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incucyte organoid analysis software module  (Sartorius AG)


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    Structured Review

    Sartorius AG incucyte organoid analysis software module
    Oxygen consumption rate (OCR) in the presence or absence of spheroids (A) <t>Incucyte</t> image of spheroid in the center of the microplate well at the end of the assay and (B) the corresponding OCR kinetic graph showing a response after drug injections as expected. (C) Image of a microplate well with no spheroid detected at the end of the assay and (D) corresponding OCR kinetic graph showing no response after drug injections.
    Incucyte Organoid Analysis Software Module, supplied by Sartorius AG, used in various techniques. Bioz Stars score: 99/100, based on 15884 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/analysis+software/Live+Cell+Analysis+Instruments/pmc13127629-50-0-6
    Average 99 stars, based on 15884 article reviews
    incucyte organoid analysis software module - by Bioz Stars, 2026-09
    99/100 stars

    Images

    1) Product Images from "Protocol for Seahorse 3D Mito Stress assay in patient-derived atypical teratoid rhabdoid tumor CHLA-05-ATRT single neurospheres"

    Article Title: Protocol for Seahorse 3D Mito Stress assay in patient-derived atypical teratoid rhabdoid tumor CHLA-05-ATRT single neurospheres

    Journal: STAR Protocols

    doi: 10.1016/j.xpro.2026.104515

    Oxygen consumption rate (OCR) in the presence or absence of spheroids (A) Incucyte image of spheroid in the center of the microplate well at the end of the assay and (B) the corresponding OCR kinetic graph showing a response after drug injections as expected. (C) Image of a microplate well with no spheroid detected at the end of the assay and (D) corresponding OCR kinetic graph showing no response after drug injections.
    Figure Legend Snippet: Oxygen consumption rate (OCR) in the presence or absence of spheroids (A) Incucyte image of spheroid in the center of the microplate well at the end of the assay and (B) the corresponding OCR kinetic graph showing a response after drug injections as expected. (C) Image of a microplate well with no spheroid detected at the end of the assay and (D) corresponding OCR kinetic graph showing no response after drug injections.

    Techniques Used:

    Effect of coating timing on spheroid retention in microplate wells (A) Incucyte image of a poly-lysine coated microplate with spheroids transferred on the same day as the assay, taken before the assay. (B) Image of the same plate taken after the assay, showing that the spheroids were displaced and/or destroyed during the assay. (C) Image of a poly-lysine coated microplate with spheroids transferred the day before the assay, taken before the assay and (D) after the assay, showing that the spheroids were intact.
    Figure Legend Snippet: Effect of coating timing on spheroid retention in microplate wells (A) Incucyte image of a poly-lysine coated microplate with spheroids transferred on the same day as the assay, taken before the assay. (B) Image of the same plate taken after the assay, showing that the spheroids were displaced and/or destroyed during the assay. (C) Image of a poly-lysine coated microplate with spheroids transferred the day before the assay, taken before the assay and (D) after the assay, showing that the spheroids were intact.

    Techniques Used:

    Related Articles

    Software:

    Article Title: New feature of hMEIOB and hSPATA22 binding to ssDNA from a single-molecule perspective
    Article Snippet: .. Assays were performed on the ForteBIO Octet RED96 system with dedicated data acquisition and analysis software (Pall ForteBio, Fremont, USA). .. All steps were performed at 30°C, and the total working volume was 200 μL in 96-well black plates (Greiner Bio-One, Baden-Württemberg, Germany) with a shaking speed of 1000 rpm.

    Article Title: High‐Throughput Fluorescence Screening Enables Globally Consistent Identification of ABA Signaling Modulators
    Article Snippet: .. BLI assays were performed using a ForteBIO Octet RED96 system equipped with specialized data acquisition and analysis software (Pall ForteBIO Corp., CA, USA). ..

    Article Title: Spatial proteomics identifies JAKi as treatment for a lethal skin disease.
    Article Snippet: Every 2 h images were acquired using a live-cell analysis system (Incucyte Sx3, Sartorius) for 72 h at 37 °C/5% CO2. .. Quantification of dead keratinocytes (Celltox+Celltracker+/total Celltracker+) was performed using the proprietary analysis software (Incucyte, Sartorius). ..

    Article Title: HPV16 E2 protein possesses intrinsic helicase activity and sterically hinders E1 function through direct interaction
    Article Snippet: .. Analyses were performed on a ForteBio Octet RED96 system equipped with dedicated data acquisition and analysis software (Pall ForteBio Corp., CA, USA).All steps were carried out at 25°C with a total working volume of 200 μL for samples and buffers, loaded in the instrument-specific 96-well black plates. ..

    Article Title: High-load nanoparticles with a chemotherapeutic SN-38/FdUMP drug cocktail.
    Article Snippet: .. The confluence was measured for the individual images by applying confluence mask with the Live-Cell Imaging and Analysis Software (Sartorius). ..

