Forgione, Pat et al. published their research in Journal of the American Chemical Society in 2006 | CAS: 20485-41-0

4-Methylthiazole-5-carboxylic acid (cas: 20485-41-0) belongs to thiazole derivatives. Thiazoles in peptides or their ability to bind proteins, DNA and RNA has led to many synthetic studies and new applications. There are numerous natural products that possess a thiazole ring with broad pharmacological activities. Thiamine, also known as vitamin B1, possesses a thiazole ring linked with 2-methylpyrimidine-4-amine as hydrochloride salt.Name: 4-Methylthiazole-5-carboxylic acid

Unexpected Intermolecular Pd-Catalyzed Cross-Coupling Reaction Employing Heteroaromatic Carboxylic Acids as Coupling Partners was written by Forgione, Pat;Brochu, Marie-Christine;St-Onge, Miguel;Thesen, Kris H.;Bailey, Murray D.;Bilodeau, Francois. And the article was included in Journal of the American Chemical Society in 2006.Name: 4-Methylthiazole-5-carboxylic acid This article mentions the following:

A palladium catalyzed decarboxylative cross-coupling reaction of five-membered heteroaromatic carboxylic acids with aryl bromides for preparing aryl-substituted heteroaromatics has been disclosed. The coupling on the carbon connecting carboxyl group is an attractive complement to the existing C-H functionalization method. In the experiment, the researchers used many compounds, for example, 4-Methylthiazole-5-carboxylic acid (cas: 20485-41-0Name: 4-Methylthiazole-5-carboxylic acid).

4-Methylthiazole-5-carboxylic acid (cas: 20485-41-0) belongs to thiazole derivatives. Thiazoles in peptides or their ability to bind proteins, DNA and RNA has led to many synthetic studies and new applications. There are numerous natural products that possess a thiazole ring with broad pharmacological activities. Thiamine, also known as vitamin B1, possesses a thiazole ring linked with 2-methylpyrimidine-4-amine as hydrochloride salt.Name: 4-Methylthiazole-5-carboxylic acid

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Gong, Weinan et al. published their research in Journal of the Taiwan Institute of Chemical Engineers in 2019 | CAS: 2103-99-3

4-(4-Chlorophenyl)thiazol-2-amine (cas: 2103-99-3) belongs to thiazole derivatives. Thiazoles are a class of five-membered rings containing nitrogen and sulfur with excellent antitumor, antiviral and antibiotic activities. The nitrogen in thiazole is sp2 hybridized and the lone pair of electrons localized on the nitrogen is less reactive due to increased aromatic character and decreased basicity. It is protonated and alkylated/acylated at nitrogen forming hydrochloride and quaternary thiazolium salt.Reference of 2103-99-3

Halogen-substituted thiazole derivatives as corrosion inhibitors for mild steel in 0.5 M sulfuric acid at high temperature was written by Gong, Weinan;Xu, Bin;Yin, Xiaoshuang;Liu, Ying;Chen, Yun;Yang, Wenzhong. And the article was included in Journal of the Taiwan Institute of Chemical Engineers in 2019.Reference of 2103-99-3 This article mentions the following:

The inhibitory effects of three halogen-substituted thiazole derivatives named 2-amino-4-(4-fluorophenyl)-thiazole (FPT), 2-amino-4-(4-chlorophenyl)-thiazole (CPT) and 2-amino-(4-bromophenyl)-thiazole (BPT) on mild steel corrosion were investigated in 0.5 M H2SO4 from 30掳C to 60掳C. Electrochem. measurements demonstrated that these thiazoles can effectively inhibit the corrosion of mild steel in 0.5 M H2SO4 solution at 30掳C. With the increase of temperature, the inhibition efficiency (畏) of FPT at 60掳C reduced to 22.62% while those of CPT and BPT under the same temperature were nearly unchanged, which were as high as 95.16% and 95.45%, resp. The adsorptions of three thiazoles on the surface of mild steel were all found to adhere to Langmuir adsorption isotherm at 30掳C while only CPT and BPT obeyed at 60掳C. Quantum calculations results indicated that CPT and BPT had the better adsorption ability on mild steel than FPT. Mol. dynamic stimulations were taken out to investigate the adsorption configurations of three thiazoles on the surface of Fe (0 0 1) at 30掳C and 60掳C, and the results implied that the binding energy of protonated BPT and CPT were nearly unchanged at studied temperatures while that of protonated FPT apparently became lower at 60掳C. In the experiment, the researchers used many compounds, for example, 4-(4-Chlorophenyl)thiazol-2-amine (cas: 2103-99-3Reference of 2103-99-3).

