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Chemical Structure| 6090-95-5 Chemical Structure| 6090-95-5

Structure of Conduritol B epoxide
CAS No.: 6090-95-5

Chemical Structure| 6090-95-5

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Conduritol B epoxide is an irreversible inhibitor of acid β-glucosidase (GCase) with IC50 of 1 μM.

Synonyms: D,L-1,2-Anhydro-myo-inositol; specific inhibitor of glucocerebrosidase in cultured cells; CBE

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Product Citations

Product Citations

Reetu Saini ; Reeta Rani Singhania ; Anil Kumar Patel ; Chiu-Wen Chen ; Gregorz Piechota ; Cheng-Di Dong

Abstract: Globally, the demands for sustainably sourced functional foods like prebiotic oligosaccharides have been constantly increasing. This study assessed the potential of pineapple leaves (PL) as lignocellulosic feedstock for sustainable production of and hemicellulose-derived oligosaccharides through its hydrothermal pretreatment (HT) followed by controlled enzymatic hydrolysis. PL was subjected to HT at 160, 175, and 190 °C for 20, 30, 60, and 90 min without any catalyst for xylooligosaccharide (XOS) production, whereas, the resulting solid content after HT was subjected to controlled enzymatic hydrolysis by commercial cellulase using (0.5–5 mM) for glucooligosaccharides (GOS) production. HT at 160 °C for 60 min resulted in maximum yield of XOS and GOS at 23.7 and 18.3 %, respectively, in the liquid phase. Controlled enzymatic hydrolysis of HT treated (160 °C) PL solids for 20 and 30 min yielded ∼ 174 mg cellobiose/g dry biomass within 24 h, indicating overall high production.

Keywords: Conduritol B epoxide ; Pineapple leaves ; Hydrothermal pretreatment ; Prebiotics ; Xylooligosaccharides ; Glucooligosaccharides ; Sustainable development goals no. 3

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Product Details of Conduritol B epoxide

CAS No. :6090-95-5
Formula : C6H10O5
M.W : 162.14
SMILES Code : O[C@H]1[C@@]2([H])O[C@@]2([H])[C@H](O)[C@@H](O)[C@@H]1O
Synonyms :
D,L-1,2-Anhydro-myo-inositol; specific inhibitor of glucocerebrosidase in cultured cells; CBE
MDL No. :MFCD00077326
InChI Key :ZHMWOVGZCINIHW-FTYOSCRSSA-N
Pubchem ID :119054

Safety of Conduritol B epoxide

GHS Pictogram:
Signal Word:Warning
Hazard Statements:H315-H319-H335
Precautionary Statements:P261-P305+P351+P338

Isoform Comparison

Biological Activity

In Vitro:

Cell Line
Concentration Treated Time Description References
recombinant human GBA (rGBA, Cerezyme) 4.28 μM 3 h Evaluate the inhibitory effect of CBE on GBA, results showed IC50 of CBE for GBA was 4.28 μM J Am Chem Soc. 2019 Mar 13;141(10):4214-4218
primary murine microglia 200 µM 48 h To investigate the effects of GCase inhibition on microglial morphology and function, results showed CBE treatment altered microglial morphology and motility Cells. 2023 Jan 17;12(3):343
Oli-neu cells 10 μM 3 days To evaluate the impact of β-glucocerebrosidase inactivation on myelination, lysosomal degradation, and α-synuclein accumulation. Results showed that CBE treatment significantly reduced β-glucocerebrosidase activity, increased accumulation of GlcCer and HexSph, impaired lysosomal function, increased α-synuclein aggregation, and decreased levels of myelin-related proteins such as MAG and CNP. Mol Neurodegener. 2024 Mar 7;19(1):22

In Vivo:

Species
Animal Model
Administration Dosage Frequency Description References
Mice MyTrMaSt null mice Intraperitoneal injection 25, 32, 37.5, or 100 mg/kg Daily injection until the end of the experiment To study the role of Conduritol B epoxide in a mouse model of neuronal forms of Gaucher disease, finding that the IFN signaling pathway is not related to mouse viability but attenuates neuroinflammation J Neuroinflammation. 2020 Sep 7;17(1):265
Mice Wild-type mice Intraperitoneal injection 100 mg/kg Once daily for 3 days To study the effects of in vivo GCase inhibition on microglial function, results showed CBE treatment impaired the neuroprotective function of microglia Cells. 2023 Jan 17;12(3):343
Mice Wild-type and Tmem106b /C0//C0 mice Intraperitoneal injection 50 mg/kg and 100 mg/kg Once daily for 30 days (50 mg/kg) and 15 days (100 mg/kg) To study the role of TMEM106B in the Gaucher disease model. TMEM106B depletion ameliorates neuronal degeneration and some behavioural abnormalities. Brain Commun. 2020 Nov 16;3(1):fcaa200

Protocol

Bio Calculators
Preparing Stock Solutions 1mg 5mg 10mg

1 mM

5 mM

10 mM

6.17mL

1.23mL

0.62mL

30.84mL

6.17mL

3.08mL

61.68mL

12.34mL

6.17mL

Dissolving Methods
Please choose the appropriate dissolution scheme according to your animal administration guide.For the following dissolution schemes, clear stock solution should be prepared according to in vitro experiments, and then cosolvent should be added in turn:

in order to ensure the reliability of the experimental results, the clarified stock solution can be properly preserved according to the storage conditions; The working fluid for in vivo experiment is recommended to be prepared now and used on the same day;

The percentage shown in front of the following solvent refers to the volume ratio of the solvent in the final solution; If precipitation or precipitation occurs in the preparation process, it can be assisted by heating and/or ultrasound.
Protocol 1
Protocol 2
The prepared working fluid is recommended to be prepared now and used up as soon as possible in a short period of time. The percentage shown in front of the following solvent refers to the volume ratio of the solvent in the final solution; If precipitation or precipitation occurs in the preparation process, it can be assisted by heating and/or ultrasound.
Protocol 1

References

 

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