An update on the compound challenge: 65090-78-0

There is still a lot of research devoted to this compound(SMILES:O=C(O)C(Br)COC)Formula: C4H7BrO3, and with the development of science, more effects of this compound(65090-78-0) can be discovered.

The reaction of an aromatic heterocycle with a proton is called a protonation. One of articles about this theory is 《β-Amino acids. IV. β-Methionine and β-ethionine》. Authors are Birkofer, Leonhard; Storch, Ingeborg.The article about the compound:2-Bromo-3-methoxypropanoic acidcas:65090-78-0,SMILESS:O=C(O)C(Br)COC).Formula: C4H7BrO3. Through the article, more information about this compound (cas:65090-78-0) is conveyed.

cf. C.A. 49, 2317d. HO2CCHAcCH2CO2Et and NaH gave the Na salt, which with ClCH2SMe yielded EtO2CAc(CH2SMe)CH2CO2Et (I), b3 153° (2,4-dinitrophenylhydrazone, m. 92-3°). Refluxed 10 hrs. with 18% HCl I gave AcCH(CH2SMe)CH2CO2H, isolated as the Et ester (II), b3 123° (2,4-dinitrophenylhydrazone, m. 62-3°), as well as AcC(:CH2)CH2CO2H (2,4-dinitrophenylhydrazone, m. 210°), and 3-acetyl-γ-butyrolactone (2,4-dinitrophenylhydrazone, m. 193°). I refluxed with HCl only 4 hrs. gave mono-Et 2-acetyl-2-(methylthiomethyl)succinate, b0.001 115-17° (2,4-dinitrophenylhydrazone, m. 169-70°). I was saponified with Ba(OH)2 to HO2CCH(CH2SMe)CH2CO2H, m. 114-15°. II and HN3 in the presence of HCl gave β-methionine (III), m. 197-8° (picrolonate, m. 190-2°; 3,5-dinitrobenzoyl derivative, m. 200°). MeSCH2CH:CHCO2H, m. 58.5°, obtained from MeSCH2CHO and CH2(CO2H)2 (IV), gave III with NH3 in a sealed tube at 150-60°. EtSNa, obtained from EtSH with Na, and bromoacetal gave EtSCH2CH(OEt)2, converted by HCl to the aldehyde, b14 45-6°, which with IV gave EtSCH2CH:CHCO2H, which with NH3 in a sealed tube yielded β-ethionine (V), m. 198° (picrolonate, m. 180-3°). III and V do not react with aqueous ninhydrin, but give a blue color with it in 95% BuOH-5% 2N HOAc.

There is still a lot of research devoted to this compound(SMILES:O=C(O)C(Br)COC)Formula: C4H7BrO3, and with the development of science, more effects of this compound(65090-78-0) can be discovered.

Reference:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Introduction of a new synthetic route about 148-51-6

There is still a lot of research devoted to this compound(SMILES:OC1=C(C)C(CO)=CN=C1C.[H]Cl)Synthetic Route of C8H12ClNO2, and with the development of science, more effects of this compound(148-51-6) can be discovered.

The reaction of an aromatic heterocycle with a proton is called a protonation. One of articles about this theory is 《Preparation of 3-hydroxy-5-hydroxymethyl-2,4-dimethylpyridine (4-deoxyadermine)》. Authors are Wibaut, J. P.; Uhlenbroek, J. H.; Kooijman, E. C.; Kettenes, D. K..The article about the compound:5-(hydroxymethyl)-2,4-dimethylpyridin-3-ol hydrochloridecas:148-51-6,SMILESS:OC1=C(C)C(CO)=CN=C1C.[H]Cl).Synthetic Route of C8H12ClNO2. Through the article, more information about this compound (cas:148-51-6) is conveyed.