4-(4-Chlorophenyl)thiazol-2-amine (cas: 2103-99-3) belongs to thiazole derivatives. Thiazoles are a class of five-membered rings containing nitrogen and sulfur with excellent antitumor, antiviral and antibiotic activities. The nitrogen in thiazole is sp2 hybridized and the lone pair of electrons localized on the nitrogen is less reactive due to increased aromatic character and decreased basicity. It is protonated and alkylated/acylated at nitrogen forming hydrochloride and quaternary thiazolium salt.Reference of 2103-99-3

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Zimmermann, Thomas et al. published their research in Journal of Heterocyclic Chemistry in 1999 | CAS: 2346-00-1

2-Methyl-4,5-dihydrothiazole (cas: 2346-00-1) belongs to thiazole derivatives. Thiazoles frequently appear in peptide studies. Thiazoles can also be used as protected formyl groups, which can be released in later stages of complex natural product synthesis. The nitrogen in thiazole is sp2 hybridized and the lone pair of electrons localized on the nitrogen is less reactive due to increased aromatic character and decreased basicity. It is protonated and alkylated/acylated at nitrogen forming hydrochloride and quaternary thiazolium salt.Category: thiazole

Ring transformations of heterocyclic compounds. XVII. 2-(2,4,6-triarylphenyl) substituted dihydro-1H-imidazolium, dihydrothiazolium and thiazolium salts from 2-methyl derivatives by pyrylium and thiopyrylium ring transformations was written by Zimmermann, Thomas. And the article was included in Journal of Heterocyclic Chemistry in 1999.Category: thiazole This article mentions the following:

Some new 2-(2,4,6-triarylphenyl)-4,5-dihydro-1H-imidazolium perchlorates, -4,5-dihydrothiazolium perchlorates and -thiazolium perchlorates were obtained from their 2-Me analogs by a 2,6-[C5+C] ring transformation of 2,4,6-triarylpyrylium and -thiopyrylium salts in ethanol in the presence of an appropriate base. Spectroscopic data of the transformation products and structural influences on their formation via anhydrobases of the triarylpyrylium and -thiopyrylium salts are discussed. In the experiment, the researchers used many compounds, for example, 2-Methyl-4,5-dihydrothiazole (cas: 2346-00-1Category: thiazole).

2-Methyl-4,5-dihydrothiazole (cas: 2346-00-1) belongs to thiazole derivatives. Thiazoles frequently appear in peptide studies. Thiazoles can also be used as protected formyl groups, which can be released in later stages of complex natural product synthesis. The nitrogen in thiazole is sp2 hybridized and the lone pair of electrons localized on the nitrogen is less reactive due to increased aromatic character and decreased basicity. It is protonated and alkylated/acylated at nitrogen forming hydrochloride and quaternary thiazolium salt.Category: thiazole

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Ghorbani-Vaghei, Ramin et al. published their research in Applied Organometallic Chemistry in 2018 | CAS: 57634-55-6

4-(2-Amino-4-thiazolyl)phenol (cas: 57634-55-6) belongs to thiazole derivatives. The higher aromaticity of thiazole is due to delocalization of a lone pair of sulfur electrons across the ring, which is evidenced by chemical shifts of ring hydrogen at 未 7.27 and 8.77 ppm (C2 and C4), indicating diamagnetic ring current. Thiazole is a versatile building block for the construction and lead generation of new drug discoveries. Numerous diazole-based compounds are in clinical use as anticancer, antileukemic, antiinflammatory, antiviral, antifungal, antirheumatic, immunomodulator, and antiparasitic agents.Formula: C9H8N2OS

