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Hypoxia-inducible lipid droplet-associated interacts with DGAT1 to promote  lipid storage in hepatocytes | bioRxiv
Hypoxia-inducible lipid droplet-associated interacts with DGAT1 to promote lipid storage in hepatocytes | bioRxiv

Light-Up Lipid Droplets Dynamic Behaviors Using a Red-Emitting Fluorogenic  Probe | Analytical Chemistry
Light-Up Lipid Droplets Dynamic Behaviors Using a Red-Emitting Fluorogenic Probe | Analytical Chemistry

Orientation of Fluorescent Lipid Analogue BODIPY-PC to Probe Lipid Membrane  Properties: Insights from Molecular Dynamics Simulations | The Journal of  Physical Chemistry B
Orientation of Fluorescent Lipid Analogue BODIPY-PC to Probe Lipid Membrane Properties: Insights from Molecular Dynamics Simulations | The Journal of Physical Chemistry B

BODIPYs revealing lipid droplets as valuable targets for photodynamic  theragnosis - Chemical Communications (RSC Publishing)
BODIPYs revealing lipid droplets as valuable targets for photodynamic theragnosis - Chemical Communications (RSC Publishing)

Molecules | Free Full-Text | Application of the Fluorescent Dye BODIPY in  the Study of Lipid Dynamics of the Rice Blast Fungus Magnaporthe oryzae
Molecules | Free Full-Text | Application of the Fluorescent Dye BODIPY in the Study of Lipid Dynamics of the Rice Blast Fungus Magnaporthe oryzae

C 11 Bodipy 581 591 Lipid Peroxidation Sensor (Thermo Fisher) | Bioz |  Ratings For Life-Science Research
C 11 Bodipy 581 591 Lipid Peroxidation Sensor (Thermo Fisher) | Bioz | Ratings For Life-Science Research

Materials | Free Full-Text | A BODIPY-Based Fluorogenic Probe for Specific  Imaging of Lipid Droplets
Materials | Free Full-Text | A BODIPY-Based Fluorogenic Probe for Specific Imaging of Lipid Droplets

Figure 5 from C11-BODIPY(581/591), an oxidation-sensitive fluorescent lipid  peroxidation probe: (micro)spectroscopic characterization and validation of  methodology. | Semantic Scholar
Figure 5 from C11-BODIPY(581/591), an oxidation-sensitive fluorescent lipid peroxidation probe: (micro)spectroscopic characterization and validation of methodology. | Semantic Scholar

BODIPY and AC-202 stainings of lipid droplets in Chlamydomonas... |  Download Scientific Diagram
BODIPY and AC-202 stainings of lipid droplets in Chlamydomonas... | Download Scientific Diagram

Staining of the ER and of lipid droplets by Bodipy PC and comparison... |  Download Scientific Diagram
Staining of the ER and of lipid droplets by Bodipy PC and comparison... | Download Scientific Diagram

PhenoVue 493 Lipid Stain | PerkinElmer
PhenoVue 493 Lipid Stain | PerkinElmer

BODIPY 558/568 C12 | Lipid Droplets Probe | MedChemExpress
BODIPY 558/568 C12 | Lipid Droplets Probe | MedChemExpress

A red-emitting thiophene-modified BODIPY probe for fluorescence  lifetime-based polarity imaging of lipid droplets in living cells - Journal  of Materials Chemistry B (RSC Publishing)
A red-emitting thiophene-modified BODIPY probe for fluorescence lifetime-based polarity imaging of lipid droplets in living cells - Journal of Materials Chemistry B (RSC Publishing)

A-E) In situ determination of lipid peroxidation with the BODIPY-C11... |  Download Scientific Diagram
A-E) In situ determination of lipid peroxidation with the BODIPY-C11... | Download Scientific Diagram

Dissection and Lipid Droplet Staining of Oenocytes in Drosophila Larvae
Dissection and Lipid Droplet Staining of Oenocytes in Drosophila Larvae

Use of Bodipy-labeled sphingolipid and cholesterol analogs to examine  membrane microdomains in cells | Histochemistry and Cell Biology
Use of Bodipy-labeled sphingolipid and cholesterol analogs to examine membrane microdomains in cells | Histochemistry and Cell Biology

Real-Time Tracking of BODIPY-C12 Long-Chain Fatty Acid in Human Term  Placenta Reveals Unique Lipid Dynamics in Cytotrophoblast Cells | PLOS ONE
Real-Time Tracking of BODIPY-C12 Long-Chain Fatty Acid in Human Term Placenta Reveals Unique Lipid Dynamics in Cytotrophoblast Cells | PLOS ONE

BODIPY-Based Fluorescent Probe for Dual-Channel Detection of Nitric Oxide  and Glutathione: Visualization of Cross-Talk in Living Cells | Analytical  Chemistry
BODIPY-Based Fluorescent Probe for Dual-Channel Detection of Nitric Oxide and Glutathione: Visualization of Cross-Talk in Living Cells | Analytical Chemistry

PDF] Molecular probes to visualize the location, organization and dynamics  of lipids | Semantic Scholar
PDF] Molecular probes to visualize the location, organization and dynamics of lipids | Semantic Scholar

Use of Bodipy-labeled sphingolipid and cholesterol analogs to examine  membrane microdomains in cells | Histochemistry and Cell Biology
Use of Bodipy-labeled sphingolipid and cholesterol analogs to examine membrane microdomains in cells | Histochemistry and Cell Biology

New BODIPY lipid probes for fluorescence studies of membranes -  ScienceDirect
New BODIPY lipid probes for fluorescence studies of membranes - ScienceDirect

BODIPY 558/568 C12 ( Red C12, CAS Number: 158757-84-7) | Cayman Chemical
BODIPY 558/568 C12 ( Red C12, CAS Number: 158757-84-7) | Cayman Chemical

Materials | Free Full-Text | Recent Advances in Fluorescent Probes for Lipid  Droplets
Materials | Free Full-Text | Recent Advances in Fluorescent Probes for Lipid Droplets

A Pyridinyl‐Pyrazole BODIPY as Lipid Droplets Probe - Murale - 2021 -  Bulletin of the Korean Chemical Society - Wiley Online Library
A Pyridinyl‐Pyrazole BODIPY as Lipid Droplets Probe - Murale - 2021 - Bulletin of the Korean Chemical Society - Wiley Online Library

Stratifying ferroptosis sensitivity in cells and mouse tissues by  photochemical activation of lipid peroxidation and fluorescent imaging
Stratifying ferroptosis sensitivity in cells and mouse tissues by photochemical activation of lipid peroxidation and fluorescent imaging

Figure 4 from C11-BODIPY(581/591), an oxidation-sensitive fluorescent lipid  peroxidation probe: (micro)spectroscopic characterization and validation of  methodology. | Semantic Scholar
Figure 4 from C11-BODIPY(581/591), an oxidation-sensitive fluorescent lipid peroxidation probe: (micro)spectroscopic characterization and validation of methodology. | Semantic Scholar