- Curcuminoids
Chembox new
Name = CurcuminSeparation and determination of the physico-chemical characteristics of curcumin, demethoxycurcumin and bisdemethoxycurcumin. Author(s): L. Péret-Almeida, A.P.F. Cherubino, R.J. Alves, L. Dufossé and M.B.A. Glória. Source: Food Research International. Volume 38, Issues 8-9, October-November 2005, Pages 1039-1044. [http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6T6V-4GHRBYJ-9&_user=5915660&_coverDate=11%2F30%2F2005&_rdoc=1&_fmt=&_orig=search&_sort=d&view=c&_acct=C000068853&_version=1&_urlVersion=0&_userid=5915660&md5=31ef8e5c0d8983d74eb098289189a40f] ]
ImageFile =Curcumin structure (keto).svg
IUPACName = (1"E",6"E")-1,7-bis (4-hydroxy-
3-methoxyphenyl) -1,6-
heptadiene-3,5-dione
OtherNames = curcumin
diferuloylmethane
C.I. 75300
Natural Yellow 3
Section1 = Chembox Identifiers
SMILES = Oc1ccc(cc1OC)/C=C/C(=O)CC(=O)/C= C/c2ccc(O)c(OC)c2
CASNo = 458-37-7
Section2 = Chembox Properties
Formula = C21H20O6
MolarMass = 368.38 g/mol
Appearance = Bright Yellow
to Orange powder
MeltingPt = 183°C Chembox new
Name = Demethoxycurcumin
ImageFile = Demethoxycurcumin.jpg
IUPACName = 1,6-Heptadiene-3,5-dione,
1-(4-hydroxy-3-methoxyphenyl)
-7-(4-hydroxyphenyl)
OtherNames = 4-hydroxycinnamoyl(feroyl)
methane, curcumin II, BHCFM
Section1 = Chembox Identifiers
CASNo = 24939-17-1
SMILES = C(=CC(CC(C=Cc1ccc(cc1)O)=O)=O)c1cc(c(cc1)O)OC
Section2 = Chembox Properties
Formula = C20H18O5
MolarMass = 338.35 g/mol
Appearance = Yellow powder
MeltingPt = 172 °C Chembox new
Name = Bisdemethoxycurcumin
ImageFile = Bismethoxycurcumin.jpg
IUPACName = (1E,6E)-1,7-bis (4-hydroxy
phenyl) hepta-1,6-diene-
3,5-dione
OtherNames = Bis(4-hydroxycinnamoyl)methane, BHCMT
Section1 = Chembox Identifiers
CASNo = 24939-16-0
SMILES = C(=CC(CC(C=Cc1ccc(cc1)O)=O)=O)c1ccc(cc1)O
Section2 = Chembox Properties
Formula = C19H16O4
MolarMass = 308.33 g/mol
Appearance = Yellow powder
MeltingPt = 222 °CCurcuminoids are
curcumin s andderivative s of curcumins with differentchemical group s that have been formed to increasesolubility of curcumins and make them suitable fordrug formulation . Thesecompound s arepolyphenol s and produceyellow color.Manycurcumin characters are unsuitable fordrug design . They have poor solubility inwater atacid ic and physiologicalpH , they also hydrolyze rapidly inalkali nesolution s. Therefor, curcumin derivatives are synthezised to increase their solubility and hencebioavailability .Studies on curcumin and curcuminoids XXXI. Symmetric and asymmetric curcuminoids: Stability, activity and complexation with cyclodextrin. Author(s): Tomren MA (Tomren, M. A.), Masson M (Masson, M.), Loftsson T (Loftsson, T.), Tonnesen HH (Tonnesen, H. Hjorth). Source: INTERNATIONAL JOURNAL OF PHARMACEUTICS 338 (1-2): 27-34 JUN 29 2007 [http://www.ncbi.nlm.nih.gov/sites/entrez?cmd=Retrieve&db=PubMed&list_uids=17298869&dopt=Citation] ] Curcuminoids are soluble indimethyl sulfoxide (DMSO),aceton andethanol .Formulation and characterization of curcuminoids loaded solid lipid nanoparticles. Author(s): Tiyaboonchai W (Tiyaboonchai, Waree), Tunpradit W (Tunpradit, Watcharaphorn), Plianbangchang P (Plianbangchang, Pinyupa). Source: INTERNATIONAL JOURNAL OF PHARMACEUTICS 337 (1-2): 299-306 JUN 7 2007 [http://www.ncbi.nlm.nih.gov/sites/entrez?cmd=Retrieve&db=PubMed&list_uids=17287099&dopt=Citation] ] but are poorly soluble inlipid s. It's possible to increase their solubility in aquausphase withsurfactant s or co-surfactants. Antioxidant activities of curcumin, demethoxycurcumin and bisdemethoxycurcumin. Author(s): Jayaprakasha GK, Rao LJ, Sakariah KK Source: FOOD CHEMISTRY 98 (4): 720-724 2006 [http://portal.isiknowledge.com/portal.cgi?DestApp=WOS&Func=Frame] ] There have been synthesized curcumin derivatives that could possible be more potent than curcumin. Most common derivatives have differentsubstituent s on thephenyl group s.Now there is an increasing demand for demethoxycurcumin and (curcuminoids) because of their recently discoveredbiological activity .Cyclodextrins
Curcurminoids form a more stable
