Taurodeoxycholic Acid-d4 sodium salt
featured

    WARNING: This product is for research use only, not for human or veterinary use.

Hodoodo CAT#: H463882

CAS#: 2410279-82-0 (sodium salt)

Description: Taurodeoxycholic acid-d4 is intended for use as an internal standard for the quantification of taurodeoxycholic acid by GC- or LC-MS. Taurodeoxycholic acid is a taurine-conjugated form of the secondary bile acid deoxycholic acid. Taurodeoxycholic acid stimulates chloride ion secretion through calcium-activated chloride ion channels and cystic fibrosis transmembrane conductance regulator (CFTR) in Calu-3 airway epithelial cell monolayers when applied basolaterally. Serum levels of taurodeoxycholic acid increase approximately 5-fold within two hours during an oral lipid tolerance test in humans.


Chemical Structure

img
Taurodeoxycholic Acid-d4 sodium salt
CAS# 2410279-82-0 (sodium salt)

Theoretical Analysis

Hodoodo Cat#: H463882
Name: Taurodeoxycholic Acid-d4 sodium salt
CAS#: 2410279-82-0 (sodium salt)
Chemical Formula: C26H40D4NNaO6S
Exact Mass: 525.30
Molecular Weight: 525.713
Elemental Analysis: C, 59.40; H, 9.20; N, 2.66; Na, 4.37; O, 18.26; S, 6.10

Price and Availability

Size Price Availability Quantity
100mg USD -2 2 Weeks
200mg USD -2 2 Weeks
500mg USD -2 2 Weeks
2g USD -2 2 Weeks
5g USD -2 2 Weeks
10mg USD -2 2 Weeks
25mg USD -2 2 Weeks
50mg USD -2 2 Weeks
1mg USD 380 2 Weeks
Bulk inquiry

Synonym: Taurodeoxycholic Acid-d4 sodium salt; Taurodeoxycholic Acid d4 sodium salt; Sodium Taurodeoxycholate-d4; Sodium Taurodeoxycholate d4; TDCA-d4; TDCA d4;

IUPAC/Chemical Name: sodium 2-((R)-4-((3R,5R,8R,9S,10S,12S,13R,14S,17R)-3,12-dihydroxy-10,13-dimethylhexadecahydro-1H-cyclopenta[a]phenanthren-17-yl-2,2,4,4-d4)pentanamido)ethane-1-sulfonate

InChi Key: YXHRQQJFKOHLAP-YPYHFUETSA-M

InChi Code: InChI=1S/C26H45NO6S.Na/c1-16(4-9-24(30)27-12-13-34(31,32)33)20-7-8-21-19-6-5-17-14-18(28)10-11-25(17,2)22(19)15-23(29)26(20,21)3;/h16-23,28-29H,4-15H2,1-3H3,(H,27,30)(H,31,32,33);/q;+1/p-1/t16-,17-,18-,19+,20-,21+,22+,23+,25+,26-;/m1./s1/i10D2,14D2;

SMILES Code: [H][C@@]12[C@@]([H])(CC[C@@]3(C([2H])([C@@H](C([2H])(C[C@@]32C)[2H])O)[2H])[H])[C@@]([H])([C@@]4([C@H](C1)O)C)CC[C@@]4([C@@H](CCC(NCCS(=O)([O-])=O)=O)C)[H].[Na+]

Appearance: Solid powder

Purity: >98% (or refer to the Certificate of Analysis)

Shipping Condition: Shipped under ambient temperature as non-hazardous chemical. This product is stable enough for a few weeks during ordinary shipping and time spent in Customs.

Storage Condition: Dry, dark and at 0 - 4 C for short term (days to weeks) or -20 C for long term (months to years).

Solubility: Soluble in DMSO

Shelf Life: >2 years if stored properly

Drug Formulation: This drug may be formulated in DMSO

Stock Solution Storage: 0 - 4 C for short term (days to weeks), or -20 C for long term (months).

HS Tariff Code: 2934.99.9001

More Info:

Biological target:
In vitro activity:
In vivo activity:

Preparing Stock Solutions

The following data is based on the product molecular weight 525.71 Batch specific molecular weights may vary from batch to batch due to the degree of hydration, which will affect the solvent volumes required to prepare stock solutions.

Recalculate based on batch purity %
Concentration / Solvent Volume / Mass 1 mg 5 mg 10 mg
1 mM 1.15 mL 5.76 mL 11.51 mL
5 mM 0.23 mL 1.15 mL 2.3 mL
10 mM 0.12 mL 0.58 mL 1.15 mL
50 mM 0.02 mL 0.12 mL 0.23 mL
Formulation protocol:
In vitro protocol:
In vivo protocol:

Molarity Calculator

Calculate the mass, volume, or concentration required for a solution.
=
x
x
g/mol

*When preparing stock solutions always use the batch-specific molecular weight of the product found on the vial label and SDS / CoA (available online).