The preparation of 4-deoxyadermine (I) as described earlier (CA 38, 32849) was improved to give a total yield 15%. Ac2CH2 (25 g.) was slowly added to a refluxing solution of 21 g. NCCH2CONH2 in 150 ml. EtOH and 3 ml. piperidine to give 97% 2-hydroxy-3-cyano-4,6-dimethylpyridine (II), m. 294°, which on nitration with HNO3 (d. 1.52) in Ac2O at 45-50° gave a 5-nitro derivative (III) m. 268° in 70% yield. A mixture of 50 g. dry III and 65 g. PCl5 was treated with 30 ml. POCl3 and heated to 130°, to yield 71% 2,4-dimethyl-3-nitro-5-cyano-6-chloropyridine, m. 112-13° (EtOH), which was reduced by Pd-C in MeOH and aqueous HCl to give 70-5% 2,4-dimethyl-3-amino 5-aminomethylpyridine di-HCl salt monohydrate (IV), m. 310° (decomposition). The reaction of IV with Ba(NO2)2 and H2SO4 at 0°, and subsequent heating to 90° afforded 45% I, m. 264°.

There is still a lot of research devoted to this compound(SMILES:OC1=C(C)C(CO)=CN=C1C.[H]Cl)Synthetic Route of C8H12ClNO2, and with the development of science, more effects of this compound(148-51-6) can be discovered.

Reference:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Derivation of elementary reaction about 65090-78-0

There is still a lot of research devoted to this compound(SMILES:O=C(O)C(Br)COC)Electric Literature of C4H7BrO3, and with the development of science, more effects of this compound(65090-78-0) can be discovered.

The preparation of ester heterocycles mostly uses heteroatoms as nucleophilic sites, which are achieved by intramolecular substitution or addition reactions. Compound: 2-Bromo-3-methoxypropanoic acid( cas:65090-78-0 ) is researched.Electric Literature of C4H7BrO3.Jin, Shu-yun; Yu, Di-hu; Li, Yong published the article 《Study on by-products in N-benzyl-2-bromo-3-methoxypropionamide by mixed anhydride methods》 about this compound( cas:65090-78-0 ) in Huaxue Shijie. Keywords: byproduct benzyl bromo methoxypropionamide mixed anhydride. Let’s learn more about this compound (cas:65090-78-0).

N-Benzyl-2-bromo-3-methoxypropionamide was synthesized from 2-bromo-3-methoxypropionic acid by mixed anhydride methods. The main impurities were separated and analyzed. Furthermore, the mechanism of the production of the main impurities was discussed. The mol. structures of impurities were confirmed by 1 H NMR, 13C NMR, IR.

There is still a lot of research devoted to this compound(SMILES:O=C(O)C(Br)COC)Electric Literature of C4H7BrO3, and with the development of science, more effects of this compound(65090-78-0) can be discovered.

Reference:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Why do aromatic interactions matter of compound: 148-51-6

There is still a lot of research devoted to this compound(SMILES:OC1=C(C)C(CO)=CN=C1C.[H]Cl)Related Products of 148-51-6, and with the development of science, more effects of this compound(148-51-6) can be discovered.

The reaction of an aromatic heterocycle with a proton is called a protonation. One of articles about this theory is 《Synthetic and natural phellandrene.》. Authors are Kondakow, J.; Schindelmeiser, J..The article about the compound:5-(hydroxymethyl)-2,4-dimethylpyridin-3-ol hydrochloridecas:148-51-6,SMILESS:OC1=C(C)C(CO)=CN=C1C.[H]Cl).Related Products of 148-51-6. Through the article, more information about this compound (cas:148-51-6) is conveyed.

[Machine Translation of Descriptors]. Carvomenthene, from carvomenthylchloride represented, became after REYCHLER into tertiary carvomenthol and over with 12 mm and 83.5-84.5° boiling. Chloride, D204; 0.932, into tertiary carvomenthene, C10H18, transferred. Boiling point 174-176°; D204; 0.811; nD = 1.45709, molecular refraction 46.23. Dibromide, under strong cooling in petroleum-ether prepared, Kp11; 130-144°. D204; 1.208, optical-inactively, separates no HBr, however alcoholic KOH supplies a hydrocarbon, from the main quantity with 175-180° with boiling D204; 0.825, nD = 1.46693, the smaller part with 180-185°. D204; 0.828, nD = 1.4673; molecular refraction 45.56. Both optical-inactive fractions color intensively raspberry red in a solution of acetic anhydride by H2SO4 and are undoubtedly different from the output hydrocarbon. Under consideration of the formation of the new hydrocarbon from carvomenthol author writes it from SEMMLER, (Ber. German Chem. Society 36. 1779; C. 1903. II. 116) for the phellandrene determined constitution without being able to prove the identity. Phellandrene from phellandrum aquaticum, boiling point 165-168°, D204; 0.844, nD = 1.47575, [α] D20 = 8° 37′. Molecular refraction a mixture of monochloride and dichloride gives 45.28, which probably contains an optical-inactive isomer, with HCl in glacial acetic acid. Monochloride, C10H17Cl, Kp11; 86°, melting point about 110° in the melted out tube, optically dextrorotatory. Dichloride, C10H18Cl2, Kp16; 122.5-125°, D204, 1.006, nD20 = 1.48516.

