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Search

Probes for LONG

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

ACD’s data images for Long gene.

  • RNA expression of long gene in Human Colorectal cancer sample using RNAscope™ 2.5 HD Assay Brown

  • RNA expression of long gene in Human Gastric cancer sample using RNAscope™ 2.5 HD Assay Brown

  • RNA expression of long gene in Human Glioma sample using RNAscope™ 2.5 HD Assay Brown

  • RNA expression of long gene in Human Lung cancer sample using RNAscope™ 2.5 HD Assay Brown

  • RNA expression of long gene in Human ovarian cancer sample using RNAscope™ 2.5 HD Assay Brown

  • Expression of long in Human Prostate cancer sample using RNAscope™ 2.5 HD Assay Brown

  • Probes for Long (0)
  • Kits & Accessories (0)
  • Support & Documents (0)
  • Publications (2)
  • Image gallery (0)
Refine Probe List

Content for comparison

Gene

  • MALAT1 (7) Apply MALAT1 filter
  • HOTAIR (6) Apply HOTAIR filter
  • H19 (6) Apply H19 filter
  • Neat1 (4) Apply Neat1 filter
  • LINC00473 (3) Apply LINC00473 filter
  • PVT1 (2) Apply PVT1 filter
  • BCAR4 (2) Apply BCAR4 filter
  • GAS5 (2) Apply GAS5 filter
  • TIE1 (2) Apply TIE1 filter
  • UCA1 (2) Apply UCA1 filter
  • SChLAP1 (2) Apply SChLAP1 filter
  • Pnky (2) Apply Pnky filter
  • RAD51-AS1 (2) Apply RAD51-AS1 filter
  • LINK-A (2) Apply LINK-A filter
  • (-) Remove ROR filter ROR (2)
  • TBD (2) Apply TBD filter
  • MEG3 (1) Apply MEG3 filter
  • ACTA2 (1) Apply ACTA2 filter
  • GAPDH (1) Apply GAPDH filter
  • Topaz1 (1) Apply Topaz1 filter
  • Lgr5 (1) Apply Lgr5 filter
  • LOC646329 (1) Apply LOC646329 filter
  • S100B (1) Apply S100B filter
  • LINC-ROR (1) Apply LINC-ROR filter
  • TXNIP (1) Apply TXNIP filter
  • Il7r (1) Apply Il7r filter
  • KCNQ1OT1 (1) Apply KCNQ1OT1 filter
  • LINC00704 (1) Apply LINC00704 filter
  • CARTPT (1) Apply CARTPT filter
  • 4930463O16Rik (1) Apply 4930463O16Rik filter
  • Ecel1 (1) Apply Ecel1 filter
  • Miat (1) Apply Miat filter
  • Tnnt2 (1) Apply Tnnt2 filter
  • Thor (1) Apply Thor filter
  • EGFR-AS1 (1) Apply EGFR-AS1 filter
  • MIR503HG (1) Apply MIR503HG filter
  • EPCAT2F176 (1) Apply EPCAT2F176 filter
  • EPCAT4R966 (1) Apply EPCAT4R966 filter
  • HOXA11-AS (1) Apply HOXA11-AS filter
  • BC062296 (1) Apply BC062296 filter
  • lnc13 (1) Apply lnc13 filter
  • vlincRNAs vlinc 377 (1) Apply vlincRNAs vlinc 377 filter
  • vlincRNAs vlinc 500 (1) Apply vlincRNAs vlinc 500 filter
  • LncND (1) Apply LncND filter
  • LINC00261 (1) Apply LINC00261 filter
  • tie-1as (1) Apply tie-1as filter
  • slincRAD (1) Apply slincRAD filter
  • LINC01213 (1) Apply LINC01213 filter
  • MAYA (1) Apply MAYA filter
  • ASCC3-tv1 (1) Apply ASCC3-tv1 filter

Product

  • RNAscope 2.5 HD Brown Assay (1) Apply RNAscope 2.5 HD Brown Assay filter
  • RNAscope 2.5 HD Red assay (1) Apply RNAscope 2.5 HD Red assay filter

Research area

  • (-) Remove lncRNA filter lncRNA (2)
  • Cancer (1) Apply Cancer filter

Category

  • Publications (2) Apply Publications filter
Long Non-coding RNA Linc-ROR Is Upregulated in Papillary Thyroid Carcinoma

Endocr Pathol.

