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TargetMol | Compound Library

Antiparasitic Natural Product Library

Catalog No. L6620

Parasites are Organisms that live on or within a host organism and obtain food from or at the expense of the host organism. Diseases caused by parasites have been widespread and significant public health problems worldwide, especially in tropical and subtropical regions. Parasitic diseases can be caused by three major groups of parasites: parasitic protozoa, helminths, and parasitic arthropods.

Natural products have long been used to treat various parasitic diseases such as babesiosis, leishmaniasis, malaria, trypanosomiasis, etc. and have low toxicity to non-target organisms, making them an important source of lead compounds for antiparasitic drugs. In 2015, the Nobel Prize in Physiology was awarded to Tu Youyou, who developed a new anti-malarial drug from the Artemisia plant, and to Tomo Omura and William Campbell, who isolated and extracted avermectin from the highly efficient Streptomyces, for their outstanding contributions to research in the treatment of parasitic diseases.

The TargetMol Anti-Parasitic Natural Product Library is a carefully organized collection of 253 natural products with anti-parasitic activity, which can be used in various fields of anti-parasitic drug discovery and new target validation.

All products from TargetMol are for Research Use Only. Not for Human or Veterinary or Therapeutic Use.

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Catalog No. L6620

Antiparasitic Natural Product Library

sizeIn stock

  • 1 mg
  • 30 μL x 10 mM (in DMSO)
  • 50 μL x 10 mM (in DMSO)
  • 100 μL x 10 mM (in DMSO)
  • 250 μL x 10 mM (in DMSO)
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Product Description Product Description

  • Carefully selected 253 natural products with antiparasitic activity, a powerful tool for antiparasitic drug development.
  • Contains a variety of active natural products that are antiparasitic , such as anti-Plasmodium, anti-Leishmania, anti-filariasis, etc.
  • Structurally diverse, containing classes of terpenoids, alkaloids, polyphenols, etc.
  • Multiple detection techniques such as NMR, HPLC/LCMS to ensure correct structure and high purity of products and reduce false positives.

Packaging And Storage Packaging And Storage

  • Powder or pre-dissolved DMSO solutions in 96/384 well plate with optional 2D barcode
  • Shipped with blue ice
  • This compound library is provided at a concentration of 10 mM in DMSO. A small number of compounds may be provided in different solvents or concentrations due to solubility or stability requirements. Please refer to the specific product information for details.

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Parasite
Apoptosis
Antibacterial
Autophagy
Antibiotic
Endogenous Metabolite
Antifungal
NF-κB
Reactive Oxygen Species
Ferroptosis
AChR
Antifection
COX
HIV Protease
Antioxidant
Topoisomerase
DNA/RNA Synthesis
Influenza Virus
Potassium Channel
p38 MAPK
Calcium Channel
Cholinesterase (ChE)
Microtubule Associated
Caspase
PKC
IL Receptor
Sodium Channel
ATPase
JNK
Mitophagy
Virus Protease
Mitochondrial Metabolism
ROS
Cytochromes P450
EGFR
SARS-CoV
ribosome
5-HT Receptor
TNF
Anti-infection
Dehydrogenase
PARP
ERK
Glucosidase
HSV
Akt
Nrf2
Beta Amyloid
AMPK
Phospholipase
GABA Receptor
NOS
Dopamine Receptor
Estrogen/progestogen Receptor
PI3K
Histamine Receptor
Phosphatase
PKA
Estrogen Receptor/ERR
VEGFR
TRP/TRPV Channel
MAO
Immunology/Inflammation related
UGT
Gamma-secretase
MMP
GluR
Lipoxygenase
TGF-beta/Smad
P-gp
Antiviral
HSP
TLR
Bcl-2 Family
STAT
Tyrosinase
FAK
p53
ADC Cytotoxin
FOXO3
Chloride channel
MicroRNA
Carbonic Anhydrase
Hydrogenase
HCV Protease
DYRK
NADPH
Lipase
Factor Xa
MRP
HBV
Wnt/beta-catenin
Serotonin Transporter
Serine/threonin kinase
Adrenergic Receptor
IAP
iGluR
PDE
MTH1
Drug Metabolite
NMDAR
DNA gyrase
ABC Transporter
Monoamine Transporter
Opioid Receptor
Fatty Acid Synthase
Hedgehog/Smoothened
CCR
CXCR
Xanthine Oxidase
Aurora Kinase
cAMP
Epigenetic Reader Domain
Indoleamine 2,3-Dioxygenase (IDO)
mTOR
Prostaglandin Receptor
Aminopeptidase
Histone Acetyltransferase
transporter
GluCls
RSV
Casein Kinase
IκB/IKK
HDAC
MEK
Platelet aggregation
Syk
NOD
HIF/HIF Prolyl-Hydroxylase
NO Synthase
Vitamin

Keywords