There is still a lot of research devoted to this compound(SMILES:OC1=C(C)C(CO)=CN=C1C.[H]Cl)Related Products of 148-51-6, and with the development of science, more effects of this compound(148-51-6) can be discovered.

Reference:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

More research is needed about 148-51-6

There is still a lot of research devoted to this compound(SMILES:OC1=C(C)C(CO)=CN=C1C.[H]Cl)Recommanded Product: 5-(hydroxymethyl)-2,4-dimethylpyridin-3-ol hydrochloride, and with the development of science, more effects of this compound(148-51-6) can be discovered.

The reaction of an aromatic heterocycle with a proton is called a protonation. One of articles about this theory is 《Synthesis of 3-pyridinols. III. Synthesis of pyridoxine skeletons from 4-methyloxazole》. Authors are Yoshikawa, Toru; Ishikawa, Fumiyoshi; Naito, Takeo.The article about the compound:5-(hydroxymethyl)-2,4-dimethylpyridin-3-ol hydrochloridecas:148-51-6,SMILESS:OC1=C(C)C(CO)=CN=C1C.[H]Cl).Recommanded Product: 5-(hydroxymethyl)-2,4-dimethylpyridin-3-ol hydrochloride. Through the article, more information about this compound (cas:148-51-6) is conveyed.

Pyridoxine dimethyl ether (I) and 4-deoxypyridoxine (II) were synthesized from 4-methyloxazole (III). 3-Cyano-5-hydroxy-6-methylpyridine (IV) was converted via the 4-CN derivative (V) to pyridoxine by the method of Okamoto and Tani (CA 54, 22644d). (MeOCH2CHBr)2 (5.5 g.) refluxed 1 hr. with 1.23 g. KOH in 12 cc. MeOH gave 2.2 g. MeOCH2CBr:CHCH2OMe (VI), b12 75-8°. VI (5.5 g.) and 3.5 g. CuCN heated 7 hrs. at 150° in an autoclave yielded 2.9 g. MeOCH2CH:C(CN)CH2OMe (VII), b8 84-6°. III (0.8 g.), 2.1 g. VII, 0.2 cc. H2O, and 4 cc. AcOH heated 40 hrs. at 95°, and the crude product chromatographed on Al2O3 yielded 2-methyl-4,5-bis(methoxymethyl)-3-pyridinol-HCl (VIII.HCl), m. 143-4° (iso-PrOH); picrate m. 168°. III (0.80 g.), 2.3 g. MeCH:CHCO2Et, 0.18 cc. H2O, and 3 cc. AcOH heated 20 hrs. at 90° in a sealed tube gave 0.2 g. (crude) Et 5-hydroxy-4,6-dimethylnicotinate, m. 146-8° (Me2CO). VIII (80 mg.) in 15 cc. dry tetrahydrofuran treated 72 hrs. at room temperature with 50 mg. LiAlH4 in 15 cc. dry tetrahydrofuran, and the filtered mixture acidified to pH 2 with dilute HCl and evaporated gave II.HCl, m. 255-7° (decomposition) (EtOH). IV (4.0 g.) in 90 cc. AcOH heated 1 hr. at 100° with 6 cc. 30% H2O2, treated twice with addnl. 6 cc. 30% H2O2 each time 1 and 4 hrs. gave 3.3 g. 5hydroxy-6-methylnicotinonitrile 1-oxide (IX), m. 278-80° (decomposition). IX (0.7 g.) and 0.7 g. Et2SO4 heated 2 hrs. at 100-10° gave 0.31 g. 1-ethoxy-2-methyl-3-hydroxy-5-cyanopyridinium ethosulfate, m. 129-30°. IX (0.6 g.) and 0.55 g. Me2SO4 heated 2 hrs. at 100-10°, and the resulting sirup added in 5 cc. H2O dropwise with shaking at 5-7° to 0.65 g. KCN in 8 cc. H2O and kept 1.5 hr. at room temperature gave 0.55 g. V, m. 189-90°.

