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5-Formyl salicylic acid aldoxime is an organic compound with the chemical formula C8H7NO3. It is derived from 5-formyl salicylic acid, where the aldehyde group is converted into an oxime by the addition of hydroxylamine. 5-formyl salicylic acid aldoxime is characterized by its ability to form a six-membered ring structure due to intramolecular cyclization, which involves the reaction between the formyl group (aldehyde) and the oxime group. It is a white crystalline solid and is used in the synthesis of various pharmaceuticals and chemical intermediates. The compound is also known for its potential applications in the preparation of dyes and pigments, as well as in the development of new materials with specific properties.

7383-07-5

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7383-07-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 7383-07-5 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 7,3,8 and 3 respectively; the second part has 2 digits, 0 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 7383-07:
(6*7)+(5*3)+(4*8)+(3*3)+(2*0)+(1*7)=105
105 % 10 = 5
So 7383-07-5 is a valid CAS Registry Number.

7383-07-5Downstream Products

7383-07-5Relevant academic research and scientific papers

Reactivity and mechanism of α-nucleophile scaffolds as catalytic organophosphate scavengers

Wong, Pamela T.,Bhattacharjee, Somnath,Cannon, Jayme,Tang, Shengzhuang,Yang, Kelly,Bowden, Sierra,Varnau, Victoria,O'Konek, Jessica J.,Choi, Seok Ki

supporting information, p. 3951 - 3963 (2019/04/30)

Despite their unique benefits imparted by their structure and reactivity, certain α-nucleophile molecules remain underexplored as chemical inactivators for the topical decontamination of reactive organophosphates (OPs). Here, we present a library of thirty α-nucleophile scaffolds, each designed with either a pyridinium aldoxime (PAM) or hydroxamic acid (HA) α-nucleophile core tethered to a polar or charged scaffold for optimized physicochemical properties and reactivity. These library compounds were screened for their abilities to catalyze the hydrolysis of a model OP, paraoxon (POX), in kinetic assays. These screening experiments led to the identification of multiple lead compounds with the ability to inactivate POX two- to four-times more rapidly than Dekon 139 - the active ingredient currently used for skin decontamination of OPs. Our mechanistic studies, performed under variable pH and temperature conditions suggested that the differences in the reactivity and activation energy of these compounds are fundamentally attributable to the core nucleophilicity and pKa. Following their screening and mechanistic studies, select lead compounds were further evaluated and demonstrated greater efficacy than Dekon 139 in the topical decontamination of POX in an ex vivo porcine skin model. In addition to OP reactivity, several compounds in the PAM class displayed a dual mode of activity, as they retained the ability to reactivate POX-inhibited acetylcholine esterase (AChE). In summary, this report describes a rationale for the hydrophilic scaffold design of α-nucleophiles, and it offers advanced insights into their chemical reactivity, mechanism, and practical utility as OP decontaminants.

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