2017 Dec 26

Zhang R, Hardin H, Huang W, Buehler D, Lloyd RV.
PMID: 29280051 | DOI: 10.1007/s12022-017-9507-2

Long non-coding RNAs (lncRNAs) may contribute to carcinogenesis and tumor progression by regulating transcription and gene expression. The role of lncRNAs in the regulation of thyroid cancer progression is being extensively examined. Here, we analyzed three lncRNAs that were overexpressed in papillary thyroid carcinomas, long intergenic non-protein coding RNA, regulator of reprogramming (Linc-ROR, ROR) PVT1 oncogene (PVT1), and HOX transcript antisense intergenic RNA (HOTAIR) to determine their roles in thyroid tumor development and progression. ROR expression has not been previously examined in thyroid carcinomas. Tissue microarrays (TMAs) of formalin-fixed paraffin-embedded tissue sections from 129 thyroid cases of benign and malignant tissues were analyzed by in situ hybridization (ISH), automated image analysis, and real-time PCR. All three lncRNAs were most highly expressed in the nuclei of PTCs. SiRNA experiments with a PTC cell line, TPC1, showed inhibition of proliferation with siRNAs for all three lncRNAs while invasion was inhibited with siRNAs for ROR and HOTAIR. SiRNA experiments with ROR also led to increased expression of miR-145, supporting the role of ROR as an endogenous miR-145 sponge. After treatment with TGF-β, there was increased expression of ROR, PVT1, and HOTAIR in the PTC1 cell line compared to control groups, indicating an induction of their expression during epithelial to mesenchymal transition (EMT). These results indicate that ROR, PVT1, and HOTAIR have important regulatory roles during the development of PTCs.

Parathyroid Neoplasms: Immunohistochemical Characterization and Long Noncoding RNA (lncRNA) Expression.

Endocr Pathol. 2019

2019 May 22

Yu Q, Hardin H, Chu YH, Rehrauer W, Lloyd RV.
PMID: 31119524 | DOI: 10.1007/s12022-019-9578-3

Parathyroid adenomas are slow growing benign neoplasms associated with hypercalcemia, while atypical parathyroid adenomas and parathyroid carcinomas are uncommon tumors and their histologic features may overlap with parathyroid adenomas. LncRNAs participate in transcription and in epigenetic or post-transcriptional regulation of gene expression, and probably contribute to carcinogenesis. We analyzed a group of normal, hyperplastic, and neoplastic parathyroid lesions to determine the best immunohistochemical markers to characterize these lesions and to determine the role of selected lncRNAs in tumor progression. A tissue microarray consisting of 111 cases of normal parathyroid (n = 14), primary hyperplasia (n = 15), secondary hyperplasia (n = 10), tertiary hyperplasia (n = 11), adenomas (n = 50), atypical adenomas (n = 7), and carcinomas (n = 4) was used. Immunohistochemical staining with antibodies against chromogranin A, synaptophysin, parathyroid hormone, and insulinoma-associated protein 1(INSM1) was used. Expression of lncRNAs including metastasis-associated lung adenocarcinoma transcript one (MALAT1), HOX transcript antisense intergenic RNA (HOTAIR), and long intergenic non-protein coding regulator of reprograming (Linc-ROR or ROR) was also analyzed by in situ hybridization and RT-PCR. All of the parathyroid tissues were positive for parathyroid hormone, while most cases were positive for chromogranin A (98%). Synaptophysin was expressed in only 12 cases (11%) and INMS1 was negative in all cases. ROR was significantly downregulated during progression from normal, hyperplastic, and adenomatous parathyroid to parathyroid carcinomas. These results show that parathyroid hormone and chromogranin A are useful markers for parathyroid neoplasms, while synaptophysin and INSM1 are not very sensitive broad-spectrum markers for these neoplasms. LincRNA ROR may function as a tumor suppressor during parathyroid tumor progression.

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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