MNPs@SiO2-Pr-AP: A new catalyst for the synthesis of 2-amino-4-aryl thiazole derivatives was written by Ghorbani-Vaghei, Ramin;Alavinia, Sedigheh;Merati, Zohreh;Izadkhah, Vida. And the article was included in Applied Organometallic Chemistry in 2018.Formula: C9H8N2OS This article mentions the following:

Magnetically recoverable nano-magnetic catalyst supported with functionalized (n-propyl)-4-amino-pyridine silica (MNPs@SiO2-Pr-AP) was synthesized and characterized using different techniques. A simple and efficient synthesis of 2-amino-4-aryl thiazoles I [R = H, 4-Cl, 3-NO2, etc, X = CH, N] was described via condensation of acetophenones and thiourea using three different types of catalytic systems including N,N,N’,N’-tetrabromobenzene-1,3-disulfonamide [TBBDA], poly(N,N’-dibromo-N-ethylbenzene-1,3-disulfonamide) [PBBS] and a combination of TBBDA and MNPs@SiO2-Pr-AP. The results showed that, the use of TBBDA along with the MNPs@SiO2-Pr-AP gains the highest yields of the products in the shortest reaction time. In the experiment, the researchers used many compounds, for example, 4-(2-Amino-4-thiazolyl)phenol (cas: 57634-55-6Formula: C9H8N2OS).

4-(2-Amino-4-thiazolyl)phenol (cas: 57634-55-6) belongs to thiazole derivatives. The higher aromaticity of thiazole is due to delocalization of a lone pair of sulfur electrons across the ring, which is evidenced by chemical shifts of ring hydrogen at 未 7.27 and 8.77 ppm (C2 and C4), indicating diamagnetic ring current. Thiazole is a versatile building block for the construction and lead generation of new drug discoveries. Numerous diazole-based compounds are in clinical use as anticancer, antileukemic, antiinflammatory, antiviral, antifungal, antirheumatic, immunomodulator, and antiparasitic agents.Formula: C9H8N2OS

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Pauwels, P. J. et al. published their research in Biochemical Pharmacology in 2001 | CAS: 36085-73-1

6-Allyl-5,6,7,8-tetrahydro-4H-thiazolo[4,5-d]azepin-2-amine dihydrochloride (cas: 36085-73-1) belongs to thiazole derivatives. The thiazole ring is notable as a component of the vitamin thiamine (B1). The nitrogen in thiazole is sp2 hybridized and the lone pair of electrons localized on the nitrogen is less reactive due to increased aromatic character and decreased basicity. It is protonated and alkylated/acylated at nitrogen forming hydrochloride and quaternary thiazolium salt.Application In Synthesis of 6-Allyl-5,6,7,8-tetrahydro-4H-thiazolo[4,5-d]azepin-2-amine dihydrochloride

Modulation of ligand responses by coupling of 伪2A-adrenoceptors to diverse G-proteins was written by Pauwels, P. J.;Tardif, S.;Colpaert, F. C.;Wurch, T.. And the article was included in Biochemical Pharmacology in 2001.Application In Synthesis of 6-Allyl-5,6,7,8-tetrahydro-4H-thiazolo[4,5-d]azepin-2-amine dihydrochloride This article mentions the following:

