Date published: 2025-9-11

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Lactams

Santa Cruz Biotechnology now offers a broad range of lactams for use in various applications. Lactams, a class of cyclic amides, are pivotal in scientific research due to their structural versatility and wide range of chemical properties. These compounds, defined by a ring structure containing an amide group, are essential intermediates in organic synthesis, enabling the construction of complex molecular architectures through ring-opening polymerizations and other reactions. In materials science, lactams are crucial for developing high-performance polymers and resins, such as nylon, which have extensive applications in textiles, automotive parts, and various industrial products. Their stability and reactivity make them valuable in catalysis, where they are used to create efficient catalysts for a variety of chemical processes. Environmental researchers utilize lactams in the study of biodegradation and the development of sustainable materials, aiming to reduce environmental impact. In analytical chemistry, lactams are employed as standards and reagents to facilitate the identification and quantification of compounds in complex mixtures. The biochemistry field also benefits from lactams, as they are used to study enzyme mechanisms and protein-ligand interactions, offering insights into fundamental biological processes. The broad applicability of lactams across multiple disciplines underscores their importance in advancing scientific knowledge and technological innovation. Their unique chemical properties enable researchers to explore new frontiers in chemistry and materials science. View detailed information on our available lactams by clicking on the product name.

Items 1 to 10 of 379 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Imipenem Monohydrate

64221-86-9sc-205350A
sc-205350
5 mg
25 mg
$66.00
$122.00
7
(1)

Imipenem Monohydrate is a β-lactam antibiotic distinguished by its unique bicyclic structure, which enhances its stability against β-lactamases. This compound exhibits strong affinity for penicillin-binding proteins, facilitating the disruption of bacterial cell wall synthesis. Its hydrophilic nature, due to the monohydrate form, influences solubility and diffusion across biological membranes, while its stereochemistry contributes to its reactivity in acylation reactions, allowing for diverse interactions in complex biological systems.

Camptothecin

7689-03-4sc-200871
sc-200871A
sc-200871B
50 mg
250 mg
100 mg
$57.00
$182.00
$92.00
21
(2)

Camptothecin, a notable lactam, features a pentacyclic structure that enables unique interactions with DNA topoisomerases, inhibiting their activity and disrupting DNA replication. Its rigid framework and specific stereochemistry enhance its binding affinity, influencing reaction kinetics in cellular environments. The compound's hydrophobic characteristics affect its solubility and permeability, allowing it to traverse lipid membranes efficiently, thus impacting its behavior in various chemical contexts.

Ro 31-8220

138489-18-6sc-200619
sc-200619A
1 mg
5 mg
$90.00
$240.00
17
(1)

Ro 31-8220, a lactam compound, exhibits distinctive molecular interactions through its ability to modulate protein kinase activity. Its structural conformation facilitates specific binding to target enzymes, influencing phosphorylation pathways and cellular signaling cascades. The compound's unique electronic properties contribute to its reactivity, allowing for selective interactions with nucleophiles. Additionally, its hydrophobic regions enhance membrane affinity, affecting its distribution in biological systems.

Akt Inhibitor VIII, Isozyme-Selective, Akti-1/2

612847-09-3sc-202048
sc-202048A
1 mg
5 mg
$204.00
$265.00
29
(1)

Akt Inhibitor VIII, Isozyme-Selective, Akti-1/2, is a lactam that showcases unique selectivity in targeting Akt isoforms, influencing downstream signaling pathways. Its rigid lactam ring structure promotes specific conformational changes in protein interactions, enhancing its binding affinity. The compound's electron-rich regions facilitate nucleophilic attack, while its hydrophobic characteristics improve solubility in lipid environments, impacting its kinetic behavior in various biochemical contexts.

Ampicillin sodium salt, cell culture grade

69-52-3sc-202951
sc-202951A
sc-202951B
5 g
100 g
1 kg
$65.00
$410.00
$2075.00
5
(1)

Ampicillin sodium salt, cell culture grade, is a lactam characterized by its ability to disrupt bacterial cell wall synthesis through unique interactions with penicillin-binding proteins. Its structural conformation allows for effective mimicry of natural substrates, leading to competitive inhibition. The compound's zwitterionic nature enhances solubility in aqueous environments, facilitating its diffusion across membranes. Additionally, its reactivity profile is influenced by the presence of functional groups that participate in hydrogen bonding, affecting its stability and interaction dynamics in biological systems.

DPQ

129075-73-6sc-202755
sc-202755A
1 mg
5 mg
$65.00
$251.00
18
(1)

DPQ, a lactam compound, exhibits distinctive reactivity due to its cyclic structure, which promotes ring strain and enhances electrophilicity. This feature facilitates nucleophilic attack, leading to rapid acylation reactions. The compound's unique electron distribution allows for specific interactions with nucleophiles, influencing reaction kinetics. Additionally, its polar characteristics contribute to solubility in various solvents, impacting its behavior in diverse chemical environments.

CID 755673

521937-07-5sc-205246
10 mg
$203.00
1
(1)

CID 755673, a lactam, showcases intriguing properties stemming from its cyclic amide structure, which introduces unique steric and electronic effects. This configuration enhances its susceptibility to nucleophilic attack, resulting in accelerated reaction rates. The compound's ability to form stable intermediates during reactions is influenced by its specific hydrogen bonding patterns. Furthermore, its moderate polarity aids in solvation dynamics, affecting reactivity in different chemical contexts.

Rolipram

61413-54-5sc-3563
sc-3563A
5 mg
50 mg
$75.00
$212.00
18
(1)

Rolipram, classified as a lactam, features a cyclic amide framework that imparts distinctive reactivity and stability characteristics. Its unique electron distribution facilitates selective interactions with nucleophiles, promoting rapid reaction kinetics. The compound's conformational flexibility allows for diverse spatial arrangements, influencing its reactivity profile. Additionally, the presence of intramolecular hydrogen bonds contributes to its thermodynamic stability, impacting solubility and reactivity in various environments.

Vardenafil

224785-90-4sc-362054
sc-362054A
sc-362054B
100 mg
1 g
50 g
$516.00
$720.00
$16326.00
7
(1)

Vardenafil, as a lactam, exhibits a unique cyclic structure that enhances its reactivity through specific intramolecular interactions. The compound's electron-rich nitrogen atom engages in hydrogen bonding, which stabilizes its conformation and influences its reactivity with electrophiles. This structural arrangement allows for selective pathways in chemical reactions, while its hydrophobic regions affect solubility and partitioning behavior in different solvents, showcasing its versatile chemical nature.

U-73343

142878-12-4sc-201422
sc-201422A
5 mg
25 mg
$91.00
$343.00
17
(1)

U-73343, classified as a lactam, features a cyclic amide structure that promotes unique ring strain dynamics, influencing its reactivity. The nitrogen atom within the lactam ring can engage in resonance, stabilizing the molecule and affecting its electrophilic character. This compound can participate in nucleophilic acyl substitution reactions, showcasing distinct kinetics. Its ability to form stable intermediates enhances its role in various synthetic pathways, making it a versatile building block in organic chemistry.