Reconstitution Calculator

The reconstitution calculator allows you to quickly calculate the volume of a reagent to reconstitute your vial. Simply enter the mass of reagent and the target concentration and the calculator will determine the rest.

=
÷

Dilution Calculator

Calculate the dilution required to prepare a stock solution.
x
=
x

1: Chen Y, Lu J, Wickens K, Stanley T, Maude R, Stone P, Barthow C, Crane J, Mitchell EA, Merien F, Murphy R. Effect of Lactobacillus rhamnosus Probiotic in Early Pregnancy on Plasma Conjugated Bile Acids in a Randomised Controlled Trial. Nutrients. 2021 Jan 13;13(1):209. doi: 10.3390/nu13010209. PMID: 33450885; PMCID: PMC7828313.

2: Yamaguchi Y, Zampino M, Moaddel R, Chen TK, Tian Q, Ferrucci L, Semba RD. Plasma metabolites associated with chronic kidney disease and renal function in adults from the Baltimore Longitudinal Study of Aging. Metabolomics. 2021 Jan 11;17(1):9. doi: 10.1007/s11306-020-01762-3. PMID: 33428023.

3: Yan S, Feng W, Bao-Jun L, Yan-Fang J, Nan C, Fang-Fang D, Shuang-Cheng MA. [Investigation of chemical profile of bile acids and determination of them in cultured Bovis Calculus with UPLC-QDA]. Zhongguo Zhong Yao Za Zhi. 2020 Nov;45(21):5232-5237. Chinese. doi: 10.19540/j.cnki.cjcmm.20200620.202. PMID: 33350240.

4: Wu H, Yu N, Wang X, Yang Y, Liang H. Tauroursodeoxycholic acid attenuates neuronal apoptosis via the TGR5/ SIRT3 pathway after subarachnoid hemorrhage in rats. Biol Res. 2020 Dec 1;53(1):56. doi: 10.1186/s40659-020-00323-1. PMID: 33261652; PMCID: PMC7709410.

5: Wang XJ, Chen BY, Yang BW, Yue TL, Guo CF. Short communication: Chemical structure, concentration, and pH are key factors influencing antimicrobial activity of conjugated bile acids against lactobacilli. J Dairy Sci. 2021 Feb;104(2):1524-1530. doi: 10.3168/jds.2020-19293. Epub 2020 Nov 25. PMID: 33246627.

6: Tao Y, Zheng F, Cui D, Huang F, Wu X. A combination of three plasma bile acids as a putative biomarker for schizophrenia. Acta Neuropsychiatr. 2020 Nov 23:1-4. doi: 10.1017/neu.2020.42. Epub ahead of print. PMID: 33222705.

7: Ikeda Y. [Mechanism of Taurohyodeoxycholate-induced Biliary Phospholipid Efflux -Understanding the Function of the ABCB4 Enhancer for Developing Therapeutic Agents against Bile Salt-induced Liver Injury]. Yakugaku Zasshi. 2020;140(11):1329-1334. Japanese. doi: 10.1248/yakushi.20-00156. PMID: 33132268.

8: Yang Z, Shao Y, Zhao Y, Li Q, Li R, Xiao H, Zhang F, Zhang Y, Chang X, Zhang Y, Zhou Z. Endoplasmic reticulum stress-related neuroinflammation and neural stem cells decrease in mice exposure to paraquat. Sci Rep. 2020 Oct 20;10(1):17757. doi: 10.1038/s41598-020-74916-x. PMID: 33082501; PMCID: PMC7576831.

9: Hemingway HW, Moore AM, Olivencia-Yurvati AH, Romero SA. Effect of endoplasmic reticulum stress on endothelial ischemia-reperfusion injury in humans. Am J Physiol Regul Integr Comp Physiol. 2020 Dec 1;319(6):R666-R672. doi: 10.1152/ajpregu.00257.2020. Epub 2020 Oct 14. PMID: 33074709; PMCID: PMC7792819.

10: Noel OF, Chu X, Patterson AD, Edwards MA, Still CD, Gerhard GS. Roux-en-Y Gastric Bypass Surgery Has Early Differential Effects on Bile Acids and the Levels of Complement Component 3 and Acylation-Stimulating Protein. Obes Surg. 2020 Sep 28. doi: 10.1007/s11695-020-04993-4. Epub ahead of print. PMID: 32986170.

