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Jiancheng Inc ldh detection kit
Ldh Detection Kit, supplied by Jiancheng Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/ldh+detection+kit/detection+kits/pm42030662-88-21-24
Average 86 stars, based on 1 article reviews
ldh detection kit - by Bioz Stars, 2026-09
86/100 stars

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Article Title: CircTLK1 modulates sepsis‐induced cardiomyocyte apoptosis via enhancing PARP1/HMGB1 axis–mediated mitochondrial DNA damage by sponging miR‐17‐5p
Article Snippet: The lactate dehydrogenase (LDH) and creatine kinase (CK) levels in the supernatant of cardiomyocytes were measured using the LDH and CK detection kit (Jiancheng Institute of Biotechnology), respectively, according to the manufacturer's instructions.

Article Title: Esketamine alleviates hypoxia/reoxygenation injury of cardiomyocytes by regulating TRPV1 expression and inhibiting intracellular Ca 2+ concentration
Article Snippet: LDH in H9c2 cells was determined using the LDH detection kit (Jiancheng).

Cell Culture:

Article Title: PFOS facilitates liver inflammation and steatosis: An involvement of NLRP3 inflammasome-mediated hepatocyte pyroptosis.
Article Snippet: Funding information Nantong Science and Technology Bureau, Grant/Award Numbers: JC2020032, MS12018095, MS12017015-4; National Natural Science Foundation of China, Grant/ Award Numbers: 81573188, 81902406, 81972279; Taizhou people's hosptal research project, Grant/Award Number: ZL201916 Abstract Perfluorooctane sulfonate (PFOS) is a fluorinated organic pollutant with substantial accumulation in mammalian liver tissues.. However, the impact of chronic PFOS exposure on liver disease progression and the underlying molecular mechanisms remain elusive.. Herein, we for the first time revealed that micromolar range of PFOS exposure initiates the activation of NLR pyrin domain containing 3 (NLRP3) inflammasome to drive hepatocyte pyroptosis.

Lactate Dehydrogenase Assay:

Article Title: PFOS facilitates liver inflammation and steatosis: An involvement of NLRP3 inflammasome-mediated hepatocyte pyroptosis.
Article Snippet: Funding information Nantong Science and Technology Bureau, Grant/Award Numbers: JC2020032, MS12018095, MS12017015-4; National Natural Science Foundation of China, Grant/ Award Numbers: 81573188, 81902406, 81972279; Taizhou people's hosptal research project, Grant/Award Number: ZL201916 Abstract Perfluorooctane sulfonate (PFOS) is a fluorinated organic pollutant with substantial accumulation in mammalian liver tissues.. However, the impact of chronic PFOS exposure on liver disease progression and the underlying molecular mechanisms remain elusive.. Herein, we for the first time revealed that micromolar range of PFOS exposure initiates the activation of NLR pyrin domain containing 3 (NLRP3) inflammasome to drive hepatocyte pyroptosis.

CCK-8 Assay:

Article Title: Size-dependent neurotoxicity of PbSe nanoparticles: Oxidative stress, apoptosis, and synaptic dysfunction mediate cognitive impairment in rats.
Article Snippet: After being washed, the membranes were incubated with horseradish peroxidase (HRP)-conjugated secondary antibodies (1:5000) diluted in TBST (5% nonfat milk) at room temperature for 2 h. Then, the membranes were visualized by adding enhanced chemiluminescence reagent to X-ray film and analyzed with a gel documentation system (Bio-Rad, USA). .. Cell viability was measured with a Cell Counting Kit-8 (CCK-8; Dojindo Laboratories, Japan), lactate dehydrogenase (LDH) activity was detected with an LDH detection kit (Jiancheng Institute of Biotechnology, Nanjing, China), and apoptosis was detected with an Annexin V-fluorescein isothiocyanate (FITC) apoptosis detection kit (Beyotime Biotech, China) according to the manufacturer’s protocol. ..

Activity Assay:

Article Title: Size-dependent neurotoxicity of PbSe nanoparticles: Oxidative stress, apoptosis, and synaptic dysfunction mediate cognitive impairment in rats.
Article Snippet: After being washed, the membranes were incubated with horseradish peroxidase (HRP)-conjugated secondary antibodies (1:5000) diluted in TBST (5% nonfat milk) at room temperature for 2 h. Then, the membranes were visualized by adding enhanced chemiluminescence reagent to X-ray film and analyzed with a gel documentation system (Bio-Rad, USA). .. Cell viability was measured with a Cell Counting Kit-8 (CCK-8; Dojindo Laboratories, Japan), lactate dehydrogenase (LDH) activity was detected with an LDH detection kit (Jiancheng Institute of Biotechnology, Nanjing, China), and apoptosis was detected with an Annexin V-fluorescein isothiocyanate (FITC) apoptosis detection kit (Beyotime Biotech, China) according to the manufacturer’s protocol. ..

