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Search

Probes for INS

ACD can configure probes for the various manual and automated assays for INS for RNAscope Assay, or for Basescope Assay compatible for your species of interest.

Your search for "INS" returned results. Search for our Top genes LGR5, vglut2, gad67, brca1

    Refine Probe List

    Content for comparison

    Gene

    • TH (2) Apply TH filter
    • SLC32A1 (2) Apply SLC32A1 filter
    • TAC1 (2) Apply TAC1 filter
    • Slc17a6 (2) Apply Slc17a6 filter
    • (-) Remove Pdyn filter Pdyn (2)
    • mCherry (2) Apply mCherry filter
    • Piezo2 (1) Apply Piezo2 filter
    • AGTR1 (1) Apply AGTR1 filter
    • Gal (1) Apply Gal filter
    • egfp (1) Apply egfp filter
    • Htr7 (1) Apply Htr7 filter
    • DRD1 (1) Apply DRD1 filter
    • DRD2 (1) Apply DRD2 filter
    • GPR52 (1) Apply GPR52 filter
    • Penk (1) Apply Penk filter
    • Npy (1) Apply Npy filter
    • Gad2 (1) Apply Gad2 filter
    • FOXP1 (1) Apply FOXP1 filter
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    • CHRM4 (1) Apply CHRM4 filter
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    • Gpr6 (1) Apply Gpr6 filter
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    • CARTPT (1) Apply CARTPT filter
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    • tdTomato (1) Apply tdTomato filter
    • vGlut2 (1) Apply vGlut2 filter
    • Gad67 (1) Apply Gad67 filter
    • Cre (1) Apply Cre filter
    • EYFP (1) Apply EYFP filter
    • AT1aR (1) Apply AT1aR filter
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    • lsl1 (1) Apply lsl1 filter

    Product

    • RNAscope Multiplex Fluorescent v2 (2) Apply RNAscope Multiplex Fluorescent v2 filter

    Research area

    • (-) Remove Nueroscience filter Nueroscience (2)
    • Cardiovascular Disease (1) Apply Cardiovascular Disease filter
    • Sleep (1) Apply Sleep filter

    Category

    • Publications (2) Apply Publications filter
    Cardiovascular baroreflex circuit moonlights in sleep control

    Neuron

    2022 Sep 23

    Yao, Y;Barger, Z;Saffari Doost, M;Tso, CF;Darmohray, D;Silverman, D;Liu, D;Ma, C;Cetin, A;Yao, S;Zeng, H;Dan, Y;
    PMID: 36170850 | DOI: 10.1016/j.neuron.2022.08.027

    Sleep disturbances are strongly associated with cardiovascular diseases. Baroreflex, a basic cardiovascular regulation mechanism, is modulated by sleep-wake states. Here, we show that neurons at key stages of baroreflex pathways also promote sleep. Using activity-dependent genetic labeling, we tagged neurons in the nucleus of the solitary tract (NST) activated by blood pressure elevation and confirmed their barosensitivity with optrode recording and calcium imaging. Chemogenetic or optogenetic activation of these neurons promoted non-REM sleep in addition to decreasing blood pressure and heart rate. GABAergic neurons in the caudal ventrolateral medulla (CVLM)-a downstream target of the NST for vasomotor baroreflex-also promote non-REM sleep, partly by inhibiting the sympathoexcitatory and wake-promoting adrenergic neurons in the rostral ventrolateral medulla (RVLM). Cholinergic neurons in the nucleus ambiguous-a target of the NST for cardiac baroreflex-promoted non-REM sleep as well. Thus, key components of the cardiovascular baroreflex circuit are also integral to sleep-wake brain-state regulation.
    A distinct D1-MSN subpopulation down-regulates dopamine to promote negative emotional state

    Cell research

    2021 Nov 30

    Liu, Z;Le, Q;Lv, Y;Chen, X;Cui, J;Zhou, Y;Cheng, D;Ma, C;Su, X;Xiao, L;Yang, R;Zhang, J;Ma, L;Liu, X;
    PMID: 34848869 | DOI: 10.1038/s41422-021-00588-5

    Dopamine (DA) level in the nucleus accumbens (NAc) is critical for reward and aversion encoding. DA released from the ventral mesencephalon (VM) DAergic neurons increases the excitability of VM-projecting D1-dopamine receptor-expressing medium spiny neurons (D1-MSNs) in the NAc to enhance DA release and augment rewards. However, how such a DA positive feedback loop is regulated to maintain DA homeostasis and reward-aversion balance remains elusive. Here we report that the ventral pallidum (VP) projection of NAc D1-MSNs (D1NAc-VP) is inhibited by rewarding stimuli and activated by aversive stimuli. In contrast to the VM projection of D1-MSN (D1NAc-VM), activation of D1NAc-VP projection induces aversion, but not reward. D1NAc-VP MSNs are distinct from the D1NAc-VM MSNs, which exhibit conventional functions of D1-MSNs. Activation of D1NAc-VP projection stimulates VM GABAergic transmission, inhibits VM DAergic neurons, and reduces DA release into the NAc. Thus, D1NAc-VP and D1NAc-VM MSNs cooperatively control NAc dopamine balance and reward-aversion states.
    X
    Description
    sense
    Example: Hs-LAG3-sense
    Standard probes for RNA detection are in antisense. Sense probe is reverse complent to the corresponding antisense probe.
    Intron#
    Example: Mm-Htt-intron2
    Probe targets the indicated intron in the target gene, commonly used for pre-mRNA detection
    Pool/Pan
    Example: Hs-CD3-pool (Hs-CD3D, Hs-CD3E, Hs-CD3G)
    A mixture of multiple probe sets targeting multiple genes or transcripts
    No-XSp
    Example: Hs-PDGFB-No-XMm
    Does not cross detect with the species (Sp)
    XSp
    Example: Rn-Pde9a-XMm
    designed to cross detect with the species (Sp)
    O#
    Example: Mm-Islr-O1
    Alternative design targeting different regions of the same transcript or isoforms
    CDS
    Example: Hs-SLC31A-CDS
    Probe targets the protein-coding sequence only
    EnEmProbe targets exons n and m
    En-EmProbe targets region from exon n to exon m
    Retired Nomenclature
    tvn
    Example: Hs-LEPR-tv1
    Designed to target transcript variant n
    ORF
    Example: Hs-ACVRL1-ORF
    Probe targets open reading frame
    UTR
    Example: Hs-HTT-UTR-C3
    Probe targets the untranslated region (non-protein-coding region) only
    5UTR
    Example: Hs-GNRHR-5UTR
    Probe targets the 5' untranslated region only
    3UTR
    Example: Rn-Npy1r-3UTR
    Probe targets the 3' untranslated region only
    Pan
    Example: Pool
    A mixture of multiple probe sets targeting multiple genes or transcripts

    Enabling research, drug development (CDx) and diagnostics

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