The hypothesis that different signaling may be mediated via a single 伪2A-adrenoceptor (伪2A AR) subtype was investigated by challenging 伪2 AR ligands in combination with diverse recombinant weight, mutant, and chimeric G-proteins. Possible coupling of 伪2A AR to endogenous G伪i/o-proteins in CHO-K1 cells was excluded by measuring pertussis toxin (PTX)-resistant [35S]GTP纬S-binding responses as a common functional response to 伪2A AR activation. (-)-Adrenaline (10 渭M) displayed the highest magnitude of [35S]GTP纬S-binding response in the co-presence of a PTX-resistant G伪oCys351Ile protein, whereas a decreased response was obtained with the mutant G伪i1/2-proteins. Replacement of the last six amino acids at the C-terminal portion of the G伪o-protein by the corresponding amino acid region of either the G伪z-, G伪s-, G伪q-, or G伪15-protein and co-expression with the 伪2A AR resulted in similar maximal (-)-adrenaline-mediated [35S]GTP纬S-binding responses with these chimeric G伪o-proteins. The ligands D-medetomidine, BHT 920 (6-allyl-5,6,7,8-tetrahydro-4H-thiazolo[4,5-d]azepin-2-ylamine) and (+)-RX 811059 (2-(2-ethoxy-2,3-dihydro-benzo[1,4]dioxin-2-yl)-4,5-dihydro-1H-imidazole) were weakly active or virtually inactive at the chimeric G伪o/s-, G伪o/q-, and G伪o/15-proteins in contrast to the G伪o/z-protein. Furthermore, combining the constitutively active mutant Thr373Lys 伪2A AR with these chimeric G伪o-proteins enhanced the apparent intrinsic activity of D-medetomidine and BHT 920. A similar observation was made using the corresponding fusion proteins, where the stoichiometry of the mutant 伪2A AR to the chimeric G伪o-protein was fixed at 1.0. These data indicate that a single ligand may display different magnitudes of activation at the 伪2A AR subtype coupled to chimeric G伪o proteins under controlled conditions of 伪2A AR: G伪o-protein expression. In the experiment, the researchers used many compounds, for example, 6-Allyl-5,6,7,8-tetrahydro-4H-thiazolo[4,5-d]azepin-2-amine dihydrochloride (cas: 36085-73-1Application In Synthesis of 6-Allyl-5,6,7,8-tetrahydro-4H-thiazolo[4,5-d]azepin-2-amine dihydrochloride).

6-Allyl-5,6,7,8-tetrahydro-4H-thiazolo[4,5-d]azepin-2-amine dihydrochloride (cas: 36085-73-1) belongs to thiazole derivatives. The thiazole ring is notable as a component of the vitamin thiamine (B1). The nitrogen in thiazole is sp2 hybridized and the lone pair of electrons localized on the nitrogen is less reactive due to increased aromatic character and decreased basicity. It is protonated and alkylated/acylated at nitrogen forming hydrochloride and quaternary thiazolium salt.Application In Synthesis of 6-Allyl-5,6,7,8-tetrahydro-4H-thiazolo[4,5-d]azepin-2-amine dihydrochloride

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Parr, Hebe et al. published their research in Journal of the American Society of Brewing Chemists | CAS: 15679-19-3

2-Ethoxythiazole (cas: 15679-19-3) belongs to thiazole derivatives. Thiazole rings are planar and aromatic. Thiazoles are characterized by larger pi-electron delocalization than the corresponding oxazoles and have therefore greater aromaticity. Various laboratory methods exist for the organic synthesis of thiazoles. Prominent is the Hantzsch thiazole synthesis is a reaction between haloketones and thioamides.Recommanded Product: 2-Ethoxythiazole

Identification and Categorization of Volatile Sulfur Flavor Compounds in Roasted Malts and Barley was written by Parr, Hebe;Bolat, Irina;Cook, David. And the article was included in Journal of the American Society of Brewing Chemists.Recommanded Product: 2-Ethoxythiazole This article mentions the following:

We report for the first time the application of HS-SPME-GC coupled with sulfur-specific pulsed flame photometric detection to sensitively analyze the volatile sulfur compounds (VSC鈥瞫) present in drum roasted malt and barley samples typically used in brewing. Twenty-five VSC鈥瞫 were identified across a range of 9 roasted products produced from barley/malt. Thiophenes (n = 10) were a major class of heterocyclic sulfur compounds identified, along with thiazoles (n = 4), and thiofurans (n = 2). Quant. (n = 18) and semi-quant. (n = 6) data are reported for VSC鈥瞫 across this product range. Principal Component Anal. (PCA) of data clearly identified (PC1) that heterocyclic sulfur compounds were formed in products processed at high temperatures (>170 掳C) under dry conditions (roasted barley, chocolate and black malts). Whereas compounds such as Me dithiolane and Me Pr sulfide were associated primarily with lower temperature finished products (crystal, amber and cara malts). Pathways for the generation of observed VSC鈥瞫 are considered alongside typical roasting conditions employed in the manufacture of these products. Concentrations of VSC鈥瞫 identified will certainly contribute characteristic aromas to the roasted products themselves. The transfer of VSC鈥瞫 from the grist into finished beer, and their sensory impact in a range of beer styles, remains to be determined In the experiment, the researchers used many compounds, for example, 2-Ethoxythiazole (cas: 15679-19-3Recommanded Product: 2-Ethoxythiazole).