Article Title: CPE Regulates Proliferation and Apoptosis of Primary Myocardial Cells Mediated by Ischemia and Hypoxia Injury
Article Snippet: .. Then, LDH detection kit (Jiancheng, Nanjing, China) was used to detect LDH activity, and LDH enzyme activity was calculated according to the standard curve. ..

Article Title: Shikonin ameliorated LPS-induced acute lung injury in mice via modulating MCU-mediated mitochondrial Ca 2+ and macrophage polarization.
Article Snippet: Background: Macrophages play a pivotal role in the development and recovery of acute lung injury (ALI), wherein their phenotypic differentiation and metabolic programming are orchestrated by mitochondria.. Specifically, the mitochondrial calcium uniporter (MCU) regulates mitochondrial Ca2+ (mCa) uptake and may bridge the metabolic reprogramming and functional regulation of immune cells.. However, the precise mechanism on macrophages remains elusive.

Concentration Assay:

Article Title: Transient Receptor Potential Mucolipin-1 Participates in Intracerebral Hemorrhage-Induced Secondary Brain Injury by Inducing Neuroinflammation and Neuronal Cell Death.
Article Snippet: Transient receptor potential mucolipin-1 (TRPML1) is the most abundantly and widely expressed channel protein in the TRP family.. While numerous studies have been conducted involving many aspects of TRPML1, such as its role in cell biology, oncology, and neurodegenerative diseases, there are limited reports about what role it plays in intracerebral hemorrhage (ICH)-induced secondary brain injury (SBI).. Here we examined the function of TRPML1 in ICH-induced SBI.



