Date published: 2025-12-18

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Alkaloids

Santa Cruz Biotechnology now offers a broad range of alkaloids for use in various applications. Alkaloids are a diverse group of naturally occurring organic compounds that primarily contain basic nitrogen atoms. They are typically derived from plant sources, though some can be found in fungi, bacteria, and animals. Alkaloids have a wide range of chemical structures and biological activities, making them critical to numerous fields of scientific research. In organic chemistry, alkaloids are studied for their complex molecular architectures and synthetic challenges, providing insights into advanced synthetic methodologies and reaction mechanisms. Researchers investigate alkaloids to understand their biosynthesis pathways, which can lead to innovative approaches in bioengineering and the sustainable production of these compounds. In ecological and environmental studies, alkaloids are examined for their roles in plant defense mechanisms, interactions with herbivores, and their effects on ecosystems. Additionally, alkaloids have significant applications in analytical chemistry, where they are used as standards and reference materials for various analytical techniques, including chromatography and mass spectrometry. In the field of biochemistry, alkaloids are key to studying enzyme interactions, receptor binding, and signal transduction pathways. By offering a diverse selection of alkaloids, Santa Cruz Biotechnology supports a wide range of scientific endeavors, enabling researchers to select the appropriate compounds for their specific experimental needs. This extensive range of alkaloids facilitates innovation and discovery across multiple scientific disciplines, including chemistry, biology, environmental science, and materials science. View detailed information on our available alkaloids by clicking on the product name.

Items 141 to 150 of 193 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

rac N′-Nitrosonornicotine

80508-23-2sc-212739
100 mg
$400.00
(0)

Rac N'-Nitrosonornicotine, an alkaloid, features a distinctive nitroso group that significantly alters its reactivity and interaction with biological systems. This compound engages in electrophilic reactions, allowing it to form adducts with nucleophiles, which can lead to complex biochemical pathways. Its unique structural attributes enable it to modulate interactions with cellular components, influencing signaling mechanisms. The presence of the nitroso moiety also enhances its stability under specific conditions, affecting its behavior in various environments.

Myosmine

532-12-7sc-211939
sc-211939A
100 mg
500 mg
$115.00
$440.00
1
(1)

Myosmine, an alkaloid, exhibits intriguing properties due to its unique nitrogen-containing structure. It participates in various oxidation-reduction reactions, influencing its reactivity with other organic compounds. Myosmine's ability to form stable complexes with metal ions highlights its role in coordination chemistry. Additionally, its hydrophobic characteristics facilitate interactions with lipid membranes, potentially affecting membrane fluidity and permeability. This compound's distinct molecular behavior contributes to its diverse chemical landscape.

Norharmane

244-63-3sc-212410
sc-212410A
sc-212410C
sc-212410D
sc-212410E
sc-212410F
100 mg
500 mg
1 g
5 g
25 g
50 g
$54.00
$145.00
$240.00
$400.00
$1610.00
$3192.00
33
(1)

Norharmane, an alkaloid, is characterized by its unique indole structure, which allows for significant π-π stacking interactions with aromatic compounds. This property enhances its stability in various environments. Norharmane also engages in electron transfer processes, influencing its reactivity in redox reactions. Its amphiphilic nature enables it to interact with both polar and nonpolar substances, affecting solubility and distribution in complex mixtures. These features contribute to its intriguing chemical dynamics.

(−)-Bebeerine

436-05-5sc-363277
5 mg
$1035.00
(0)

(-)-Bebeerine, an alkaloid, exhibits a distinctive tetracyclic structure that facilitates strong hydrogen bonding and hydrophobic interactions, influencing its solubility profile. Its stereochemistry plays a crucial role in molecular recognition processes, allowing it to selectively bind to certain receptors. Additionally, (-)-Bebeerine's ability to undergo oxidation and reduction reactions highlights its dynamic reactivity, making it a fascinating subject for studying complex biochemical pathways.

Vinblastine

865-21-4sc-491749
sc-491749A
sc-491749B
sc-491749C
sc-491749D
10 mg
50 mg
100 mg
500 mg
1 g
$100.00
$230.00
$450.00
$1715.00
$2900.00
4
(0)

Vinblastine, an alkaloid, features a complex indole-alkaloid structure that enables it to engage in specific π-π stacking interactions and hydrophobic contacts. This unique arrangement enhances its affinity for microtubules, disrupting their polymerization. The compound's stereochemical configuration is pivotal in modulating its interactions with cellular components, influencing its kinetic behavior in various biochemical environments. Its reactivity is further characterized by susceptibility to oxidation, providing insights into its role in cellular dynamics.

1,7-Dimethyluric Acid

33868-03-0sc-208809
25 mg
$305.00
5
(1)

1,7-Dimethyluric Acid, an alkaloid, exhibits intriguing structural features that facilitate hydrogen bonding and solvation dynamics. Its unique arrangement allows for selective interactions with nucleophiles, influencing reaction pathways and kinetics. The compound's ability to form stable complexes with metal ions enhances its reactivity, while its polar functional groups contribute to its solubility in various solvents. These characteristics underscore its potential in diverse chemical environments.

Drotaverine Hydrochloride

985-12-6sc-211384
sc-211384A
sc-211384B
sc-211384C
10 mg
25 mg
50 mg
100 mg
$275.00
$560.00
$975.00
$1640.00
(1)

Drotaverine Hydrochloride, an alkaloid, showcases distinctive electronic properties due to its conjugated system, which enhances its reactivity in electrophilic substitution reactions. The compound's spatial configuration allows for effective π-π stacking interactions, influencing its aggregation behavior in solution. Additionally, its zwitterionic nature contributes to unique solubility profiles, enabling it to participate in diverse chemical equilibria and complexation reactions with various substrates.

Brucine sulfate salt

652154-10-4sc-239432
25 g
$60.00
(0)

Brucine sulfate salt, an alkaloid, exhibits intriguing chiral properties that influence its stereochemical interactions, leading to selective binding in biological systems. Its rigid bicyclic structure facilitates unique hydrogen bonding patterns, enhancing its stability in various environments. The compound's amphipathic nature allows it to interact with both polar and nonpolar solvents, affecting its solubility and reactivity in different chemical contexts, including complexation and ion exchange processes.

O-Desmethyl galanthamine

60755-80-8sc-208117
5 mg
$296.00
(0)

O-Desmethyl galanthamine, an alkaloid, features a distinctive quaternary ammonium structure that enhances its ability to form strong ionic interactions with various substrates. Its unique conformation allows for specific π-π stacking interactions, influencing its reactivity in organic synthesis. The compound's hydrophilic and lipophilic regions contribute to its solubility profile, facilitating diverse chemical pathways and enhancing its role in complexation reactions and molecular recognition processes.

Quinine

130-95-0sc-212616
sc-212616A
sc-212616B
sc-212616C
sc-212616D
1 g
5 g
10 g
25 g
50 g
$77.00
$102.00
$163.00
$347.00
$561.00
1
(0)

Quinine, an alkaloid derived from the bark of the cinchona tree, is characterized by its complex stereochemistry, which contributes to its unique spatial orientation and interactions. Its quinoline structure allows for π-π stacking and hydrophobic interactions, enhancing its affinity for certain biological targets. Additionally, the presence of a basic nitrogen atom facilitates protonation, influencing solubility and reactivity in various environments, while its chiral centers enable selective binding in asymmetric reactions.