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Chemical Structure| 11042-64-1 Chemical Structure| 11042-64-1

Structure of γ-Oryzanol
CAS No.: 11042-64-1

Chemical Structure| 11042-64-1

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γ-Oryzanol is a phytochemical with membrane antioxidant, naturally occurring in crude rice bran oil, can be used to treat hyperlipidemia, disorders of menopause and to increase the muscle mass.

Synonyms: Gamma-Oryzanol

4.5 *For Research Use Only !

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Product Details of γ-Oryzanol

CAS No. :11042-64-1
Formula : C40H58O4
M.W : 602.89
SMILES Code : NONE
Synonyms :
Gamma-Oryzanol
MDL No. :MFCD00867548

Safety of γ-Oryzanol

GHS Pictogram:
Signal Word:Danger
Hazard Statements:H301
Precautionary Statements:P501-P270-P262-P264-P280-P362-P302+P350+P310-P405
Class:6.1
UN#:2811
Packing Group:

Related Pathways of γ-Oryzanol

epigenetics

Isoform Comparison

Biological Activity

In Vitro:

Cell Line
Concentration Treated Time Description References
α-TC cells 2, 10 μg/mL 2 h No effect on glucagon secretion Br J Pharmacol. 2015 Sep;172(18):4519-4534.
MIN6 cells 0.2, 2, 10 μg/mL 1 h Enhanced glucose-stimulated insulin secretion (GSIS) Br J Pharmacol. 2015 Sep;172(18):4519-4534.
murine islets 0.2, 2, 20 μg/mL 1 h Enhanced glucose-stimulated insulin secretion (GSIS) Br J Pharmacol. 2015 Sep;172(18):4519-4534.
murine primary neuronal cells 0.1, 1 μM 2 h To evaluate the effect of γ-Oryzanol on ER stress. γ-Oryzanol (1 mmol/L) significantly suppressed the tunicamycin-induced expression of ER stress-responsive genes (Chop, ERdj4, and Xbp1s). Diabetes. 2012 Dec;61(12):3084-93.
HEK293 cells 10 μM 24 h To evaluate the effect of γ-Oryzanol on the activities of ER stress-responsive cis-acting elements. γ-Oryzanol significantly suppressed the tunicamycin-induced activation of cis-acting elements (ERSE-I, 27%; ERSE-II, 64%; UPRE, 34% reduction vs. vehicle). Diabetes. 2012 Dec;61(12):3084-93.
Adult mouse hippocampal neural progenitor cells (NPCs) 1, 5, 10 µg/mL 24 h Promoted neuronal differentiation, increased MAP2+ cells, reduced GFAP+ cells Promotes Neuronal Differentiation in Different In Vitro and In Vivo Models. Antioxidants (Basel).
Human neuroblastoma cells (SH-SY5Y) 1, 5, 10 µg/mL 5 days Promoted neuronal differentiation, increased neurite outgrowth, upregulated GAP43, BDNF, and TrkB gene expression Promotes Neuronal Differentiation in Different In Vitro and In Vivo Models. Antioxidants (Basel).
3T3-L1 preadipocytes 30 μM 8 days Orz promotes differentiation of 3T3-L1 preadipocytes by upregulating PPAR-γ and C/EBPα expression and increasing lipid accumulation. Nutrients. 2015 Jun 15;7(6):4851-61.

In Vivo:

Species
Animal Model
Administration Dosage Frequency Description References
Mice Aging and ovariectomy-induced osteoporosis model Intragastric administration 100 mg/kg Daily for two months To evaluate the protective effect of γ-Oryzanol on osteoporosis Adv Sci (Weinh). 2021 Dec;8(24):e2100808
C57BL/6J mice High-fat-diet-induced obesity model Oral 320 μg/g Continued for 12 weeks To investigate the effects of γ-oryzanol on D2R signaling molecules in the striatum of HFD-induced obese mice. Results showed that γ-oryzanol decreased the expression and activity of DNMTs, restored the level of D2Rs in the striatum, and reduced the preference for HFD. Diabetologia. 2017 Aug;60(8):1502-1511
C57BL/6J mice High-fat diet-induced obesity model Oral gavage 20, 80, 320 μg/g Once daily for 13 weeks Improved high-fat diet-induced islet dysfunction and enhanced glucose tolerance Br J Pharmacol. 2015 Sep;172(18):4519-4534.
Ob/ob mice Genetically obese-diabetic model Oral 0.01 and 0.1 mg/g Once every 2 weeks for 4 weeks To evaluate the metabolic impact of γ-oryzanol nanoparticles in ob/ob mice. Results showed that Nano-Orz significantly improved glucose and lipid metabolism, reduced plasma insulin levels, and decreased ER stress and inflammation in liver and adipose tissue. Drug Deliv. 2017 Nov;24(1):558-568
C57BL/6J mice High-fat diet-induced obesity model Oral gavage 20, 80, or 320 mg/kg Once daily for 13 weeks To evaluate the effects of γ-Oryzanol on glucose metabolism and hypothalamic ER stress. γ-Oryzanol significantly improved glucose intolerance and insulin sensitivity and reduced high-fat diet-induced hypothalamic ER stress. Diabetes. 2012 Dec;61(12):3084-93.
Zebrafish Nrf2a and nrf2b knockdown model Microinjection in hindbrain ventricle 100 µg Single injection, observed until 2 dpf Promoted neuronal differentiation, increased neurog1-GFP signal and bdnf mRNA levels, dependent on Nrf2 pathway Promotes Neuronal Differentiation in Different In Vitro and In Vivo Models. Antioxidants (Basel).
Mice Adult mice Oral gavage 100 mg/kg Once a day for 21 days Γ-Oryzanol improves cognitive function and modulates hippocampal proteome in mice Nutrients. 2019 Mar 31;11(4):753
B6/129PF2 mice Neuroinflammation model Oral gavage 100 mg/kg Once daily for 21 consecutive days Γ-Oryzanol reverts LPS-induced cognitive and memory impairments by promoting hippocampal antioxidant and anti-inflammatory molecular responses. Nutrients. 2019 Mar 29;11(4):728
Wistar rats High-fat diet (HFD)-induced non-alcoholic fatty liver disease (NAFLD) model Oral 0.16% (w/w) added to diets Daily administration for 17 weeks Γ-Oryzanol was able to reduce final body weights, fat weights, fasting glucose, fasting insulin, serum, and serum levels of liver function enzymes as well as the inflammatory markers such as TNF-α, IL-6, and leptin in HFD-fed rats. It also improved hepatic structure and glucose tolerance, increased adiponectin levels, and reduced serum and hepatic levels of TGs and CHOL in these rats. These effects were concomitant with a reduction in hepatic MDA and serum LDL-C levels, but also with an increment in hepatic SOD and GSH levels. Nutrients. 2022 Dec 26;15(1):106

Protocol

Bio Calculators
Preparing Stock Solutions 1mg 5mg 10mg

1 mM

5 mM

10 mM

1.66mL

0.33mL

0.17mL

8.29mL

1.66mL

0.83mL

16.59mL

3.32mL

1.66mL

References

 

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