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Merck
CN

C4555

Methyl-β-cyclodextrin

powder, BioReagent, suitable for cell culture

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About This Item

CAS Number:
MDL number:
UNSPSC Code:
12352201
NACRES:
NA.77
Form:
powder
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biological source

synthetic (organic)

sterility

non-sterile

product line

BioReagent

form

powder

mol wt

~1320 g/mol

extent of labeling

1.5-2.1 methyl per mol glucose

technique(s)

cell culture | mammalian: suitable

mp

180-182 °C (lit.)

solubility

H2O: 50 mg/mL

storage temp.

room temp

SMILES string

O1C2OC(C(OC3OC(C(OC4OC(C(OC5OC(C(OC6OC(C(OC7OC(C(OC8OC(C1C(C8OC)O)COC)C(C7OC)O)COC)C(C6OC)O)COC)C(C5OC)O)COC)C(C4OC)O)COC)C(C3OC)O)COC)C(C2OC)O)COC

InChI

1S/C56H98O35/c1-64-15-22-36-29(57)43(71-8)50(78-22)86-37-23(16-65-2)80-52(45(73-10)30(37)58)88-39-25(18-67-4)82-54(47(75-12)32(39)60)90-41-27(20-69-6)84-56(49(77-14)34(41)62)91-42-28(21-70-7)83-55(48(76-13)35(42)63)89-40-26(19-68-5)81-53(46(74-11)33(40)61)87-38-24(17-66-3)79-51(85-36)44(72-9)31(38)59/h22-63H,15-21H2,1-14H3

InChI key

QGKBSGBYSPTPKJ-UHFFFAOYSA-N

General description

Methyl-β-cyclodextrin is a heptasaccharide, soluble in water, and has more affinity to cholesterol due to the presence of hydrophobic core. Cyclodextrins are cyclic oligosaccharides consisting of 6, 7, or 8 glucopyranose units, usually referred to as α-, β-, or γ-cyclodextrins, respectively. These compounds have rigid doughnut-shaped structures making them natural complexing agents. The unique structures of these compounds owe their stability to intramolecular hydrogen bonding between the C2- and C3-hydroxyl groups of neighboring glucopyranose units. The molecule takes on the shape of a torus with the C2- and C3-hydroxyls located around the larger opening and the more reactive C6-hydroxyl aligned around the smaller opening. The arrangement of C6-hydroxyls opposite the hydrogen bonded C2- and C3-hydroxyls forces the oxygen bonds into close proximity within the cavity, leading to an electron rich, hydrophobic interior. The size of this hydrophobic cavity is a function of the number of glucopyranose units forming the cyclodextrin.

The solubility of natural cyclodextrins is very poor. In the late 1960′s, it was discovered that chemical substitutions at the 2, 3, and 6 hydroxyl sites would greatly increase solubility. Most chemically modified cyclodextrins are able to achieve a 50% (w/v) concentration in water.

Application

Methyl-β-cyclodextrin has been used:
  • to study the effect of cholesterol depletion, from sperm membrane on sperm′s ability to undergo acrosome reaction.
  • to determine the effect of caveolin overexpression and its loss on pro-survival and pro-growth signaling
  • in conventional in vitro fertilization

Biochem/physiol Actions

Methyl-β-cyclodextrin (MβCD) is commonly applicable as an inhibitor and modifies cholesterol domains on the cellular surface. It causes depletion of cholesterol on the membrane. It is also known to prevent the action of cholera toxin, nitric oxide (NO) synthase and glucose transporter through internalization. This is observed in specific to lipid rafts and caveolae endocytosis. MβCD induces eflux as well as influx of cholesterol. It can affect cell viability as the genes regulating cholesterol levels are upregulated, due to decreased cholesterol level by the action of MβCD. It can be used to increase the solubility of non-polar substances such as fatty acids, lipids, vitamins and cholesterol for use in cell culture applications. Cavity size is the major determinant as to which cyclodextrin is used in complexation. The cavity diameter of β-cyclodextrins or β-glucopyranose unit compounds is well-suited for use with molecules the size of hormones, vitamins and many compounds frequently used in tissue and cell culture applications. For this reason, β-cyclodextrin is most commonly used as a complexing agent.

Preparation Note

Solutions may be obtained by stirring 30 min at room temperature. Alternatively, sonication with cooling may be employed. Solutions may be stored for several months at 4°C. Solid should be stored tightly sealed at room temperature.


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Storage Class

11 - Combustible Solids

wgk

WGK 3

flash_point_f

368.6 °F

flash_point_c

187 °C

ppe

Eyeshields, Gloves, type N95 (US)



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Articles

很多重要的代谢化合物,例如脂溶性维生素和激素,在水溶液中的溶解度很低。很多技术被用于提高这些化合物在组织培养物、细胞培养物或其他水基应用中的溶解度。

不饱和脂肪酸、油酸和其他细胞培养成分如何影响无血清、无蛋白细胞培养系统(用于生物制造包括单克隆抗体在内的异源蛋白)的性能。

棕榈酸等脂肪酸和其他细胞培养成分如何影响无血清、无蛋白细胞培养系统(用于生物制造包括单克隆抗体在内的异源蛋白)的性能。

View All Articles

Imaging of mobile long-lived nanoplatfroms in the live cell plasma membrane
Brameshuber M, et al.
The Journal of Biological Chemistry, 118(2-4), jbc-M110 (2010)
Cholesterol addition protects membrane intactness during cryopreservation of stallion sperm
Oliveira CH de, et al.
Animal Reproduction Science, 118(2-4), 194-200 (2010)
Ecancermedicalscience, 60(3), 187-193 (2008)



Global Trade Item Number

SKUGTIN
C4555-10G04061833492321
C4555-1G04061835568260
C4555-5G04061835568277