Lyso-MPCB
Lyso-MPCB is a two-photon fluorescent probe used for lysosomal pH detection and autophagy monitoring. Lyso-MPCB integrates a benzimidazole pH-responsive group and a morpholine lysosome-targeting group, enabling specific localization to lysosomes. The fluorescence properties of Lyso-MPCB change with protonation, exhibiting blue fluorescence under alkaline conditions and green fluorescence under acidic conditions.
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- CAS 番号: 2243068-74-6
- 分子式: C36H34N4O2
- 分子量:554.68
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保管条件:
Please store the product under the recommended conditions in the Certificate of Analysis.
生物活性
製品説明
体外実験
Guidelines (The following is a recommended operating procedure for guidance only, and adjustments should be made according to your specific requirements)
1. Stock Solution Preparation
1.2 Concentration recommendation: 1 mM.
2. Working Solution Preparation
2.1 Working solution concentration: 10 μM.
2.2 Notes: Adjust the working solution concentration as needed; prepare fresh before use.
3. Staining Procedure
3.1 Sample Type Description
3.1.1 Adherent cells (MCF-7 cells)[1][2]
3.2 Incubation Conditions
3.2.1 MCF-7 cells: Incubate with 10 μM Lyso-MPCB for 30 min; after staining, incubate the cells in nutrient-free medium for up to 4 h.
5. Detection and Analysis
5.1 Instrument type: Fluorescence microscope.
5.2 Excitation/Emission Wavelengths
5.2.1 Ex (TP) = 760 nm; Em (blue) = 400-420 nm; Em (green) = 465-485 nm (dual-channel detection is performed using the blue emission channel and green emission channel).
5.3 Result Analysis
5.3.1 Changes in fluorescence intensity: When lysosomal pH decreases from 8.0 to 3.0, the ratio of green fluorescence intensity to blue fluorescence intensity (Igreen/Iblue) decreases; within the pH range of 4.2-5.6, the blue/green fluorescence ratio signal shows a linear relationship with pH; as autophagy induction time extends, both the distribution range and average level of pseudo-color increase.
5.3.2 Fluorescence localization: Specific targeting of lysosomes.
5.3.3 Color change: Emits blue fluorescence under alkaline conditions and green fluorescence under acidic conditions; pseudo-color shift corresponds to changes in lysosomal pH.
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
化学情報
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CAS 番号 2243068-74-6
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分子量 554.68
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分子式 C36H34N4O2
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SMILES
COC1=CC=C(C=C1)C#CC2=CC3=C(N(C4=C3C=C(C=C4)C5=NC(C=CC=C6)=C6N5)CCCCN7CCOCC7)C=C2
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輸送条件
Room temperature in continental US; may vary elsewhere.
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保管条件
Please store the product under the recommended conditions in the Certificate of Analysis.
プロトコル
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Autophagy
Autophagy is a process in which eukaryotic cells use lysosomes to degrade their own cytoplasmic proteins and damaged organelles under the regulation of autophagy related gene (Atg). Microtubule-associated proteins light chain 3 (LC3) is recognized as autophagy marker, which transfers from cytoplasmic LC3 (LC3-I) to membrane type (LC3-II). LC3-II/I ratio could be detected by Western Blot and fluorescence microscopy.
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Lysosome and acidic-vesicle live-cell staining
Lysosome and acidic-vesicle live-cell staining detects acidic intracellular compartments by using membrane-permeant acidotropic probes that accumulate in low-pH vesicles, including lysosomes, late endosomes, autolysosomes, and acidic phagosomes. LysoTracker staining is commonly used as an intensity-based readout of acidic lysosomal compartment abundance or enlargement, while acridine orange produces green fluorescence in less concentrated compartments and red fluorescence after concentration-dependent accumulation in acidic vesicular organelles. Loss or reduction of acridine-orange red signal can be used as a readout of lysosomal membrane permeabilization or reduced acidic-vesicle integrity. This protocol is designed for live cultured cells and can be adapted for fluorescence microscopy, high-content imaging, plate-reader readout, or flow cytometry when the selected literature supports the readout. Because these dyes report acidotropic accumulation rather than lysosome identity alone,
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Macroautophagy Solutions
Macroautophagy is a conserved lysosome-dependent degradation pathway in which cytoplasmic material is sequestered into double-membrane autophagosomes and delivered to lysosomes for degradation and recycling. The pathway supports cellular homeostasis during nutrient limitation, organelle stress, protein-aggregate accumulation, infection, differentiation, and tissue remodeling by coupling cargo sequestration, autophagosome maturation, lysosomal fusion, and degradation of cargo-derived macromolecules. The core molecular sequence includes initiation by nutrient- and stress-regulated autophagy machinery, autophagosome nucleation, LC3/ATG8-family conjugation to autophagosomal membranes, cargo selection through receptors such as SQSTM1/p62, autophagosome-lysosome fusion, and lysosomal degradation. LC3 was identified as a mammalian homolog of yeast Atg8 that localizes to autophagosomal membranes after processing, and p62/SQSTM1 was shown to connect ubiquitinated cargo with autophagic degradati
純度とドキュメンテーション
参考文献
Calculators
濃度 (開始) × 体積 (開始) = 濃度 (終了) × 体積 (終了)