    Article Title: High-Throughput Fluorescence Screening Enables Globally Consistent Identification of ABA Signaling Modulators.
    Article Snippet: .. BLI assays were performed using a ForteBIO Octet RED96 system equipped with specialized data acquisition and analysis software (Pall ForteBIO Corp., CA, USA). ..

    Article Title: Natural flavonoid glycosides Chrysosplenosides I & A rejuvenate intestinal stem cell aging via activation of PPARγ signaling
    Article Snippet: .. Data collection and analysis are performed using the ForteBio Octet K2 system (Sartorius, Germany) with its data collection and analysis software (Octet® Analysis Studio 13.0.1.35, Sartorius, Germany). .. All statistical analyses were performed using GraphPad Prism 9.3 software.

    Article Title: Spatial proteomics identifies JAKi as treatment for a lethal skin disease
    Article Snippet: Every 2 h images were acquired using a live-cell analysis system (Incucyte Sx3, Sartorius) for 72 h at 37 °C/5% CO 2 . .. Quantification of dead keratinocytes (Celltox + Celltracker + /total Celltracker + ) was performed using the proprietary analysis software (Incucyte, Sartorius). ..

    CellTox Assay:

    Article Title: Spatial proteomics identifies JAKi as treatment for a lethal skin disease.
    Article Snippet: Every 2 h images were acquired using a live-cell analysis system (Incucyte Sx3, Sartorius) for 72 h at 37 °C/5% CO2. .. Quantification of dead keratinocytes (Celltox+Celltracker+/total Celltracker+) was performed using the proprietary analysis software (Incucyte, Sartorius). ..

    Article Title: Spatial proteomics identifies JAKi as treatment for a lethal skin disease
    Article Snippet: Every 2 h images were acquired using a live-cell analysis system (Incucyte Sx3, Sartorius) for 72 h at 37 °C/5% CO 2 . .. Quantification of dead keratinocytes (Celltox + Celltracker + /total Celltracker + ) was performed using the proprietary analysis software (Incucyte, Sartorius). ..

    Live Cell Imaging:

    Article Title: High-load nanoparticles with a chemotherapeutic SN-38/FdUMP drug cocktail.
    Article Snippet: .. The confluence was measured for the individual images by applying confluence mask with the Live-Cell Imaging and Analysis Software (Sartorius). ..



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    Image Search Results


    Oxygen consumption rate (OCR) in the presence or absence of spheroids (A) Incucyte image of spheroid in the center of the microplate well at the end of the assay and (B) the corresponding OCR kinetic graph showing a response after drug injections as expected. (C) Image of a microplate well with no spheroid detected at the end of the assay and (D) corresponding OCR kinetic graph showing no response after drug injections.

    Journal: STAR Protocols

    Article Title: Protocol for Seahorse 3D Mito Stress assay in patient-derived atypical teratoid rhabdoid tumor CHLA-05-ATRT single neurospheres

    doi: 10.1016/j.xpro.2026.104515

    Figure Lengend Snippet: Oxygen consumption rate (OCR) in the presence or absence of spheroids (A) Incucyte image of spheroid in the center of the microplate well at the end of the assay and (B) the corresponding OCR kinetic graph showing a response after drug injections as expected. (C) Image of a microplate well with no spheroid detected at the end of the assay and (D) corresponding OCR kinetic graph showing no response after drug injections.

    Article Snippet: Incucyte Organoid Analysis Software Module , Sartorius , 9600–0034.

    Techniques:

    Effect of coating timing on spheroid retention in microplate wells (A) Incucyte image of a poly-lysine coated microplate with spheroids transferred on the same day as the assay, taken before the assay. (B) Image of the same plate taken after the assay, showing that the spheroids were displaced and/or destroyed during the assay. (C) Image of a poly-lysine coated microplate with spheroids transferred the day before the assay, taken before the assay and (D) after the assay, showing that the spheroids were intact.

    Journal: STAR Protocols

    Article Title: Protocol for Seahorse 3D Mito Stress assay in patient-derived atypical teratoid rhabdoid tumor CHLA-05-ATRT single neurospheres

    doi: 10.1016/j.xpro.2026.104515

    Figure Lengend Snippet: Effect of coating timing on spheroid retention in microplate wells (A) Incucyte image of a poly-lysine coated microplate with spheroids transferred on the same day as the assay, taken before the assay. (B) Image of the same plate taken after the assay, showing that the spheroids were displaced and/or destroyed during the assay. (C) Image of a poly-lysine coated microplate with spheroids transferred the day before the assay, taken before the assay and (D) after the assay, showing that the spheroids were intact.

    Article Snippet: Incucyte Organoid Analysis Software Module , Sartorius , 9600–0034.

    Techniques: