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CapitalBio Corporation dna microarray biochip
Diagnostic profile of clinical images, histopathological findings, Ziehl-Neelsen staining, and <t>DNA</t> <t>microarray</t> chip assay of participants with cutaneous mycobacterial infections. (A-C) Skin lesions of participants with cutaneous infection of M. marinum (A) , M. abscessus (B) , MTB (C) , and M. chelonae (D) . (E, F) Hematoxylin and eosin staining revealing acanthosis, pseudoepitheliomatous hyperplasia or exocytosis, diffuse inflammatory cells infiltration in the dermis, including multinucleated giant cells (white arrow), lymphocytes, neutrophils, and plasmocytes (magnification: A, 40×; B, 200×). (G) Ziehl-Neelsen staining of isolates from skin tissue culture showing red club-shaped filaments. (H-K) Mapped images of the DNA microarray chip assay of skin tissue confirming infection with M. marinum (H) , M. abscessus (I) , MTB (J) , and M. chelonae (K) .
Dna Microarray Biochip, supplied by CapitalBio Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
dna microarray biochip - by Bioz Stars, 2026-09
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1) Product Images from "DNA microarray chip assay in new use: early diagnostic value in cutaneous mycobacterial infection"

Article Title: DNA microarray chip assay in new use: early diagnostic value in cutaneous mycobacterial infection

Journal: Frontiers in Cellular and Infection Microbiology

doi: 10.3389/fcimb.2023.1183078

Diagnostic profile of clinical images, histopathological findings, Ziehl-Neelsen staining, and DNA microarray chip assay of participants with cutaneous mycobacterial infections. (A-C) Skin lesions of participants with cutaneous infection of M. marinum (A) , M. abscessus (B) , MTB (C) , and M. chelonae (D) . (E, F) Hematoxylin and eosin staining revealing acanthosis, pseudoepitheliomatous hyperplasia or exocytosis, diffuse inflammatory cells infiltration in the dermis, including multinucleated giant cells (white arrow), lymphocytes, neutrophils, and plasmocytes (magnification: A, 40×; B, 200×). (G) Ziehl-Neelsen staining of isolates from skin tissue culture showing red club-shaped filaments. (H-K) Mapped images of the DNA microarray chip assay of skin tissue confirming infection with M. marinum (H) , M. abscessus (I) , MTB (J) , and M. chelonae (K) .
Figure Legend Snippet: Diagnostic profile of clinical images, histopathological findings, Ziehl-Neelsen staining, and DNA microarray chip assay of participants with cutaneous mycobacterial infections. (A-C) Skin lesions of participants with cutaneous infection of M. marinum (A) , M. abscessus (B) , MTB (C) , and M. chelonae (D) . (E, F) Hematoxylin and eosin staining revealing acanthosis, pseudoepitheliomatous hyperplasia or exocytosis, diffuse inflammatory cells infiltration in the dermis, including multinucleated giant cells (white arrow), lymphocytes, neutrophils, and plasmocytes (magnification: A, 40×; B, 200×). (G) Ziehl-Neelsen staining of isolates from skin tissue culture showing red club-shaped filaments. (H-K) Mapped images of the DNA microarray chip assay of skin tissue confirming infection with M. marinum (H) , M. abscessus (I) , MTB (J) , and M. chelonae (K) .

Techniques Used: Diagnostic Assay, Staining, Microarray, Infection

Sensitivities, specificity and accuracy of the skin culture method and  DNA microarray  chip assay in the diagnosis of cutaneous mycobacterial infections.
Figure Legend Snippet: Sensitivities, specificity and accuracy of the skin culture method and DNA microarray chip assay in the diagnosis of cutaneous mycobacterial infections.

Techniques Used: Microarray, Biomarker Discovery

PLR, NLR, Youden’s index and OR of the skin tissue culture method and  DNA microarray  chip assay.
Figure Legend Snippet: PLR, NLR, Youden’s index and OR of the skin tissue culture method and DNA microarray chip assay.

Techniques Used: Microarray

Related Articles

Microarray:

Article Title: DNA microarray chip assay in new use: early diagnostic value in cutaneous mycobacterial infection
Article Snippet: .. The DNA microarray biochip (CapitalBio Company Ltd, Beijing, China) used in the study could identify 17 mycobacterial species, including M. tuberculosis , M. intracellulare , M. avium , M. gordonae , M. kansasii , M. fortuitum , M. scrofulaceum , M. gilvum , M. terrae , M. chelonae/M. abscessus , M. phlei , M. nonchromogenicum , M. marinum/M. ulcerans , M. aurum , M. szulgai/M. malmoense , M. xenopi , and M. smegmatis . ..

Article Title: Investigating a pulmonary Mycobacterium abscessus infection outbreak among elderly inpatients in the intensive care ward.
Article Snippet: .. Growing isolates were identified at the species level using a DNA microarray chip from the Mycobacterial Species Identification Array Kit (CapitalBio Technology Inc., Beijing, China) based on previous studies [32–35]. ..

Article Title: Assessing the utility of the Xpert Mycobacterium tuberculosis /rifampin assay for analysis of bronchoalveolar lavage fluid in patients with suspected pulmonary tuberculosis
Article Snippet: .. The bacterial strains were identified by the DNA microarray chip analysis (CapitalBio Technology). ..

Article Title: Identification and characterization of nontuberculous mycobacteria isolated from suspected pulmonary tuberculosis patients in eastern china from 2009 to 2019 using an identification array system
Article Snippet: Genomic DNA was extracted using the DNeasy Blood & Tissue Kit (QIAGEN, Valencia, CA, USA), following the manufacturer's protocol as previously reported. .. DNA microarray chip from Mycobacterial Species Identification Array Kit (CapitalBio Technology Inc., Beijing, China) was performed for NTM species identification as previously reported., , It can identify as many as 17 Mycobacterium species: M. tuberculosis complex, M. chelonae - M. abscessus, M. fortuitum, M. intracellulare, M. avium, M. kansasii, M. gordonae, M. terrae, M. smegmatis, M. szulgai / M. malmoense, M. nonchromogenicum, M. scrofulaceum, M. xenopi, M. aurum, M. marinum / M. ulcerans, M. gilvum , and M. phlei ( ). .. Hybridization patterns of representative strains on the probe array (Mycobacterial Species Identification Array Kit (CapitalBio Technology Inc., Beijing, China)).

other:

Article Title: Analysis of the application of a gene chip method for detecting Mycobacterium tuberculosis drug resistance in clinical specimens: a retrospective study
Article Snippet: The CapitalBio DNA microarray chip method is used to qualitatively detect nucleic acids in samples of Mtb isolates from clinical TB patients.



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Kaplan-Meier overall survival analyses of low and high CD4, CD8A, CD8B, ADGRE1, and IL-6 expression in the tumors of TNBC patients based on <t>DNA</t> <t>microarray</t> data. CD4 low: n = 436; CD4 high: n = 430; CD8A low: n = 434; CD8A high: n = 432; CD8B low: n = 457; CD8B high: n = 409; ADGRE1 low: n = 140; ADGRE1 high: n = 34; IL6 low: n = 469; IL6 high: n = 463.
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Image Search Results


Kaplan-Meier overall survival analyses of low and high CD4, CD8A, CD8B, ADGRE1, and IL-6 expression in the tumors of TNBC patients based on DNA microarray data. CD4 low: n = 436; CD4 high: n = 430; CD8A low: n = 434; CD8A high: n = 432; CD8B low: n = 457; CD8B high: n = 409; ADGRE1 low: n = 140; ADGRE1 high: n = 34; IL6 low: n = 469; IL6 high: n = 463.

Journal: Materials Today Bio

Article Title: Empowering chemotherapy-induced antitumor immunity by multi-targeted synergistic combination nanomedicine for triple-negative breast cancer

doi: 10.1016/j.mtbio.2025.102445

Figure Lengend Snippet: Kaplan-Meier overall survival analyses of low and high CD4, CD8A, CD8B, ADGRE1, and IL-6 expression in the tumors of TNBC patients based on DNA microarray data. CD4 low: n = 436; CD4 high: n = 430; CD8A low: n = 434; CD8A high: n = 432; CD8B low: n = 457; CD8B high: n = 409; ADGRE1 low: n = 140; ADGRE1 high: n = 34; IL6 low: n = 469; IL6 high: n = 463.

Article Snippet: The gene expression profiles are generated through standardized DNA microarray analysis procedures, which involve RNA extraction from tumor samples, reverse transcription to cDNA, hybridization to oligonucleotide microarray chips (e.g., Affymetrix U133A or U133 Plus 2.0), followed by fluorescence-based signal detection and normalization using algorithms such as RMA or MAS5 [ ].

Techniques: Expressing, Microarray