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Baicalein preserves cell viability and morphology in lipopolysaccharide (LPS)-challenged H9c2 cardiomyoblasts. A, MTT cell viability assay. H9c2 cells were seeded at 1 × 10⁴ cells/well in 96-well plates and pretreated with baicalein (5 - 20 µM; 1 h), followed by LPS (1 µg/mL; 24 h). MTT reagent (5 mg/mL, Sigma <t>M2128)</t> was added for 4 h, formazan crystals were dissolved in DMSO, and absorbance was recorded at 570 nm (BioTek Synergy HTX). A calibration curve (1 – 8 × 10³ cells/well) was generated to validate linearity. Bars show mean ± SD. B, Inflammasome transcript kinetics (0 - 4 h). Total RNA was extracted using TRIzol™ (Invitrogen), converted to cDNA using the High-Capacity kit, and qPCR was performed with SYBR™ Green on a QuantStudio™ 5. Nlrp3, Il1b, and Il18 expression was evaluated from 0 - 4 h after LPS exposure to identify the mechanistic transcriptional peak. Relative abundance was calculated via 2⁻ΔΔCt using GAPDH as the reference. C, LDH release assay for membrane integrity. Supernatants were collected after 24 h of LPS stimulation, and LDH activity was quantified using the Takara MK401 kit. Absorbance at 490 nm was compared with the maximum lysis control to compute LDH release (%). D, Phase-contrast morphology. H9c2 cells were imaged on an Olympus CKX53 inverted microscope (20× objective) to assess rounding, shrinkage, and detachment following LPS exposure, and morphological preservation following baicalein pretreatment.
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Baicalein preserves cell viability and morphology in lipopolysaccharide (LPS)-challenged H9c2 cardiomyoblasts. A, MTT cell viability assay. H9c2 cells were seeded at 1 × 10⁴ cells/well in 96-well plates and pretreated with baicalein (5 - 20 µM; 1 h), followed by LPS (1 µg/mL; 24 h). MTT reagent (5 mg/mL, Sigma <t>M2128)</t> was added for 4 h, formazan crystals were dissolved in DMSO, and absorbance was recorded at 570 nm (BioTek Synergy HTX). A calibration curve (1 – 8 × 10³ cells/well) was generated to validate linearity. Bars show mean ± SD. B, Inflammasome transcript kinetics (0 - 4 h). Total RNA was extracted using TRIzol™ (Invitrogen), converted to cDNA using the High-Capacity kit, and qPCR was performed with SYBR™ Green on a QuantStudio™ 5. Nlrp3, Il1b, and Il18 expression was evaluated from 0 - 4 h after LPS exposure to identify the mechanistic transcriptional peak. Relative abundance was calculated via 2⁻ΔΔCt using GAPDH as the reference. C, LDH release assay for membrane integrity. Supernatants were collected after 24 h of LPS stimulation, and LDH activity was quantified using the Takara MK401 kit. Absorbance at 490 nm was compared with the maximum lysis control to compute LDH release (%). D, Phase-contrast morphology. H9c2 cells were imaged on an Olympus CKX53 inverted microscope (20× objective) to assess rounding, shrinkage, and detachment following LPS exposure, and morphological preservation following baicalein pretreatment.
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Baicalein preserves cell viability and morphology in lipopolysaccharide (LPS)-challenged H9c2 cardiomyoblasts. A, MTT cell viability assay. H9c2 cells were seeded at 1 × 10⁴ cells/well in 96-well plates and pretreated with baicalein (5 - 20 µM; 1 h), followed by LPS (1 µg/mL; 24 h). MTT reagent (5 mg/mL, Sigma <t>M2128)</t> was added for 4 h, formazan crystals were dissolved in DMSO, and absorbance was recorded at 570 nm (BioTek Synergy HTX). A calibration curve (1 – 8 × 10³ cells/well) was generated to validate linearity. Bars show mean ± SD. B, Inflammasome transcript kinetics (0 - 4 h). Total RNA was extracted using TRIzol™ (Invitrogen), converted to cDNA using the High-Capacity kit, and qPCR was performed with SYBR™ Green on a QuantStudio™ 5. Nlrp3, Il1b, and Il18 expression was evaluated from 0 - 4 h after LPS exposure to identify the mechanistic transcriptional peak. Relative abundance was calculated via 2⁻ΔΔCt using GAPDH as the reference. C, LDH release assay for membrane integrity. Supernatants were collected after 24 h of LPS stimulation, and LDH activity was quantified using the Takara MK401 kit. Absorbance at 490 nm was compared with the maximum lysis control to compute LDH release (%). D, Phase-contrast morphology. H9c2 cells were imaged on an Olympus CKX53 inverted microscope (20× objective) to assess rounding, shrinkage, and detachment following LPS exposure, and morphological preservation following baicalein pretreatment.
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Baicalein preserves cell viability and morphology in lipopolysaccharide (LPS)-challenged H9c2 cardiomyoblasts. A, MTT cell viability assay. H9c2 cells were seeded at 1 × 10⁴ cells/well in 96-well plates and pretreated with baicalein (5 - 20 µM; 1 h), followed by LPS (1 µg/mL; 24 h). MTT reagent (5 mg/mL, Sigma <t>M2128)</t> was added for 4 h, formazan crystals were dissolved in DMSO, and absorbance was recorded at 570 nm (BioTek Synergy HTX). A calibration curve (1 – 8 × 10³ cells/well) was generated to validate linearity. Bars show mean ± SD. B, Inflammasome transcript kinetics (0 - 4 h). Total RNA was extracted using TRIzol™ (Invitrogen), converted to cDNA using the High-Capacity kit, and qPCR was performed with SYBR™ Green on a QuantStudio™ 5. Nlrp3, Il1b, and Il18 expression was evaluated from 0 - 4 h after LPS exposure to identify the mechanistic transcriptional peak. Relative abundance was calculated via 2⁻ΔΔCt using GAPDH as the reference. C, LDH release assay for membrane integrity. Supernatants were collected after 24 h of LPS stimulation, and LDH activity was quantified using the Takara MK401 kit. Absorbance at 490 nm was compared with the maximum lysis control to compute LDH release (%). D, Phase-contrast morphology. H9c2 cells were imaged on an Olympus CKX53 inverted microscope (20× objective) to assess rounding, shrinkage, and detachment following LPS exposure, and morphological preservation following baicalein pretreatment.
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Alb prevents urothelial cell injury in vitro. ( A – C ) Alb protects against ACR (ACR)-induced <t>cytotoxicity.</t> Cultured urothelial cells were treated with ACR (100 µM) in the presence or absence of Alb at the indicated concentrations. Cell injury/viability was assessed by AM/PI live–dead staining ( A ), formazan formation assay ( B ), and lactate dehydrogenase <t>(LDH)</t> release ( C ). Data are mean ± SE ( n = 3). ** p < 0.01 vs. untreated control; ## p < 0.01 vs. ACR alone. ( D – F ) Alb preserves ferroptosis-defense proteins following ACR exposure. Cells were treated with ACR (50 µM) with or without Alb (30 mg/mL). After 9 h, cell lysates were analyzed by Western blotting for GPX4 and xCT. ( D ) Representative immunoblots; ( E , F ) Densitometric quantification. Data are mean ± SE ( n = 3). * p < 0.05, ** p < 0.01 vs. −ACR control; # p < 0.05 and ## p < 0.01 vs. ACR alone (as indicated). ( G , H ) Alb protects against H 2 O 2 -induced injury. Cells were treated with the indicated concentrations of H 2 O 2 in the presence or absence of Alb (30 mg/mL). Cell injury/viability was assessed using the same assays as in ( A – C ).
Ldh Cytotoxicity Detection Kit, supplied by TaKaRa, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/ldh+detection+kit/LDH+Cytotoxicity+Detection+Kit/pmc13113450-100-6-10
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ldh cytotoxicity detection kit - by Bioz Stars, 2026-09
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Baicalein preserves cell viability and morphology in lipopolysaccharide (LPS)-challenged H9c2 cardiomyoblasts. A, MTT cell viability assay. H9c2 cells were seeded at 1 × 10⁴ cells/well in 96-well plates and pretreated with baicalein (5 - 20 µM; 1 h), followed by LPS (1 µg/mL; 24 h). MTT reagent (5 mg/mL, Sigma M2128) was added for 4 h, formazan crystals were dissolved in DMSO, and absorbance was recorded at 570 nm (BioTek Synergy HTX). A calibration curve (1 – 8 × 10³ cells/well) was generated to validate linearity. Bars show mean ± SD. B, Inflammasome transcript kinetics (0 - 4 h). Total RNA was extracted using TRIzol™ (Invitrogen), converted to cDNA using the High-Capacity kit, and qPCR was performed with SYBR™ Green on a QuantStudio™ 5. Nlrp3, Il1b, and Il18 expression was evaluated from 0 - 4 h after LPS exposure to identify the mechanistic transcriptional peak. Relative abundance was calculated via 2⁻ΔΔCt using GAPDH as the reference. C, LDH release assay for membrane integrity. Supernatants were collected after 24 h of LPS stimulation, and LDH activity was quantified using the Takara MK401 kit. Absorbance at 490 nm was compared with the maximum lysis control to compute LDH release (%). D, Phase-contrast morphology. H9c2 cells were imaged on an Olympus CKX53 inverted microscope (20× objective) to assess rounding, shrinkage, and detachment following LPS exposure, and morphological preservation following baicalein pretreatment.