2-Ethoxythiazole (cas: 15679-19-3) belongs to thiazole derivatives. Thiazole rings are planar and aromatic. Thiazoles are characterized by larger pi-electron delocalization than the corresponding oxazoles and have therefore greater aromaticity. Various laboratory methods exist for the organic synthesis of thiazoles. Prominent is the Hantzsch thiazole synthesis is a reaction between haloketones and thioamides.Recommanded Product: 2-Ethoxythiazole

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Velikova, Nadya et al. published their research in Scientific Reports in 2016 | CAS: 21344-90-1

4-(2-Chlorophenyl)thiazol-2-amine (cas: 21344-90-1) belongs to thiazole derivatives. Thiazoles frequently appear in peptide studies. Thiazoles can also be used as protected formyl groups, which can be released in later stages of complex natural product synthesis. Various laboratory methods exist for the organic synthesis of thiazoles. Prominent is the Hantzsch thiazole synthesis is a reaction between haloketones and thioamides.Formula: C9H7ClN2S

Putative histidine kinase inhibitors with antibacterial effect against multi-drug resistant clinical isolates identified by in vitro and in silico screens was written by Velikova, Nadya;Fulle, Simone;Manso, Ana Sousa;Mechkarska, Milena;Finn, Paul;Conlon, J. Michael;Oggioni, Marco Rinaldo;Wells, Jerry M.;Marina, Alberto. And the article was included in Scientific Reports in 2016.Formula: C9H7ClN2S This article mentions the following:

Novel antibacterials are urgently needed to address the growing problem of bacterial resistance to conventional antibiotics. Two-component systems (TCS) are widely used by bacteria to regulate gene expression in response to various environmental stimuli and physiol. stress and have been previously proposed as promising antibacterial targets. TCS consist of a sensor histidine kinase (HK) and an effector response regulator. The HK component contains a highly conserved ATP-binding site that is considered to be a promising target for broad-spectrum antibacterial drugs. Here, we describe the identification of putative HK autophosphorylation inhibitors following two independent exptl. approaches: in vitro fragment-based screen via differential scanning fluorometry and in silico structure-based screening, each followed up by the exploration of analog compounds as identified by ligand-based similarity searches. Nine of the tested compounds showed antibacterial effect against multi-drug resistant clin. isolates of bacterial pathogens and include three novel scaffolds, which have not been explored so far in other antibacterial compounds Overall, putative HK autophosphorylation inhibitors were found that together provide a promising starting point for further optimization as antibacterials. In the experiment, the researchers used many compounds, for example, 4-(2-Chlorophenyl)thiazol-2-amine (cas: 21344-90-1Formula: C9H7ClN2S).

4-(2-Chlorophenyl)thiazol-2-amine (cas: 21344-90-1) belongs to thiazole derivatives. Thiazoles frequently appear in peptide studies. Thiazoles can also be used as protected formyl groups, which can be released in later stages of complex natural product synthesis. Various laboratory methods exist for the organic synthesis of thiazoles. Prominent is the Hantzsch thiazole synthesis is a reaction between haloketones and thioamides.Formula: C9H7ClN2S

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Zhang, Da-Jun et al. published their research in Molecules in 2014 | CAS: 2942-06-5

