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6-Deoxy-D-gulopyranose is a monosaccharide, a type of sugar, that is structurally similar to D-glucose but with a missing oxygen atom at the sixth carbon position. This modification results in a hydroxyl group being replaced by a hydrogen atom, making it a deoxy sugar. It is a component of some natural products and can be found in certain glycosides and bacterial polysaccharides. The molecule adopts a pyranose ring structure, which is a six-membered ring commonly found in carbohydrates. 6-Deoxy-D-gulopyranose is important in the field of organic chemistry and biochemistry, as it can be used in the synthesis of various complex carbohydrates and has potential applications in the development of new drugs and vaccines.

643-17-4

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643-17-4 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 643-17-4 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 6,4 and 3 respectively; the second part has 2 digits, 1 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 643-17:
(5*6)+(4*4)+(3*3)+(2*1)+(1*7)=64
64 % 10 = 4
So 643-17-4 is a valid CAS Registry Number.

643-17-4SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 20, 2017

Revision Date: Aug 20, 2017

1.Identification

1.1 GHS Product identifier

Product name α-D-rhamnopyranose

1.2 Other means of identification

Product number -
Other names 6-deoxy-D-gulose

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:643-17-4 SDS

643-17-4Relevant academic research and scientific papers

New triterpenoid saponin from the stems of Albizia adianthifolia (Schumach.) W.Wight

Toukea, Daniel Djou,Kamto, Eutrophe Le Doux,Simo, Line Made,Mbing, Joséphine Ngo,Antheaume, Cyril,Haddad, Mohamed,Noté, Olivier Placide,Pegnyemb, Dieudonné Emmanuel

, p. 780 - 788 (2020/08/19)

As part of our continuing study of apoptosis-inducing saponins from Cameroonian Albizia genus, one new triterpenoid saponin, named adianthifolioside J (1), together with the known gummiferaoside E (2), were isolated from Albizia adianthifolia stems. The s

Oleanane-type saponins and prosapogenins from Albizia julibrissin and their cytotoxic activities

Han, Qinghua,Qian, Yi,Wang, Xuda,Zhang, Qingying,Cui, Jingrong,Tu, Pengfei,Liang, Hong

, (2021/04/02)

Two undescribed oleanane-type saponins, julibrosides K–L, along with three undescribed oleanane-type prosapogenins, julibrosides M–O, were isolated from the stem bark of Albizia julibrissin Durazz. and the mild alkaline hydrolysate of the total saponin, r

Chemical Constituents from the Roots of Polygala arillata and Their Anti-Inflammatory Activities

Xiang, Wei,Zhang, Guo-Dong,Li, Fang-Yi,Wang, Teng-Long,Suo, Tong-Chuan,Wang, Chun-Hua,Li, Zheng,Zhu, Yan

, (2019/01/23)

A new compound, named arillatanoside E, which was elucidated as 3-O-β-D-glucopyranosyl presenegenin 28-O-β-D-xylopyranosyl-(1 - 3)-β-D-xylopyranosyl-(1 - 4)-α-L-rhamnopyranosyl-(1 - 2)-(4-O-acetyl)-β-D-fucopyranosyl ester, along with 11 known compounds was isolated from the ethanolic extract of the roots of Polygala arillata. The 11 known compounds were identified as oleanolic acid (2), 3′-E-3,4,5-trimethoxy cinnamoyl-6-benzoyl sucrose (3), trans-ferulic acid (4), trans-feruloyl-glucoside (5), feruloyl-glucoside (6), 2,4,6-trimethoxy-1-O-β-D-glycoside (7), 3-methoxy-4-hydroxybenzoic acid (8), monopentadecanoin (9), sinapic acid (10), p-hydroxybenzaldehyde (11), and palmitic acid (12). Among them, seven isolated compounds 1, 2, 4, 5, 7, 8, and 10 exhibited little cytotoxic activity on macrophage RAW 264.7 cells. Then, the inhibitory effects of 7 isolates on nitric oxide (NO) production in lipopolysaccharide-activated macrophages were evaluated. As a result, 3 compounds have significant anti-inflammatory activity, and they were arillatanoside E (1), oleanolic acid (2), and 2,4,6-trimethoxy-1-O-β-D-glycoside (7).

