PerkinElmer

Radiochemicals

OF

Radiometric detection is considered the gold standard for many applications, from drug discovery and development to plant sciences. The technique achieves sub-femtogram sensitivity levels, and quantitates the binding and activity of radiolabeled compounds with high specificity and sensitivity. As the leading supplier of research radiochemicals, we offer a broad portfolio of products for any radiochemistry need.

Our radiochemical analysis products include:

  • Radionuclides such as 14C, 89Zr, 125I, 32P, 35S, 3H, 45Ca, 51Cr, 55Fe
  • EasyTag protein labeling mixes
  • EasyTide radiolabeled nucleotides
  • NEN radiolabeled compounds
  • SPA Enzymatic assays and imaging beads

Our radiolabeled compounds are useful in a wide range of applications:

  • Research in cancer, CNS and neurologic disease, cardiovascular and metabolic disease, inflammation, and other disorders
  • Kinetic and mechanistic studies
  • Scintillation assays
  • Radiometric cAMP assays
  • Detection of binding to over 80 different receptor types

Our radiometric reagents are not reliant on the use of antibodies for detection and read-out – just one of the reasons they are so widely used.

For research and investigational use only.

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1-25 的 435 产品与服务

  • CGRP Human 125l

    Angiotensin II, (Human), [125I]-Tyr4

    Angiotensin II (human), labeled with 125I on the tyrosine (Tyr4) residue. Angiotensin II binds and activates angiotensin II receptor type 1 (AT1) and type 2 (AT2) receptors, a class of GPCRs important in vasoconstriction. Angiotensin II is a potential drug target for blood pressure regulation.
  • Diclofenac sodium- Phenylacetic acid C14

    Arginine, L- [Guanidine-14C], 50µCi (1.85MBq)

    L-arginine has a single 14C labeled carbon in the guanidine portion of the molecule. L-arginine is commonly used in arginine metabolism studies and can be incorporated into proteins in the brain posttranslationally. This is a replacement product for NEC267E050UC.
  • Adenosine 5 Triphosphate 250 µCi

    Ketanserin, (R41468), [Benzoyleneurea-3H]

    Ketanserin (Sufrexal; R41468), tritiated on the benzoyleneurea group. Ketanserin is a high-affinity non-selective antagonist of 5-HT2A receptors. This is a replacement for NET791250UC.
  • Diclofenac sodium- Phenylacetic acid C14

    Histidine, [1,2-14C], 50 µCi

    L-Histidine, labeled with 14C at the 1,2 positions. L-Histidine is commonly used in amino acid uptake and metabolic studies. This is a replacement for NEC277E050UC.
  • Diclofenac sodium- Phenylacetic acid C14

    Alanine, L- [1,2-14C]-

    L-alanine, labeled with 14C at positions 1 and 2. 14C-L-alanine is commonly used in alanine metabolism studies and studies of protein synthesis, particularly in soil organisms.

    This is a replacement for part number NEC266E050UC

  • Diclofenac sodium- Phenylacetic acid C14

    Hydroxytryptamine Binoxalate (Serotonin Binoxalate), 5-[1-14C]

    5-Hydroxytryptamine Binoxalate (Serotonin Binoxalate), labeled with C-14 at the 1-position. 5-Hydroxytryptamine is a neurotransmitter and is the endogenous ligand for serotonin receptors. NEC855 replaces product NEC225, which was labeled at the 2-position.
  • Diclofenac sodium- Phenylacetic acid C14

    Cystine, L-[1,2,1',2'-14C]

    L-cystine, labeled with C-14 on C1, C2, C1', C2'. 14C-L-cystine is commonly used in cystine transport, cystine binding, and pencillin biosynthesis studies.
  • Zirconium-89 injected into mouse, imaged using G8 PET/CT

    Zirconium-89

    Visualize and quantify uptake of monoclonal antibodies (mAbs) using Zirconium-89 (89Zr). With a long-lived half-life of (3.3 days), 89Zr is well suited as a PET Imaging biomarker to access target expression as well as tumor targeting of mAbs.
  • PerkinElmer

    Stable Isotope Labeling Service

    PerkinElmer's experienced chemists will work with you, scientist to scientist, to design and prepare your stable isotope chemical. You'll have access to PerkinElmer's extensive technical support resources, both during the specification process and after delivery, to ensure your custom product meets your exact specifications and application needs. We offer industry-leading turnaround times on quotations and deliveries worldwide-and highly competitive pricing.
  • PerkinElmer

    Precise Analytical Services

    PerkinElmer's experienced chemists will work with you, scientist to scientist, to design and prepare your radiochemical. You'll have access to PerkinElmer's extensive technical support resources, both during the specification process and after delivery, to ensure your custom product meets your exact specifications and application needs. We offer industry-leading turnaround times on quotations and deliveries worldwide-and highly competitive pricing.
  • GMP Radiosynthesis Services

    PerkinElmer's experienced chemists will work with you, scientist to scientist, to design and prepare your radiochemical. You'll have access to PerkinElmer's extensive technical support resources, both during the specification process and after delivery, to ensure your custom product meets your exact specifications and application needs. We offer industry-leading turnaround times on quotations and deliveries worldwide-and highly competitive pricing.
  • PerkinElmer

    14C, 3H and 35S Custom Synthesis

    PerkinElmer's experienced chemists will work with you, scientist to scientist, to design and prepare your radiochemical. You'll have access to PerkinElmer's extensive technical support resources, both during the specification process and after delivery, to ensure your custom product meets your exact specifications and application needs. We offer industry-leading turnaround times on quotations and deliveries worldwide-and highly competitive pricing.
  • PerkinElmer

    125I Radioiodination Services

    PerkinElmer's experienced chemists will work with you, scientist to scientist, to design and prepare your radiochemical. You'll have access to PerkinElmer's extensive technical support resources, both during the specification process and after delivery, to ensure your custom product meets your exact specifications and application needs. We offer industry-leading turnaround times on quotations and deliveries worldwide-and highly competitive pricing.
  • Diclofenac sodium- Phenylacetic acid C14

    Mannitol, D-[2-14C]

    D-mannitol, labeled at position 2 with 14C.
  • WIN 35428, [N-Methyl-3H]

    WIN 35428 [(–)-2-β-Carbomethoxy-3-β-(4-fluorophenyl)tropane], tritiated on the N-methyl group. WIN 35428 acts as an antagonist at dopamine transporters (DATs).
  • PerkinElmer

    WGA-PEI TYPE A PS 500 MG

    WGA-coated SPA beads, for capturing cell membranes in proximity-based scintillation assays.
  • PerkinElmer

    WGA-PEI TYPE A PS 50 MG

    WGA-coated SPA beads, for capturing cell membranes in proximity-based scintillation assays.
  • PerkinElmer

    WGA YSI 250MG

    WGA-coated SPA beads, for capturing cell membranes in proximity-based radiometric scintillation assays.
  • PerkinElmer

    WGA YSI 1G

    WGA-coated SPA beads, for capturing cell membranes in proximity-based radiometric scintillation assays.
  • PerkinElmer

    WGA YOX Imaging Beads 500 MG

    WGA-coated SPA beads, for capturing cell membranes in proximity-based scintillation assays.
  • PerkinElmer

    WGA YOX Imaging Beads 50 MG

    WGA-coated SPA beads, for capturing cell membranes in proximity-based scintillation assays.
  • PerkinElmer

    WGA PVT SPECIAL 25 X 500 MG

    Wheat germ agglutinin (WGA), PEI-coated SPA beads, for proximity-based radiometric scintillation assays. The treatment of PVT-WGA SPA beads with positively charged polyethyleneimine (PEI) blocks potential non-specific binding sites on the SPA bead surface.
  • PerkinElmer

    WGA PVT SPA 2G

    WGA-coated SPA beads, for capturing cell membranes in proximity-based radiometric scintillation assays.
  • PerkinElmer

    WGA PVT SPA 100 MG

    WGA-coated SPA beads, for capturing cell membranes in proximity-based radiometric scintillation assays.
  • PerkinElmer

    WGA PVT PEI TYPE B 500 MG

    WGA-coated SPA beads, for capturing cell membranes in proximity-based radiometric scintillation assays.
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