complex with solutions which containcyclodextrin towards hydrolytic degradations. The stability differs between size and characterzation of the cyclodextrins that are used.Dissolution of demethoxycurcumin, bisdemethoxycurcumin and curcumin are greatest in the [http://search.acros.com/_KFPNKUMHFZNBQNKQNHNMPOLQNV_?for=fishermy&search_type=1&sup=fishermy&show_fw=false&from=376&show_bp=true&show_rn=true&bl=25&found=1202&bgcolor=%23ffffff&bgcolor_td=%23EFEFFF&bgcolor_th=%234273CE&face_font=arial&color_font=%23000000&link=%23ffffFF&nlink=%23000000&alink=%23000000&vlink=%2366bbFF&style=white&submitUrlSearch=&bgcolor_th3=%234273CE&border=&show_pict=&show_mp=&show_den=&show_hr= hydroxypropyl-γ-cyclodextrin] (HPγCD) cavity. The curcuminoids which have asubstituent connected to the phenyl groups show more affinity for the HPγCD compound. Degradation rate is depended on pH of the solution and how much protection the cyclodextrins provide the curcuminoids. The derivatives are usually more stable than curcumin against hydrolysis in cyclodextrin solution. Nocovalent bond s are synthesized between the cyclodextrins and the curcuminoids so they are easily released from the complex.Micelles and nanoparticles
A drug design with curcuminoids in complex with
micelle s could be one solution of the insolubility of the curcuminoids. The curcuminoids would be in complex with thecore of the micelles similar to the complex inside the cyclodextrins. The micelles are dissolved in a suitablesolvent where the headgroups of the micelles interact with the solvent.Curcuminoids asloaded solid lipid nanoparticles (SLN) have been developed with great success by usingmicroemulsion technique. The loading capacity, the meanparticle size and size distribution are all factors that have to be considered when the effects of curcuminoids in different strength are observed because it could variate. The advantages of SLN are the possibilities of controlled drug release and drug targeting, protection of incorporatedcompound againstchemical degradation , no biotoxicity of the carrier, avoidance of organic solvent and no problems with respect to large scale production.In vitro studies show a prolonged release of curcuminoids from the nanoparticle preparate up to 12 hours and the curcuminoids maintained their physical and chemical stability after 6 months of storage in the absence oflight atroom temperature . The sensitivity of curcurminoids to light and oxygen is greatly reduced by formulation of curcuminoids in SLN.SLN in cosmetics
SLN preparate has been developed for
cosmetics where the curcuminoids are used in cream base. But there are some stability issues which have not been overcome yet, further studies need to be done to find a suitable formulation which can be carried out in order to prolong the stability of the curcuminoids. Nevertheless there have been improvements in formulation of some stable model cream preparations with SLN curcuminoids. It is suggested that most of the curcuminoids are incorporated at the SLN surface where they are diffused into the creammatrix until asteady state is reached. At this state the curcuminoids go from the cream to the dissolution medium. A possible burst release in creams containing curcuminoids have been reported where the curcuminoids are rapidly released in a sufficient amount from the cream into the skin and is followed by a controlled release.When SLN are prepared by microemulsion at a temperature with the range of 70-75°C an oil-in-water microemulsion is spontaneously formed. The SLN are obtained immediately when they are dispersed in the warm microemulsion into cold water, with the help of ahomogenizer . The cold water facilitates a rapidcrystallization of the lipids and therefore prevents aggregation of the lipids. Afterfreeze drying the yellow curcuminoids containing SLN were obtained and could easily be redispersed in water and the model cream. The SLN have uniform distribution and according toelectron micrograph scan they had a sphericalshape and smoothsurface .It has been reported that increasing the lipid content over 5-10%(w/w) increased the mean particle size and broader size distribution in most common cases. That range should there for be idealconcentration for formulation of the SLN.Incorporation of SLN
Incorporation is one thing that needs to be considered in formulation of SLN. Concentration of the lipid, emulsifier and co-emulsifier solution is a key factor on this conversion of the SLN. If the amount of emulsifier and co-emulsifier are increased but the lipid amount is constant the surface of the SLN which is formed will be too small to adsorb all the surfactant and co-surfactant molecules, and a formation of curcuminoids solution micelles will be created. This will then increase the water solubility of the curcuminoids and they could partition from the SLN into the micelles that were formed during a wash procedure. This will reduce the final incorporation efficacy on the surface of the SLN.