There is still a lot of research devoted to this compound(SMILES:OC1=C(C)C(CO)=CN=C1C.[H]Cl)Recommanded Product: 5-(hydroxymethyl)-2,4-dimethylpyridin-3-ol hydrochloride, and with the development of science, more effects of this compound(148-51-6) can be discovered.

Reference:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Continuously updated synthesis method about 35621-01-3

There is still a lot of research devoted to this compound(SMILES:NC1CCNCC1.[H]Cl.[H]Cl)Computed Properties of C5H14Cl2N2, and with the development of science, more effects of this compound(35621-01-3) can be discovered.

The three-dimensional configuration of the ester heterocycle is basically the same as that of the carbocycle. Compound: Piperidin-4-amine dihydrochloride(SMILESS: NC1CCNCC1.[H]Cl.[H]Cl,cas:35621-01-3) is researched.Category: benzofurans. The article 《Polyamine Analog Regulation of NMDA MK-801 Binding: A Structure-Activity Study》 in relation to this compound, is published in Journal of Medicinal Chemistry. Let’s take a look at the latest research on this compound (cas:35621-01-3).

A series of analogs and homologs of spermine were synthesized, and their impact on MK-801 binding to the N-methyl-D-aspartate (NMDA) receptor was evaluated. These tetraamines encompass both linear and cyclic compounds The linear mols. include norspermine, N1,N11-diethylnorspermine, N1,N12-bis(2,2,2-trifluoroethyl)spermine, homospermine, and N1,N14-diethylhomospermine. The cyclic tetraamines consist of the piperidine analogs N1,N3-bis(4-piperidinyl)-1,3-diaminopropane, N1,N4-bis(4-piperidinyl)-1,4-diaminobutane, N1,N4-bis(4-piperidinylmethyl)-1,4-diaminobutane, and N1,N4-bis[2-(4-piperidinyl)ethyl]-1,4-diaminobutane and the pyridine analogs N1,N3-bis(4-pyridyl)-1,3-diaminopropane, N1,N4-bis(4-pyridyl)-1,4-diaminobutane, N1,N4-bis(4-pyridylmethyl)-1,4-diaminobutane, and N1,N4-bis[2-(4-pyridyl)ethyl]-1,4-diaminobutane. This structure-activity set makes it possible to establish the importance of charge, intercharge distance, and terminal nitrogen substitution on polyamine-regulated MK-801 binding in the NMDA channel. Four families of tetraamines are included in this set: norspermines, spermines, homospermines, and tetraazaoctadecanes. Calculations employing a SYBYL modeling program revealed that the distance between terminal nitrogens ranges between 12.62 and 19.61 Å. The tetraamines are constructed such that within families cyclics and acyclics have similar lengths but different nitrogen pKa’s and thus different protonation, or charge, states at physiol. pH. The pKa values for all nitrogens of each mol. and its protonation state at physiol. pH are described. The modifications at the terminal nitrogens include introduction of Et and β,β,β-trifluoroethyl groups and incorporation into piperidinyl or pyridyl systems. The studies clearly indicate that polyamine length, charge, and terminal nitrogen substitution have a significant effect on how the tetraamine regulates MK-801 binding to the NMDA receptor. Thus a structure-activity basis set on which future design of MK-801 agonists and antagonists can be based is now available.

There is still a lot of research devoted to this compound(SMILES:NC1CCNCC1.[H]Cl.[H]Cl)Computed Properties of C5H14Cl2N2, and with the development of science, more effects of this compound(35621-01-3) can be discovered.

