Additional pharmaceutical toxicology research materials
Pharmaceutical compounds, drug metabolites, and synthesis-related intermediates used in toxicology-focused pharmaceutical research include local anesthetics and hormone-related compounds. Reference standards support early-stage pharmacokinetic research and method development before a testing approach is fully finalized. Sourcing from a dedicated supplier means every compound used at this research stage arrives with verified identity, documented purity, and a certificate of analysis. This work often happens before a testing method is fully finalized and locked in for routine use. This work typically happens before a testing method is fully finalized and validated.
Showing 1–16 of 308 results
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(±)-Bupivacaine-d9 (butyl-d9)
CAS Number: 474668-57-0
Molecular Formula: C18 2H9 H19 N2 O
Catalogue Number: RCLS2L115603
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(±)-Hexanoylcarnitine Chloride
CAS Number: 6920-35-0
Molecular Formula: C13H26NO4+ • Cl-
Catalogue Number: RCLS2L149010
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(±)-Mandelic-2,3,4,5,6-d5 Acid
CAS Number: 70838-71-0
Molecular Formula: C8 2H5 H3 O3
Catalogue Number: RCLS2L158987
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(15R)-Bimatoprost
CAS Number: 1163135-92-9
Molecular Formula: C25 H37 N O4
Catalogue Number: RCLS2L111070
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(17alpha)-19-Norpregna-3,5-dien-20-yne-3,17-diol 3,17-Diacetate
CAS Number: 2205-78-9
Molecular Formula: C24 H30 O4
Catalogue Number: RCLS2L169771
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(1R,3S)-Solifenacin Hydrochloride
CAS Number: 180468-40-0
Molecular Formula: C23 H26 N2 O2 . Cl H
Catalogue Number: RCLS2L179419
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(2S,3S,5S)-5-[(N-Formyl-L-leucyl)oxy]-2-hexyl-3-hydroxyhexadecanoic Acid (Orlistat Impurity) (>80%)
CAS Number: 130676-66-3
Molecular Formula: C29 H55 N O6
Catalogue Number: RCLS2L146047
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(R)-(-)-Clenbuterol
CAS Number: 50306-03-1
Molecular Formula: C12 H18 Cl2 N2 O
Catalogue Number: RCLS2L123390
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(R)-(+)-Bupivacaine Hydrochloride
CAS Number: 27262-46-0
Molecular Formula: C18 H28 N2 O . HCl
Catalogue Number: RCLS2L115591
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(R)-2-Methylbutyric Acid-d3
CAS Number: 1346617-08-0
Molecular Formula: C5H7D3O2
Catalogue Number: RCLS2L161741
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(S)-(-)-Dropropizine
CAS Number: 99291-25-5
Molecular Formula: C13H20N2O2
Catalogue Number: RCLS2L139081
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(S)-(+)-Clenbuterol
CAS Number: 50499-60-0
Molecular Formula: C12 H18 Cl2 N2 O
Catalogue Number: RCLS2L123391
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(S)-1-Amino-3-chloro-2-propanol Hydrochloride
CAS Number: 34839-13-9
Molecular Formula: C3 H8 Cl N O . Cl H
Catalogue Number: RCLS2L104209
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(S)-Citalopram-d6 Oxalate
CAS Number: 1217733-09-9
Molecular Formula: C20 2H6 H15 F N2 O . C2 H2 O4
Catalogue Number: RCLS2L123214
Reference Materials Supporting Pharmaceutical Toxicology Research
Verified reference materials matter throughout the research phase of pharmaceutical toxicology work, before a testing method is fully validated and standardized. Building early research on an uncertain compound can create problems that only surface once a method moves toward routine use.
Clinivex supplies a range of pharmaceutical toxicology research materials, including enantiomer-specific compounds and related intermediates, each backed by a certificate of analysis. Our technical team can help source less common research materials through our global supplier network as your project develops.
As an ISO 9001:2015 and GMP certified supplier working with pharmaceutical research teams across the USA and Canada, we focus on accurate documentation and dependable delivery throughout every stage of a project. As your research progresses toward a more defined testing method, we can also help identify which compounds in our broader toxicology reference catalogue might support that next stage.
Compounds that have moved past the research stage into validated use are covered under pharmaceutical toxicology reference materials, a related category. Forensic and clinical toxicology casework more specifically falls within forensic and toxicological sciences.
Contact our team to request a quote or check availability for a specific pharmaceutical toxicology research material.
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Frequently Asked Questions
Research-stage materials are often used earlier in a project, during method development or exploratory testing, before a compound becomes part of a fully validated, routine analytical method.
Building a method on an uncertain compound early on can introduce errors that are much harder to trace once the method is later validated and put into routine use.
Once a testing method built around it has been shown to be accurate, precise, and reproducible, and is locked in for routine, ongoing use.
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