Anti-oxidant activity
The curcumin derivatives demethoxycurcumin and bisdemethoxycurcumin have, like curcurmin itself been tested for their
antioxidant activitiesin vitro . Antioxidants can be used to extend theshelf life for food and maintain their safety,nutrition al quality, [http://www.thefreedictionary.com/functionality functionality] and [http://www.thefreedictionary.com/palatability palatability] . Pure chemicals of curcumin and its derivatives are not available in the open market. [http://www.thefreedictionary.com/commercial Commercial] curcumin contains 77% curcumin, 17% demethoxycurcumin and 3% bisdemethoxycurcumin from theherb Curcuma longa. Curcumin is mainly produced inindustry aspigment by usingturmeric oleoresin as the startingmaterial which curcuminoids can beisolate d from. After the isolation of the curcurminoids, theextract which is about 75%liquor mainly containsoil ,resin and more curcuminoids which can be isolated further. This isolation method was used to demonstrate the antioxidant activities of curcuminoids, where they isolated pure curcuminoids from the main liquor. Oneresearch reported that curcumin was the strongest antioxidant, demethoxycurcumin the second strongest and bisdemethoxycurcumin the least effective. Curcuminoids nevertheless showed activity againstoxidation . Curcuminoids act as asuperoxide radical [http://www.thefreedictionary.com/scavenger scavenger] as well assinglet oxygen quench er and gives the antioxidant its effectiveness. Of the naturally accruing curcuminoids, one of the mainmetabolite s of curcumin, [http://ctd.mdibl.org/detail.go?type=chem&acc=C096277&queryTerms=tetrahydrocurcumin&queryType=contains&browser=r tetrahydrocurcumin] is the most potent antioxidant. The curcuminoids are capable of inhibiting damage to super coiledplasmid DNA byhydroxyl radical s. It was concluded that the derivatives of curcumin are good in trapping the [http://ctd.mdibl.org/detail.go?type=chem&acc=C004931&queryTerms=dpph&queryType=contains 2,2-diphenyl-1-picryhydrazyl] (DPPH) radical as efficiently as curcumin which is a well known antioxidant.Anti-inflammatory activity
Anti-inflammatory effects of curcumin and its derivatives are because of thehydroxyl and phenol groups in themolecule s. These groups are essential for inhibition ofprostaglandin synthetase andleukotriene s synthesis. A system with conjugated double bonds ordiene s is also believed to be responsible for the anti-inflammatory effect as well asantiparasitic activity. The diene system seems to make the compounds more lipophilic and therefore provide a betterskin penetration which could be good for that kind of drug preparation.Carcinogenesis activity
Studies suggest that the bioavailability of curcumin and possibly its derivatives is greatest in the
colon . The tissue in thegastrointestinal tract seems to be more exposed predominantly to unmetabolised curcumin than other tissues hence they could support clinical studies of curcumin as acolorectal cancer preventiveagent . Demethoxycurcumin has recently been tested in coloncancer and it showed more effective inhibitation ofcell division andapoptosis than curcumin. It is possible that the difference in apoptosis "in vitro" is connected to the degradation of the two chemicals and/or their stability.References
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