Journal: Iranian Journal of Pharmaceutical Research : IJPR

Article Title: Baicalein Protects H9c2 Cardiomyoblasts Against LPS-Induced Inflammatory Injury by Modulating the NF-κB/NLRP3 Inflammasome Pathway and Mitochondrial ROS

doi: 10.5812/ijpr-169689

Figure Lengend Snippet: Baicalein preserves cell viability and morphology in lipopolysaccharide (LPS)-challenged H9c2 cardiomyoblasts. A, MTT cell viability assay. H9c2 cells were seeded at 1 × 10⁴ cells/well in 96-well plates and pretreated with baicalein (5 - 20 µM; 1 h), followed by LPS (1 µg/mL; 24 h). MTT reagent (5 mg/mL, Sigma M2128) was added for 4 h, formazan crystals were dissolved in DMSO, and absorbance was recorded at 570 nm (BioTek Synergy HTX). A calibration curve (1 – 8 × 10³ cells/well) was generated to validate linearity. Bars show mean ± SD. B, Inflammasome transcript kinetics (0 - 4 h). Total RNA was extracted using TRIzol™ (Invitrogen), converted to cDNA using the High-Capacity kit, and qPCR was performed with SYBR™ Green on a QuantStudio™ 5. Nlrp3, Il1b, and Il18 expression was evaluated from 0 - 4 h after LPS exposure to identify the mechanistic transcriptional peak. Relative abundance was calculated via 2⁻ΔΔCt using GAPDH as the reference. C, LDH release assay for membrane integrity. Supernatants were collected after 24 h of LPS stimulation, and LDH activity was quantified using the Takara MK401 kit. Absorbance at 490 nm was compared with the maximum lysis control to compute LDH release (%). D, Phase-contrast morphology. H9c2 cells were imaged on an Olympus CKX53 inverted microscope (20× objective) to assess rounding, shrinkage, and detachment following LPS exposure, and morphological preservation following baicalein pretreatment.

