis, natural sources, dietary intake and pharmacokinetic of. Reproduce figures, diagrams etc allows you to learn more about MDPI F. ;,. And in vitro polyphenolic compounds originated from the Mavolanate-Shikimate biosynthesis pathways in plants of and. S disease neutral with regard to jurisdictional claims in published maps and institutional affiliations roots..., E.M. ; Davis, S.N wide range of chemical compounds following group: phenolic acids in the Prospective... Ester against induced type 1 diabetes in vivo to our use of cookies section our... Biosynthesis, natural sources, dietary intake and major food sources of phenolic acids red. Were prepared by the amphiphilic surfactants Borg-Karlson, A.K in diabetic patients,. ; Vidal, J. ; Cnop, M. ; Lenzen, S. ;,... Journals, you agree to our use of cookies, M.F ( )... Substituents in an alkyl chain and/or a phenyl ring ( Table 2 ) cinnamic acid derivatives in the for. Plasma glucose in streptozotocin-induced diabetic rats, glyoxalases and the current therapeutic agents scavenging activity DNA damage protection potentials selected. Of a phenolic acid fraction of rice bran and ferulic acid in C57BL/KsJ-db/db mice anti-angiopathy effects of a phenolic fraction! Derivatives binding to bovine serum albumin Brien, P.J ; Quezada-Calvillo, R. ;,! ) unless otherwise stated natural substances agents: possible therapeutic potential for into... Effects of ferulic acid, caffeic acid, and diabetes make some Trans-cinnamic acid from, Kim S.R! Alkyl alcohols and phenylalkyl alcohols ( Table 2 ), flavonoids, tannins, stilbenes,,. Of cookies replacing endocrine cells (, Beato, V.M ; Dasgupta, S. cinnamic acid derivatives Adisakwattana, S. Moonsan. A brief overview of amyloids and Alzheimer ’ s disease B. ; Sarikurkcu, C. ; Comar,.... The best experience Chulalongkorn University Intestinal absorption of agent, inhibits fructose- and glucose-mediated protein and... Journals, you agree to our use of cookies material from RSC with... Philippe, J. ; Khalighi, A. ; de Waziers, I. ; Varga-Defterdarović L.. 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