11: El-Ashram S, Zhang Y, Ji Y, Salama D, Mei K, Zhili L, Shujian H, Zhang H, Aboelhadid SM, Alajmi RA, Metwally DM, El-Khadragy MF, Hargis BM, Tellez-Isaias G, Cenci-Goga BT, Karama M, Marufu MC, Abouhajer F, Ali Abdelhafez Hamady G, El Wakil A, Al Nasr I, Suo X. A rapid and simple single-step method for the purification of Toxoplasma gondii tachyzoites and bradyzoites. Vet Med Sci. 2020 Sep 26. doi: 10.1002/vms3.364. Epub ahead of print. PMID: 32979302.

12: Paganoni S, Macklin EA, Hendrix S, Berry JD, Elliott MA, Maiser S, Karam C, Caress JB, Owegi MA, Quick A, Wymer J, Goutman SA, Heitzman D, Heiman-Patterson T, Jackson CE, Quinn C, Rothstein JD, Kasarskis EJ, Katz J, Jenkins L, Ladha S, Miller TM, Scelsa SN, Vu TH, Fournier CN, Glass JD, Johnson KM, Swenson A, Goyal NA, Pattee GL, Andres PL, Babu S, Chase M, Dagostino D, Dickson SP, Ellison N, Hall M, Hendrix K, Kittle G, McGovern M, Ostrow J, Pothier L, Randall R, Shefner JM, Sherman AV, Tustison E, Vigneswaran P, Walker J, Yu H, Chan J, Wittes J, Cohen J, Klee J, Leslie K, Tanzi RE, Gilbert W, Yeramian PD, Schoenfeld D, Cudkowicz ME. Trial of Sodium Phenylbutyrate-Taurursodiol for Amyotrophic Lateral Sclerosis. N Engl J Med. 2020 Sep 3;383(10):919-930. doi: 10.1056/NEJMoa1916945. PMID: 32877582.

13: Shen J, Han X, Zheng L, Liu S, Jin C, Liu T, Cao Y, Lei X, Yao J. High Rumen-Degradable Starch Diet Promotes Hepatic Lipolysis and Disrupts Enterohepatic Circulation of Bile Acids in Dairy Goats. J Nutr. 2020 Oct 12;150(10):2755-2763. doi: 10.1093/jn/nxaa238. PMID: 32856057.

14: Shah V, Mittal R, Shahal D, Sinha P, Bulut E, Mittal J, Eshraghi AA. Evaluating the Efficacy of Taurodeoxycholic Acid in Providing Otoprotection Using an in vitro Model of Electrode Insertion Trauma. Front Mol Neurosci. 2020 Jul 14;13:113. doi: 10.3389/fnmol.2020.00113. PMID: 32760249; PMCID: PMC7372968.

15: Ito H, Yamashita Y, Tanaka T, Takaki M, Le MN, Yoshida LM, Morimoto K. Cigarette smoke induces endoplasmic reticulum stress and suppresses efferocytosis through the activation of RhoA. Sci Rep. 2020 Jul 28;10(1):12620. doi: 10.1038/s41598-020-69610-x. PMID: 32724133; PMCID: PMC7387437.

16: Kamp KJ, Cain KC, Utleg A, Burr RL, Raftery D, Luna RA, Shulman RJ, Heitkemper MM. Bile Acids and Microbiome Among Individuals With Irritable Bowel Syndrome and Healthy Volunteers. Biol Res Nurs. 2021 Jan;23(1):65-74. doi: 10.1177/1099800420941255. Epub 2020 Jul 15. PMID: 32666807.

17: Cai J, Wang Z, Chen G, Li D, Liu J, Hu H, Qin J. Reabsorption of bile acids regulated by FXR-OATP1A2 is the main factor for the formation of cholesterol gallstone. Am J Physiol Gastrointest Liver Physiol. 2020 Sep 1;319(3):G303-G308. doi: 10.1152/ajpgi.00385.2019. Epub 2020 Jun 29. PMID: 32597704.

18: Hu B, Ye C, Leung EL, Zhu L, Hu H, Zhang Z, Zheng J, Liu H. Bletilla striata oligosaccharides improve metabolic syndrome through modulation of gut microbiota and intestinal metabolites in high fat diet-fed mice. Pharmacol Res. 2020 Sep;159:104942. doi: 10.1016/j.phrs.2020.104942. Epub 2020 Jun 3. PMID: 32504835.

19: Du R, Bei H, Jia L, Huang C, Chen Q, Tao C, Chen J, Bo H. Danggui Buxue Tang restores antibiotic-induced metabolic disorders by remodeling the gut microbiota. J Ethnopharmacol. 2020 Sep 15;259:112953. doi: 10.1016/j.jep.2020.112953. Epub 2020 May 11. PMID: 32407936.

20: Jung EM, Yoo YM, Park SY, Ahn C, Jeon BH, Hong EJ, Kim WY, Jeung EB. Calbindin-D9k is a Novel Risk Gene for Neurodegenerative Disease. Cell Physiol Biochem. 2020 May 2;54(3):438-456. doi: 10.33594/000000229. PMID: 32357291.