Article Snippet: - Lipopolysaccharide (LPS, E. coli O111:B4): Sigma-Aldrich, Cat. No. L2630 - Baicalein (≥ 98% purity): Sigma-Aldrich, Cat. No. 465119 - N-acetyl-L-cysteine (NAC): Sigma-Aldrich, Cat. No. A9165 - MTT reagent (3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide): Sigma-Aldrich, Cat. No. M2128 - LDH Cytotoxicity Detection Kit: Takara Bio, Cat. No. MK401 - JC-1 Mitochondrial Membrane Potential Assay Kit: Abcam, Cat. No. ab113850 - DCFH-DA ROS Detection Probe: Sigma-Aldrich, Cat. No. D6883 - TRIzolTM Reagent: Invitrogen, Cat. No. 15596026 - High-Capacity cDNA Reverse Transcription Kit: Applied Biosystems, Cat. No. 4368814 - SYBRTM Green PCR Master Mix: Applied Biosystems, Cat. No. 4367659 - Enzyme-linked immunosorbent assay (ELISA) Kits: Rat IL-1β ELISA: Abcam, Cat. No. ab255730

Techniques: Viability Assay, Generated, SYBR Green Assay, Expressing, Lactate Dehydrogenase Assay, Membrane, Activity Assay, Lysis, Control, Inverted Microscopy, Preserving

Alb prevents urothelial cell injury in vitro. ( A – C ) Alb protects against ACR (ACR)-induced cytotoxicity. Cultured urothelial cells were treated with ACR (100 µM) in the presence or absence of Alb at the indicated concentrations. Cell injury/viability was assessed by AM/PI live–dead staining ( A ), formazan formation assay ( B ), and lactate dehydrogenase (LDH) release ( C ). Data are mean ± SE ( n = 3). ** p < 0.01 vs. untreated control; ## p < 0.01 vs. ACR alone. ( D – F ) Alb preserves ferroptosis-defense proteins following ACR exposure. Cells were treated with ACR (50 µM) with or without Alb (30 mg/mL). After 9 h, cell lysates were analyzed by Western blotting for GPX4 and xCT. ( D ) Representative immunoblots; ( E , F ) Densitometric quantification. Data are mean ± SE ( n = 3). * p < 0.05, ** p < 0.01 vs. −ACR control; # p < 0.05 and ## p < 0.01 vs. ACR alone (as indicated). ( G , H ) Alb protects against H 2 O 2 -induced injury. Cells were treated with the indicated concentrations of H 2 O 2 in the presence or absence of Alb (30 mg/mL). Cell injury/viability was assessed using the same assays as in ( A – C ).

Journal: Biomolecules

Article Title: Albumin Protects Against Cyclophosphamide-Induced Hemorrhagic Cystitis by Scavenging Acrolein and Reactive Oxygen Species

doi: 10.3390/biom16040536

Figure Lengend Snippet: Alb prevents urothelial cell injury in vitro. ( A – C ) Alb protects against ACR (ACR)-induced cytotoxicity. Cultured urothelial cells were treated with ACR (100 µM) in the presence or absence of Alb at the indicated concentrations. Cell injury/viability was assessed by AM/PI live–dead staining ( A ), formazan formation assay ( B ), and lactate dehydrogenase (LDH) release ( C ). Data are mean ± SE ( n = 3). ** p < 0.01 vs. untreated control; ## p < 0.01 vs. ACR alone. ( D – F ) Alb preserves ferroptosis-defense proteins following ACR exposure. Cells were treated with ACR (50 µM) with or without Alb (30 mg/mL). After 9 h, cell lysates were analyzed by Western blotting for GPX4 and xCT. ( D ) Representative immunoblots; ( E , F ) Densitometric quantification. Data are mean ± SE ( n = 3). * p < 0.05, ** p < 0.01 vs. −ACR control; # p < 0.05 and ## p < 0.01 vs. ACR alone (as indicated). ( G , H ) Alb protects against H 2 O 2 -induced injury. Cells were treated with the indicated concentrations of H 2 O 2 in the presence or absence of Alb (30 mg/mL). Cell injury/viability was assessed using the same assays as in ( A – C ).

Article Snippet: LDH release was measured using the LDH Cytotoxicity Detection Kit (TaKaRa Biomedicals, Otsu, Japan) following the manufacturer’s protocol.

Techniques: In Vitro, Cell Culture, Staining, Tube Formation Assay, Control, Western Blot