Additional Cancer Bioactive Molecules
Bioactive natural products and synthetic molecules studied for their role in cancer research span plant-derived polyphenols, alkaloids, and other anticancer or antiproliferative compounds. Reference standards support cytotoxicity studies, natural product characterization, and structure-activity relationship work on lead compounds. Sourcing from a dedicated supplier means every compound, whether well-characterized or a rare plant alkaloid, arrives with verified identity, documented purity, and a certificate of analysis. Many of these compounds also have applications in broader phytochemistry and pharmacology research. Many are of interest well beyond oncology, including in general phytochemistry research.
Showing 1–16 of 1548 results
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?-Benzyl L-Aspartic Acid N-carboxyanhydride
CAS Number: 13590-42-6
Molecular Formula: C12 H11 N O5
Catalogue Number: RCLS2L109746
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(-)-Actinonin
CAS Number: 13434-13-4
Molecular Formula: C19 H35 N3 O5
Catalogue Number: RCLS2L101872
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(-)-Carbovir
CAS Number: 120443-30-3
Molecular Formula: C11 H13 N5 O2
Catalogue Number: RCLS2L118352
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(-)-Dimethyl 2,3-O-isopropylidene-L-tartrate
CAS Number: 37031-29-1
Molecular Formula: C9H14O6
Catalogue Number: RCLS2L136406
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(-)-Epigallocatechin
CAS Number: 970-74-1
Molecular Formula: C15 H14 O7
Catalogue Number: RCLS2L140670
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(-)-Epigallocatechin Gallate-d3/d4
CAS Number: N/A
Molecular Formula: C22 D3 H15 O11
Catalogue Number: RCLS2L140673
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(-)-Tabersonine Hydrochloride
CAS Number: 29479-00-3
Molecular Formula: C21H24N2O2 HCl
Catalogue Number: RCLS2L180404
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((1-Chloro-2-methylpropan-2-yl)oxy)trimethylsilane
CAS Number: 31557-15-0
Molecular Formula: C7H17ClOSi
Catalogue Number: RCLS2L124683
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Bioactive Molecule Standards for Cancer Research and Natural Product Studies
Certified reference standards matter wherever cytotoxicity screening, natural product characterization, or structure-activity work is underway. Natural product research in particular depends on knowing exactly what compound and purity you’re working with, since minor structural variants within a plant extract can behave very differently in a biological assay.
Clinivex supplies an extensive range of bioactive molecule standards relevant to cancer and natural product research, each backed by a certificate of analysis. Our technical team can help source less common natural product analogs through our global supplier network when a project calls for something outside our standard catalogue.
As an ISO 9001:2015 and GMP certified supplier working with academic, pharmaceutical, and biotech researchers across the USA and Canada, we focus on accurate documentation and dependable delivery for every order. Because natural product research often involves comparing a compound against closely related structural variants, we also maintain a range of related analogs that can be sourced alongside your primary standard.
Many of the plant-derived compounds in this category also fall under the broader natural products range, which spans additional bioactive classes beyond cancer research specifically. Oncology drug discovery work of this kind is a recurring subject within pharmaceutical and biotech research. Contact our team to request a quote or check availability for a specific bioactive molecule standard.
why Choose Clinivex?
At Clinivex, we earn trust by delivering impeccable service, expert guidance, and reliable solutions that drive long-term success. With a skilled team and customer-first approach, we stand as a leading pharmaceutical reference standards supplier in the USA and Canada.
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Frequently Asked Questions
They are used to study mechanisms of action, cytotoxicity, and structure-activity relationships, helping researchers understand how natural or synthetic compounds affect cancer cell behavior.
Natural extracts often contain closely related structural variants, and even small differences in purity can significantly change a compound’s biological activity, making certified reference material essential for reliable results.
Not necessarily. Natural origin doesn’t guarantee safety, since some plant-derived compounds are toxic or carcinogenic, so each molecule’s safety profile needs to be evaluated independently.
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