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DL-Lactic Acid-14C Sodium Salt is a radioactive chemical compound, where 14C indicates the presence of carbon-14, a radioactive isotope of carbon. DL-LACTIC ACID-14C SODIUM SALT is a sodium salt derived from DL-lactic acid, which is an optical isomer of lactic acid, a naturally occurring organic acid produced in human muscles during physical activity. DL-lactic acid consists of equal parts of the L- and D-enantiomers, which are mirror images of each other. The 14C isotope in DL-Lactic Acid-14C Sodium Salt is used as a tracer in various biological and chemical studies, allowing researchers to track the compound's distribution, metabolism, and excretion within living organisms. This radioactive tracer is particularly useful in understanding the metabolic pathways of lactic acid and its role in energy production, as well as in the development of pharmaceuticals and other applications where the fate of lactic acid needs to be monitored.

2058-38-0

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2058-38-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 2058-38-0 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 2,0,5 and 8 respectively; the second part has 2 digits, 3 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 2058-38:
(6*2)+(5*0)+(4*5)+(3*8)+(2*3)+(1*8)=70
70 % 10 = 0
So 2058-38-0 is a valid CAS Registry Number.

2058-38-0Upstream product

2058-38-0Downstream Products

2058-38-0Relevant academic research and scientific papers

Nucleophilic 1,2-Schifts of Alkoxycarbonyl and Carboxylate Groups in the Benzilic-Acid Type Rearrangement of α,β-Dioxobutiric Esters

Gowal, Heike,Dao, Le H.,Dahn, Hans

, p. 173 - 180 (1985)

tert-Butyl α,β-dioxobutyrate (hydrate; 1d) undergoes, at medium or high pH, the benzylic acid rearrangement with exclusive 1,2-shift of the COO(t-Bu) group; the same is the true for the corresponding isopropyl ester 1c and ethyl ester 1b at high pH, whereas the overall picture of these reactions is complicated by concurrent hydrolysis of the ester, followed by a 1,2-shift of the COO1- group.Consequently, the shift of these electron-attracting groups cannot be considered to be systematically disfavoured (compared, e.g., with alkyl-group shifts).Kinetic measurements of the rearrangement show for both esters (as well as for the analogous ethyl ester 1b, and also for ethyl 3-cyclopropyl-α,β-dioxopropionate (4)) a characteristic rate profile: at relatively low pH, k is proportional to 1->, approaching saturation with increasing 1-> (interpreted as complete transformation of the substrate into the hydrate monoanion), which is followed at higher pH by another rate increase with k proportional to 1-> (probably due to the reaction of the hydrate dianion).The similarity of k values for 1b-d shows that in the shift of COOR steric hindrance caused by R is negligible.

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