Reference:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Extracurricular laboratory: Synthetic route of 35621-01-3

If you want to learn more about this compound(Piperidin-4-amine dihydrochloride)Related Products of 35621-01-3, you may wish to communicate with the author of the article,or consult the relevant literature related to this compound(35621-01-3).

The reaction of an aromatic heterocycle with a proton is called a protonation. One of articles about this theory is 《Synthesis of 4-aminopiperidine》. Authors are Yakhontov, L. N.; Yatsenko, S. V.; Rubtsov, M. V..The article about the compound:Piperidin-4-amine dihydrochloridecas:35621-01-3,SMILESS:NC1CCNCC1.[H]Cl.[H]Cl).Related Products of 35621-01-3. Through the article, more information about this compound (cas:35621-01-3) is conveyed.

Hydrogenation of 4-aminopyridine in alc. HCl over Pt at room temperature and 80 atm. H gave 16.5% 4-aminopiperidine-2HCl (I), m. 331-3° (picrate m. 245°). Hydrogenation of isonicotinic hydrazide in 4% HCl over Pt at room temperature gave 76% isonipecotinic hydrazide-2HCl, m. 240-2°. This treated with NaNO2 at -5°, then concentrated, and the resulting precipitate extracted with hot EtOH gave after refluxing 6 hrs. further with concentrated HCl 35% 4-aminopiperidine, isolated as HCl salt identical with the above. Hydrogenation of isonicotinic acid-HCl in 4% HCl over Pt gave isonipecotinic acid-HCl, decompose 299°, which treated with NaN3 in the presence of H2SO4 in C6H6 at 40° gave after aqueous treatment with NaOH 66% 4-aminopiperidine, isolated as HCl salt. Isonipecotinic acid HCl salt (II) and HN3 in H2SO4 and C6H6 gave at 80° 62% 4-aminopiperidine HCl salt. Refluxing II with NaO2CH and HCO2H 3 hrs. gave 44% 1-formylisonipecotinic acid, m. 136-38°. Heating I with HCO2Na in HCONH2 7 hrs. gave after aqueous treatment 62.5% 1-formyl-4-formamidopiperidine, m. 77-9°.

If you want to learn more about this compound(Piperidin-4-amine dihydrochloride)Related Products of 35621-01-3, you may wish to communicate with the author of the article,or consult the relevant literature related to this compound(35621-01-3).

Reference:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Share an extended knowledge of a compound : 35621-01-3

If you want to learn more about this compound(Piperidin-4-amine dihydrochloride)Synthetic Route of C5H14Cl2N2, you may wish to communicate with the author of the article,or consult the relevant literature related to this compound(35621-01-3).

Synthetic Route of C5H14Cl2N2. Aromatic heterocyclic compounds can also be classified according to the number of heteroatoms contained in the heterocycle: single heteroatom, two heteroatoms, three heteroatoms and four heteroatoms. Compound: Piperidin-4-amine dihydrochloride, is researched, Molecular C5H14Cl2N2, CAS is 35621-01-3, about Putrescine or spermidine binding site of aminopropyltransferases and competitive inhibitors. Author is Shirahata, Akira; Morohohi, Toru; Fukai, Masayo; Akatsu, Sakae; Samejima, Keijiro.

A model of the active site of aminopropyltransferases was proposed based on the study of a number of monoamino and diamino compounds as potential inhibitors and substrates, resp., of spermidine synthase purified from pig liver. The active site seems to have a relatively large hydrophobic cavity adjacent to a neg. charged site, to which a protonated amino group of putrescine binds, with another amino group of putrescine being situated in the hydrophobic cavity as a free form to be aminopropylated by decarboxylated S-adenosylmethionine. On the basis of the above-mentioned model, another modified one was proposed for spermine synthase, and several compounds designed according to the modified model were found to potently inhibit spermine synthase, purified from rat brain, in competition with spermidine. The newly developed inhibitors were about two orders of magnitude more potent in vitro than a known inhibitor of spermine synthase, dimethyl(5′-adenosyl)sulfonium perchlorate.