6-Nitrobenzothiazole (cas: 2942-06-5) belongs to thiazole derivatives. The thiazole ring has been identified as a central feature of numerous natural products, perhaps the most famous example of which is epothilone. Electrophilic attack at nitrogen depends on the presence of electron density at nitrogen as well as the position and nature of substituent linked to the thiazole ring.Recommanded Product: 2942-06-5

Synthesis and broad-spectrum antiviral activity of some novel benzo-heterocyclic amine compounds was written by Zhang, Da-Jun;Sun, Wen-Fang;Zhong, Zhao-Jin;Gao, Rong-Mei;Yi, Hong;Li, Yu-Huan;Peng, Zong-Gen;Li, Zhuo-Rong. And the article was included in Molecules in 2014.Recommanded Product: 2942-06-5 This article mentions the following:

A series of novel unsaturated five-membered benzo-heterocyclic amine derivatives I [X = NH, O, S; Y = CH, N; R = 4-chlorobenzyl, 3-phenylallyl, 5-methylthiophene, etc.]. were synthesized and assayed to determine their in vitro broad-spectrum antiviral activities. The biol. results showed that most of the synthesized compounds exhibited potent broad-spectrum antiviral activity. Notably, compounds I [X = S; Y = N; R = (2-methoxy-phenyl)amine] (IC50 = 3.21-5.06 渭M) and I [X = S; Y = N; R = 5-methylfuran] (IC50 = 0.71-34.87 渭M) showed potent activity towards both RNA viruses (influenza A, HCV and Cox B3 virus) and a DNA virus (HBV) at low micromolar concentrations The SAR study showed that electron-withdrawing substituents located on the aromatic or heteroaromatic ring favored antiviral activity towards RNA viruses. In the experiment, the researchers used many compounds, for example, 6-Nitrobenzothiazole (cas: 2942-06-5Recommanded Product: 2942-06-5).

6-Nitrobenzothiazole (cas: 2942-06-5) belongs to thiazole derivatives. The thiazole ring has been identified as a central feature of numerous natural products, perhaps the most famous example of which is epothilone. Electrophilic attack at nitrogen depends on the presence of electron density at nitrogen as well as the position and nature of substituent linked to the thiazole ring.Recommanded Product: 2942-06-5

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Ghazanfari, Davoud et al. published their research in Bioorganic & Medicinal Chemistry in 2021 | CAS: 487021-52-3

1-(4-Methoxybenzyl)-3-(5-nitrothiazol-2-yl)urea (cas: 487021-52-3) belongs to thiazole derivatives. The higher aromaticity of thiazole is due to delocalization of a lone pair of sulfur electrons across the ring, which is evidenced by chemical shifts of ring hydrogen at 未 7.27 and 8.77 ppm (C2 and C4), indicating diamagnetic ring current. Thiazole is a versatile building block for the construction and lead generation of new drug discoveries. Numerous diazole-based compounds are in clinical use as anticancer, antileukemic, antiinflammatory, antiviral, antifungal, antirheumatic, immunomodulator, and antiparasitic agents.SDS of cas: 487021-52-3

A novel GSK-3 inhibitor binds to GSK-3尾 via a reversible, time and Cys-199-dependent mechanism was written by Ghazanfari, Davoud;Noori, Mahboubeh S.;Bergmeier, Stephen C.;Hines, Jennifer V.;McCall, Kelly D.;Goetz, Douglas J.. And the article was included in Bioorganic & Medicinal Chemistry in 2021.SDS of cas: 487021-52-3 This article mentions the following:

