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Biochemical Assay Reagents

Biochemical Assay Reagents

Biochemical Assay Reagents related products

Structure Cat No. Product Name CAS No. Product Description
Ru(acac)3 V106690 Ru(acac)3 14284-93-6 Ru(acac)3 (ruthenium(III) triacetylacetonate) is a biochemical reagent that can be used as a biomaterial or organic compound related to life science research.
Ru(dpp)3(PF6)2 V65776 Ru(dpp)3(PF6)2 123148-15-2 Ru(dpp)3(PF6)2 is a biochemical compound that may be utilized as a biomaterial or organic/chemical reagent for biomedical research.
RuCl(p-cymene)[(R,R)-Ts-DPEN] (RuCl[(R,R)-Tsdpen](p-cymene)) V65170 RuCl(p-cymene)[(R,R)-Ts-DPEN] (RuCl[(R,R)-Tsdpen](p-cymene)) 192139-92-7 RuCl(p-cymene)[(R,R)-Ts-DPEN] is a biochemical compound that may be utilized as a biomaterial or organic/chemical reagent for biomedical research.
RuPhos V68711 RuPhos 787618-22-8 RuPhos is a biochemical compound that may be utilized as a biomaterial or organic/chemical reagent for biomedical research.
Rutinose (rutin sugar) V65910 Rutinose (rutin sugar) 90-74-4 Rutinose is a biochemical compound that may be utilized as a biomaterial or organic/chemical reagent for biomedical research.
Rutinose Heptaacetate V66830 Rutinose Heptaacetate 29202-64-0 Rutinose Heptaacetate is a biochemical compound that could be utilized as a biomaterial or organic/chemical reagent for biomedical research.
Ruxolitinib impurity-1 V101412 Ruxolitinib impurity-1 952518-97-7 Ruxolitinib Impurity-1 is an impurity of Ruxolitinib and can be used for the safety analysis of Ruxolitinib treatment.
S-(-)-Aminoglutethimide D-tartrate V93417 S-(-)-Aminoglutethimide D-tartrate 57288-04-7 S-(-)-Aminoglutethimide D-tartrate is an aromatase inhibitor with activity blocking adrenal steroidogenesis.
S-(3)-Hydroxymyristic acid, methyl ester V65809 S-(3)-Hydroxymyristic acid, methyl ester 76835-67-1 S-(3)-Hydroxymyristic Acid, Methyl Ester is a biochemical compound that could be utilized as a biomaterial or organic/chemical reagent for biomedical research.
S-15176 difumarate V93372 S-15176 difumarate 148913-55-7 S-15176 difumarate is a compound with the activity of regulating mitochondrial membrane potential.
S-[2-(Iodo-4-azidosalicylamido)ethylthio]-2-thiopyridine V98528 S-[2-(Iodo-4-azidosalicylamido)ethylthio]-2-thiopyridine 175093-14-8 S-[2-(Iodo-4-azidosalicylamide)ethylthio]-2-thiopyridine is a biochemical reagent.
S-Benzyl-L-cysteine 7-amido-4-methylcoumarin V98410 S-Benzyl-L-cysteine 7-amido-4-methylcoumarin 80173-27-9 S-Benzyl-L-cysteine 7-amide-4-methylcoumarin is a biochemical reagent.
S-Benzyl-L-cysteine ethyl ester hydrochloride V97608 S-Benzyl-L-cysteine ethyl ester hydrochloride 52844-67-4 S-Benzyl-L-cysteine ethyl ester (hydrochloride) is a biochemical reagent.
S-EIT hydrobromide (S-Ethylisothiourea hydrobromide) V65480 S-EIT hydrobromide (S-Ethylisothiourea hydrobromide) 1071-37-0 S-EIT (HBr) is a biochemical compound that could be utilized as a biomaterial or organic/chemical reagent for biomedical research.
S-Phenylsulfonylcysteine V92342 S-Phenylsulfonylcysteine 97512-83-9 S-Phenylsulfonylcysteine is a reagent used to block thiol (-SH) groups on proteins and peptides.
S-β-(4-Pyridylethyl)-L-cysteine V97689 S-β-(4-Pyridylethyl)-L-cysteine 28809-04-3 S-β-(4-pyridylethyl)-L-cysteine is a biochemical reagent.
SABRAC V93902 SABRAC 886212-98-2 SABRAC is a biochemical reagent.
SaCas9 V105872 SaCas9 SaCas9 is a nuclease with the characteristics of high catalytic efficiency, strong specificity, and mild action conditions. It can be widely used in various industries such as the pharmaceutical industry, industrial production, food manufacturing, and aquaculture.
SAF-p1 V106203 SAF-p1 292605-65-3 SAF-p1 is a self-assembling fiber peptide that can assemble with SAF-p2 through complementary amino acid sequences to form a heterodimer with sticky ends, and further self-assemble to form a long-chain fiber structure. It has application potential in the development of nanomaterials in the biomedical field.
SAF-p2 V106204 SAF-p2 292605-66-4 SAF-p2 is a self-assembling fiber peptide that can assemble with SAF-p2 through complementary amino acid sequences to form heterodimers with sticky ends, and further self-assemble to form long-chain fiber structures, which is expected to be applied in the development of nanomaterials in the biomedical field.
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