Date published: 2025-12-18

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Anthelmintics

Santa Cruz Biotechnology now offers a broad range of anthelmintics for use in various applications. Anthelmintics, compounds that expel or destroy parasitic worms, are crucial in scientific research for studying parasitic infections and developing effective control strategies. These compounds are extensively used in veterinary and agricultural research to manage helminth infections in livestock, which can significantly impact animal health and productivity. Researchers employ anthelmintics to investigate the life cycles, resistance mechanisms, and interactions of parasitic worms with their hosts. This research is vital for understanding the dynamics of parasitism and developing sustainable methods for controlling helminth populations. In environmental science, anthelmintics are used to study the effects of parasitic worms on wildlife and ecosystem health, providing insights into biodiversity and the ecological impacts of parasitism. Additionally, anthelmintics play a role in biochemistry and molecular biology, where they are used to explore the biochemical pathways and physiological responses of parasites, aiding in the discovery of new molecular targets for parasite control. The versatility and importance of anthelmintics in these various fields underscore their critical role in advancing scientific research and developing innovative solutions for managing parasitic infections. View detailed information on our available anthelmintics by clicking on the product name.

Items 41 to 46 of 46 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

(±)-Nicotine

22083-74-5sc-212379
sc-212379A
sc-212379B
sc-212379C
250 mg
500 mg
5 g
10 g
$370.00
$735.00
$7140.00
$13770.00
1
(1)

(+/-)-Nicotine exhibits anthelmintic properties by interacting with nicotinic acetylcholine receptors in nematodes, leading to paralysis and eventual death of the parasites. Its unique ability to mimic acetylcholine allows it to disrupt neuromuscular transmission effectively. The compound's lipophilicity enhances its absorption across biological membranes, while its rapid metabolism results in a swift onset of action, making it a potent agent against helminthic infections.

Clorsulon

60200-06-8sc-211118
100 mg
$138.00
(0)

Clorsulon functions as an anthelmintic by selectively inhibiting the enzyme phosphofructokinase in parasitic organisms, disrupting their energy metabolism. This inhibition leads to a depletion of ATP, ultimately causing cellular dysfunction and death in the target parasites. Its unique structure allows for specific binding interactions, enhancing its efficacy. Additionally, Clorsulon's stability in various environments contributes to its prolonged activity against helminthic species.

Febantel

58306-30-2sc-211499
100 mg
$220.00
(0)

Febantel functions as an anthelmintic by targeting the neuromuscular systems of parasites, leading to paralysis and eventual death. Its unique mechanism involves the inhibition of specific enzymes critical for energy metabolism, disrupting the normal function of the parasite's cellular respiration. The compound's moderate lipophilicity aids in its absorption across biological membranes, while its stability in diverse environmental conditions enhances its efficacy against various helminth species.

Oxyclozanide

2277-92-1sc-236264
100 mg
$97.00
1
(0)

Oxyclozanide acts as an anthelmintic through its interference with the metabolic pathways of parasites, particularly by disrupting the oxidative phosphorylation process. This compound exhibits a unique affinity for specific mitochondrial sites, leading to impaired ATP synthesis. Its lipophilic nature enhances membrane permeability, facilitating rapid uptake by target organisms. Furthermore, Oxyclozanide's stability under varying pH conditions allows for sustained activity, making it effective against a range of helminths.

Quinine hydrochloride dihydrate

6119-47-7sc-212619
sc-212619A
5 g
25 g
$63.00
$210.00
(0)

Quinine hydrochloride dihydrate exhibits anthelmintic properties through its interaction with the parasite's ion channels, particularly affecting calcium and sodium influx. This disruption alters the excitability of muscle cells, leading to paralysis. Its crystalline structure enhances solubility, facilitating bioavailability. Additionally, the compound's ability to form hydrogen bonds contributes to its stability in aqueous environments, optimizing its performance against target organisms.

Levamisole-d5 Hydrochloride

1246819-64-6sc-490807
sc-490807A
1 mg
10 mg
$340.00
$2400.00
(0)

Levamisole-d5 Hydrochloride, a deuterated derivative of Levamisole, exhibits unique isotopic labeling that influences its molecular dynamics and reaction pathways. The presence of deuterium alters hydrogen bonding interactions, enhancing stability in certain environments. This modification can lead to distinct kinetic behaviors in chemical reactions, affecting the rate and mechanism of interactions with biological macromolecules. Its solubility characteristics may also differ, impacting its behavior in various chemical contexts.