Glycogen synthase kinase-3 (GSK-3) has been implicated in numerous pathologies making GSK-3 an attractive therapeutic target. Our group has identified a compound termed COB-187 that is a potent and selective inhibitor of GSK-3. In this study, we probed the mechanism by which COB-187 inhibits GSK-3尾. Progress curves, generated via real-time monitoring of kinase activity, indicated that COB-187 inhibition of GSK-3尾 is time-dependent and subsequent jump dilution assays revealed that COB-187 binding to GSK-3尾 is reversible. Further, a plot of the kinetic constant (kobs) vs. COB-187 concentration suggested that, within the range of concentrations studied, COB-187 binds to GSK-3尾 via an induced-fit mechanism. There is a critical cysteine residue at the entry to the active site of GSK-3尾 (Cys-199). We generated a mutant version of GSK-3尾 wherein Cys-199 was substituted with an alanine. This mutation caused a dramatic decrease in the activity of COB-187; specifically, an IC50 in the nM range for wild type vs. >100渭M for the mutant. A screen of COB-187 against 34 kinases that contain a conserved cysteine in their active site revealed that COB-187 is highly selective for GSK-3 indicating that COB-187s inhibition of GSK-3尾 via Cys-199 is specific. Combined, these findings suggest that COB-187 inhibits GSK-3尾 via a specific, reversible, time and Cys-199-dependent mechanism. In the experiment, the researchers used many compounds, for example, 1-(4-Methoxybenzyl)-3-(5-nitrothiazol-2-yl)urea (cas: 487021-52-3SDS of cas: 487021-52-3).

1-(4-Methoxybenzyl)-3-(5-nitrothiazol-2-yl)urea (cas: 487021-52-3) belongs to thiazole derivatives. The higher aromaticity of thiazole is due to delocalization of a lone pair of sulfur electrons across the ring, which is evidenced by chemical shifts of ring hydrogen at 未 7.27 and 8.77 ppm (C2 and C4), indicating diamagnetic ring current. Thiazole is a versatile building block for the construction and lead generation of new drug discoveries. Numerous diazole-based compounds are in clinical use as anticancer, antileukemic, antiinflammatory, antiviral, antifungal, antirheumatic, immunomodulator, and antiparasitic agents.SDS of cas: 487021-52-3

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Ishii, Masahide et al. published their research in Igaku to Yakugaku in 1995 | CAS: 66309-69-1

(6R,7R)-7-(2-(2-Aminothiazol-4-yl)acetamido)-3-(((1-(2-(dimethylamino)ethyl)-1H-tetrazol-5-yl)thio)methyl)-8-oxo-5-thia-1-azabicyclo[4.2.0]oct-2-ene-2-carboxylic acid dihydrochloride (cas: 66309-69-1) belongs to thiazole derivatives. Thiazoles are a class of five-membered rings containing nitrogen and sulfur with excellent antitumor, antiviral and antibiotic activities. Various laboratory methods exist for the organic synthesis of thiazoles. Prominent is the Hantzsch thiazole synthesis is a reaction between haloketones and thioamides.Reference of 66309-69-1

Reconstitution time and microbial contamination during reconstitution of antibiotic kit product was written by Ishii, Masahide. And the article was included in Igaku to Yakugaku in 1995.Reference of 66309-69-1 This article mentions the following:

Reconstitution time determination indicated that antibiotic (pansporin) kit preparation is superior to antibiotic half kit preparation or conventional injection. Microbial contamination tests showed similar results (neg.) for all the 3 products (methods) tested. In the experiment, the researchers used many compounds, for example, (6R,7R)-7-(2-(2-Aminothiazol-4-yl)acetamido)-3-(((1-(2-(dimethylamino)ethyl)-1H-tetrazol-5-yl)thio)methyl)-8-oxo-5-thia-1-azabicyclo[4.2.0]oct-2-ene-2-carboxylic acid dihydrochloride (cas: 66309-69-1Reference of 66309-69-1).

(6R,7R)-7-(2-(2-Aminothiazol-4-yl)acetamido)-3-(((1-(2-(dimethylamino)ethyl)-1H-tetrazol-5-yl)thio)methyl)-8-oxo-5-thia-1-azabicyclo[4.2.0]oct-2-ene-2-carboxylic acid dihydrochloride (cas: 66309-69-1) belongs to thiazole derivatives. Thiazoles are a class of five-membered rings containing nitrogen and sulfur with excellent antitumor, antiviral and antibiotic activities. Various laboratory methods exist for the organic synthesis of thiazoles. Prominent is the Hantzsch thiazole synthesis is a reaction between haloketones and thioamides.Reference of 66309-69-1

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica