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4-(chloromethyl)-9-methoxy-7H-furo[3,2-g]chromen-7-one is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

43111-03-1

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43111-03-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 43111-03-1 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 4,3,1,1 and 1 respectively; the second part has 2 digits, 0 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 43111-03:
(7*4)+(6*3)+(5*1)+(4*1)+(3*1)+(2*0)+(1*3)=61
61 % 10 = 1
So 43111-03-1 is a valid CAS Registry Number.

43111-03-1SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 18, 2017

Revision Date: Aug 18, 2017

1.Identification

1.1 GHS Product identifier

Product name 4-(chloromethyl)-9-methoxyfuro[3,2-g]chromen-7-one

1.2 Other means of identification

Product number -
Other names 4-(chloromethyl)-9-methoxy-7H-furo[3,2-g]chromen-7-one

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:43111-03-1 SDS

43111-03-1Relevant academic research and scientific papers

4-Tert-Butylperoxymethyl-9-Methoxypsoralen as Intercalating Photochemical Alkoxyl-Radical Source for Oxidative DNA Damage

Adam, Waldemar,Arnold, Markus A.,Grimm, Günther N.,Saha-M?ller, Chantu R.,Dall'Acqua, Francesco,Miolo, Gorgia,Vedaldi, Daniela

, p. 511 - 518 (1998)

We describe the synthesis of a novel psoralen peroxide 1 that generates on irradiation (350 nm) alkoxyl radicals, namely tert-butoxyl radicals, as confirmed by electron spin resonance studies with the spin trap 5,5-dimethyl-pyrroline-N-oxide. The radical source intercalates into the DNA, which has been demonstrated by linear-flow-dichroism measurements. Thus, the alkoxyl radicals are formed advantageously directly in the DNA matrix. In supercoiled pBR322 DNA, the generation of strand breaks by the photochemically or metal-catalyzed generated alkoxyl radicals is demonstrated. Photosensitization by the psoralen chromophore was excluded because similar substances that do not release radicals caused no DNA damage, nor were the photoproducts of the per-oxide 1 active. With calf thymus DNA, 8-oxoGua and small amounts of guanidine-releasing products, e.g. oxazolone, were observed. However, in these reactions the photoproduct also displayed some DNA-oxidizing capacity.

Design, synthesis, and biological evaluation of a highly water-soluble psoralen-based photosensitizer

Uruma, Yoshiyuki,Nonomura, Takuya,Yen, Priscilla Yoong Mei,Edatani, Marie,Yamamoto, Ryotaro,Onuma, Kunishige,Okada, Futoshi

, p. 2372 - 2377 (2017/04/03)

In recent years, photodynamic therapy (PDT) has been approved for treating various medical conditions, including cancer. PDT is a treatment that employs a particular drugs, called photosensitizers which work along with specific light source. The growth of this medical industry is expanding as it is another promising alternative to treat cancer which lessen the burden of treatments in patients. This includes the benefits of minimally invasive procedures and delivering high accuracy in targeting mutations. In recent two decades, cancer researchers have produced remarkable studies on developing photosensitizers that enhance understanding of biology and genetics of cancer. It is unfortunate that not all PDT can work as well as other profound treatment because PDT has various limitations like PDT leads photosensitivity reaction that arises when the photosensitizer remains in the body for a long period of time. In this paper, our studies centers on synthesizing a highly soluble photosensitizing agent with improved effectiveness on detecting cancer cells.

Structural modification of a specific antimicrobial lead against Helicobacter pylori discovered from traditional Chinese medicine and a structure-activity relationship study

Zhang, Bang-Le,Fan, Cheng-Qi,Dong, Lei,Wang, Fang-Dao,Yue, Jian-Min

supporting information; experimental part, p. 5258 - 5264 (2011/01/04)

Psoralen (1a) was found to be a specific and potent antimicrobial lead against Helicobacter pylori (H. pylori) from a traditional Chinese medicine (TCM) in the bioassay directed isolation. A series of structurally diverse analogues of 1a were thus designed and synthesized to improve the antimicrobial potency, some of which showed more potent activities than the lead compound (1a) against H. pylori. Among them, compound 25a is 16-fold stronger (MIC = 0.39 μg/mL) than 1a (MIC = 6.25 μg/mL), and is even potent than the positive control metronidazole (MIC = 0.50 μg/mL). The in vitro antimicrobial activities against H. pylori of these structurally diverse analogues based on the scaffold of 1a have also led to an outline of structure-activity relationship.

Alkoxypsoralens, novel nonpeptide blockers of Shaker-type K+ channels: Synthesis and photoreactivity

Wulff, Heike,Rauer, Heiko,Düring, Tim,Hanselmann, Christine,Ruff, Katharina,Wrisch, Anja,Grissmer, Stephan,H?nsel, Wolfram

, p. 4542 - 4549 (2007/10/03)

A series of psoralens and structurally related 5,7-disubstituted coumarins was synthesized and investigated for their K+ channel blocking activity as well as for their phototoxicity to Artemia salina and their ability to generate singlet oxygen and to photomodify DNA. After screening the compounds on Ranvier nodes of the toad Xenopus laevis, the affinities of the most promising compounds, which proved to be psoralens bearing alkoxy substituents in the 5-position or alkoxymethyl substituents in the neighboring 4- or 4'-position, to a number of homomeric K+ channels were characterized. All compounds exhibited the highest affinity to Kv1.2. 5,8- Diethoxypsoralen (10d) was found to be an equally potent inhibitor of Kv1.2 and Kv1.3, while lacking the phototoxicity normally inherent in psoralens. The reported compounds represent a novel series of nonpeptide blockers of Shaker-type K+ channels that could be further developed into selective inhibitors of Kv1.2 or Kv1.3.

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