Melanogenesis-Inhibitory and Cytotoxic Activities of Triterpene Glycoside Constituents from the Bark of Albizia procera

Zhang, Jie,Akihisa, Toshihiro,Kurita, Masahiro,Kikuchi, Takashi,Zhu, Wan-Fang,Ye, Feng,Dong, Zhen-Huan,Liu, Wen-Yuan,Feng, Feng,Xu, Jian

supporting information, p. 2612 - 2620 (2019/01/04)

Five oleanane-type triterpene glycosides including three new ones, proceraosides E-G (1-3), were isolated from a MeOH-soluble extract of Albizia procera bark. The structures of 1-3 were determined by use of NMR spectra, HRESIMS, and chemical methods. Compounds 1-5 exhibited inhibitory activities against the proliferation of the A549, SKBR3, AZ521, and HL60 human cancer cell lines (IC50 0.28-1.8 μM). Additionally, the apoptosis-inducing activity of compound 2 was evaluated by Hoechst 33342 staining and flow cytometry, while the effects of 2 on the activation of caspases-9, -8, and -3 in HL60 cells were revealed by Western blot analysis.

Acylated oleanane-type triterpene saponins from the flowers of Bellis perennis show anti-proliferative activities against human digestive tract carcinoma cell lines

Ninomiya, Kiyofumi,Motai, Chiaki,Nishida, Eriko,Kitagawa, Niichiro,Yoshihara, Kazuya,Hayakawa, Takao,Muraoka, Osamu,Li, Xuezheng,Nakamura, Seikou,Yoshikawa, Masayuki,Matsuda, Hisashi,Morikawa, Toshio

, p. 435 - 451 (2016/07/16)

Seven oleanane-type triterpene saponin bisdesmosides, perennisaponins N–T (1–7), were newly isolated from a methanol extract of daisy, the flowers of Bellis perennis L. (Asteraceae). The structures were determined based on chemical and physicochemical data and confirmed using previously isolated related compounds as references. The isolates, including 13 previously reported perennisaponins A–M (8–20), exhibited anti-proliferative activities against human digestive tract carcinoma HSC-2, HSC-4, and MKN-45 cells. Among them, perennisaponin O (2, IC50?=?11.2, 14.3, and 6.9?μM, respectively) showed relatively strong activities. The mechanism of action of 2 against HSC-2 was found to involve apoptotic cell death.

Leptocarposide: A new triterpenoid glycoside from Ludwigia leptocarpa (Onagraceae)

Mabou, Florence Declaire,Tebou, Perrin Lanversin Foning,Ngnokam, David,Haraka, Dominique,Voutquenne-Nazabadioko, Laurence

, p. 32 - 36 (2014/03/21)

A new triterpenoid bidesmoside (leptocarposide) possessing an acyl group in their glycosidic moiety (1), together with the known luteolin-8-C-glucoside (2) and 1-O-β-D-glucopyranosyl-(2S,3R,8E)-2-[(R)-2-hydroxypalmitoylamino]-8- octadecen-1,3- diol (3) was isolated from the n-butanol-soluble fraction of whole plant of Ludwigia leptocarpa (Nutt) Hara (Onagraceae). Structure of compound 1 has been assigned on the basis of spectroscopic data (1H and 13C NMR, 1H-1H COSY, HSQC, HMBC, and ROESY), mass spectrometry, and by comparison with the literature. This compound was further screened for its potential antioxidant properties by using the radical scavenging assay model 2,2-diphenyl-1-picrylhydrazyl and reveals non-potent antioxidant activities, while compound 2 shows SC50 of 0,038 mM.

METHOD FOR PRODUCING L-FUCOSE

-

, (2013/09/26)

Method for producing L-fucose includes in a first aspect, a method for the preparation of L-fucose, wherein L-fucose precursors are produced from pectin and L-fucose is produced from the L-fucose precursors; in a second aspect, a method for the preparation of L-fucose from D-galacturonic acid or a salt thereof, wherein L-fucose precursors are produced from D-galacturonic acid of a salt thereof, and L-fucose is produced from the L-fucose precursors; and an L-fucose precursor as shown in Formula A, wherein R is a linear or branched chain saturated hydrocarbon group with 1-6 carbon atoms, such as methyl, ethyl, n-propyl, i-propyl, n-butyl, i-butyl, s-butyl, t-butyl, n-hexyl, etc., preferably a methyl group.

METHOD FOR PRODUCING L-FUCOSE

-

, (2012/05/04)

The present invention provides: in a first aspect, a method for the preparation of L-fucose, wherein L-fucose precursors are produced from pectin and L-fucose is produced from the L-fucose precursors; in a second aspect, a method for the preparation of L-fucose from D-galacturonic acid or a salt thereof, wherein L-fucose precursors are produced from D-galacturonic acid or a salt thereof, and L-fucose is produced from the L-fucose precursors; and an L-fucose precursoras shown in Formula A below, wherein R is a linear or branched chain saturated hydrocarbon group with 1-6 carbon atoms, such as methyl, ethyl, n-propyl, i-propyl, n-butyl, i-butyl, s-butyl, t-butyl, n-hexyl, etc., preferably a methyl group.

Triterpenoid saponins from the seeds of Celosia argentea and their anti-inflammatory and antitumor activities

Wu, Qingbin,Wang, Yan,Guo, Meili

body text, p. 666 - 671 (2011/06/28)

Three new triterpenoid saponins, named celosin E (1), celosin F (2) and celosin G (3), together with a known compound cristatain (4), were isolated from the seeds of Celosia argentea L. (Amaranthaceae). All the isolated compounds were obtained for the first time from this plant. The structures of new compounds were characterized on the basis of extensive NMR experiments and mass spectrometry data. The antitumor and anti-inflammatory activities of the four compounds were tested in vitro.

Triterpene saponins of Maesa lanceolata leaves

Manguro, Lawrence Onyango A.,Midiwo, Jacob O.,Tietze, Lutz F.,Hao, Pang

experimental part, p. 172 - 198 (2011/06/09)

Chemical investigation of Maesa lanceolata leaves aqueous MeOH extract has led to the isolation of eight new triterpene glycosides identified as 16-oxo-28-hydroxyolean-12-ene 3-O-β-glucopyranosyl-(1''→6')-β- glucopyranoside 1, 16α, 28-dihydroxyolean-12-ene 3-O-β-[(6"-O- galloylglucopyranosyl-(1"→2')][β-glucopyranosyl-(1'''→6')] -β-glucopyranoside 2, 16α, 22α, 28-trihydroxyolean-12-ene 3-O-[β-glucopyranosyl-(1"→2')] [α-rhamnopyranosyl- (1'''→6']-β-glucopyranoside 3, 22α-acetyl-16α- hydroxyolean-12-en-28-al 3-O-[α-rhamnopyranosyl- (1""→6"')-β-glucopyranosyl-(1"'→3')] [β-glucopyranosyl-(1"→2')]-β-arabinopyranoside 4, 22α-acetyl-16α,21 β-dihydroxyoleanane-13β:28-olide 3-O-[β-glucopyranosyl-(1'''→6')] [6''-O-coumaroylglucopyranosyl- (1''→2')]-β-glucopyranoside 5, 16α,22α-diacetyl-21β- angeloyloleanane-13β:28-olide 3 β-O-[β-glucopyranosyl- (1''→2')][β-glucopyranosyl-(1'''→4')]-β-glucopyranoside 6, 16α, 22α, 28-trihydroxy-21β-angeloyloleanan-12-ene 3 β-O-[α-rhamnopyranosyl-(1'''→6'')][β-glucopyranosyl- (1''→2')]-β-xylopyranoside 7, 16α, 28-dihydroxy-22α- acetyl-21β-angeloylolean-12-ene 3-O-[β-galactopyranosyl- (1"→2')] [α-rhamnopyranosyl-(1'"→4')]-α- arabinopyranoside 8. Together with these were known compounds quercetin, myricetin, quercetin 3-O-rhamnopyranoside, myricetin 3-O-β-glucopyranoside, gallic acid, sistosterol 3-O-β-glucopyranoside, rutin, myricetin 3-O-α-rhamnopyranosyl-(1"→3')-β-glucopyranoside and quercetin 3,7-O-β-diglucopyranoside. Their structures were determined using spectroscopic methods as well as comparison with data from known compounds. The in vitro antibacterial activity of aqueous MeOH extract of the leaves of M. lanceolata was also investigated and zones of inhibition ranging from 28±0.1 to 10±0.2 mm were observed. The minimum inhibitory concentration (MIC) for the extract ranged between 100 to 1000 μg/ml with the highest activity being observed with Vibro cholerae. Among the pure isolates, compound 6 was the most active and its highest recorded MIC value was 62.5 μg/ml against V. cholerae. ARKAT-USA, Inc.

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