If you want to learn more about this compound(Piperidin-4-amine dihydrochloride)Synthetic Route of C5H14Cl2N2, you may wish to communicate with the author of the article,or consult the relevant literature related to this compound(35621-01-3).

Reference:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Why Are Children Getting Addicted To 65090-78-0

If you want to learn more about this compound(2-Bromo-3-methoxypropanoic acid)Reference of 2-Bromo-3-methoxypropanoic acid, you may wish to communicate with the author of the article,or consult the relevant literature related to this compound(65090-78-0).

Reference of 2-Bromo-3-methoxypropanoic acid. So far, in addition to halogen atoms, other non-metallic atoms can become part of the aromatic heterocycle, and the target ring system is still aromatic. Compound: 2-Bromo-3-methoxypropanoic acid, is researched, Molecular C4H7BrO3, CAS is 65090-78-0, about Tailored Synthesis of Skeletally Diverse Stemona Alkaloids through Chemoselective Dyotropic Rearrangements of β-Lactones.

The collective synthesis of skeletally diverse Stemona alkaloids featuring tailored dyotropic rearrangements of β-lactones as key elements is described. Specifically, three typical 5/7/5 tricyclic skeletons associated with stemoamide, tuberostemospiroline and parvistemonine were first accessed through chemoselective dyotropic rearrangements of β-lactones involving alkyl, hydrogen, and aryl migration, resp. By the rational manipulation of substrate structures and reaction conditions, these dyotropic rearrangements proceeded with excellent efficiency, good chemoselectivity and high stereospecificity. Furthermore, several polycyclic Stemona alkaloids, including saxorumamide, isosaxorumamide, stemonine and bisdehydroneostemoninine (I – IV, resp.), were obtained from the aforementioned tricyclic skeletons through late-stage derivatizations. A novel visible-light photoredox-catalyzed formal [3+2] cycloaddition was also developed, which offers a valuable tool for accessing oxaspirobutenolide and related scaffolds.

If you want to learn more about this compound(2-Bromo-3-methoxypropanoic acid)Reference of 2-Bromo-3-methoxypropanoic acid, you may wish to communicate with the author of the article,or consult the relevant literature related to this compound(65090-78-0).

Reference:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

What unique challenges do researchers face in 148-51-6

If you want to learn more about this compound(5-(hydroxymethyl)-2,4-dimethylpyridin-3-ol hydrochloride)Quality Control of 5-(hydroxymethyl)-2,4-dimethylpyridin-3-ol hydrochloride, you may wish to communicate with the author of the article,or consult the relevant literature related to this compound(148-51-6).

Quality Control of 5-(hydroxymethyl)-2,4-dimethylpyridin-3-ol hydrochloride. Aromatic compounds can be divided into two categories: single heterocycles and fused heterocycles. Compound: 5-(hydroxymethyl)-2,4-dimethylpyridin-3-ol hydrochloride, is researched, Molecular C8H12ClNO2, CAS is 148-51-6, about Correlation between protein function and ligand binding profiles. Author is Shortridge, Matthew D.; Bokemper, Michael; Copeland, Jennifer C.; Stark, Jaime L.; Powers, Robert.

The authors report that proteins with the same function bind the same set of small mols. from a standardized chem. library. This observation led to a quantifiable and rapidly adaptable method for protein functional anal. using exptl. derived ligand binding profiles. Ligand binding is measured using a high-throughput NMR ligand affinity screen with a structurally diverse chem. library. The method was demonstrated using a set of 19 proteins with a range of functions. A statistically significant similarity in ligand binding profiles was only observed between the two functionally identical albumins and between the five functionally similar amylases. This new approach is independent of sequence, structure, or evolutionary information and, therefore, extends the ability to analyze and functionally annotate novel genes.

If you want to learn more about this compound(5-(hydroxymethyl)-2,4-dimethylpyridin-3-ol hydrochloride)Quality Control of 5-(hydroxymethyl)-2,4-dimethylpyridin-3-ol hydrochloride, you may wish to communicate with the author of the article,or consult the relevant literature related to this compound(148-51-6).

Reference:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia