Didanosine Explained

Watchedfields:changed
Verifiedrevid:458775891
Width:200
Tradename:Videx
Pregnancy Au:B2
Legal Uk:POM
Legal Us:Rx-only
Routes Of Administration:By mouth
Atc Prefix:J05
Atc Suffix:AF02
Bioavailability:30 to 54%
Protein Bound:Less than 5%
Elimination Half-Life:1.5 hours
Excretion:Kidney
Iuphar Ligand:4833
Cas Number:69655-05-6
Pubchem:135398739
Drugbank:DB00900
Chemspiderid:45864
Unii:K3GDH6OH08
Kegg:D00296
Chebi:490877
Chembl:1460
Niaid Chemdb:000004
Synonyms:2′,3′-dideoxyinosine
Iupac Name:9-((2R,5S)-5-(hydroxymethyl)tetrahydrofuran-2-yl)-3H-purin-6(9H)-one
C:10
H:12
N:4
O:3
Smiles:O=C3/N=C\Nc1c3ncn1[C@@H]2O[C@@H](CC2)CO
Stdinchi:1S/C10H12N4O3/c15-3-6-1-2-7(17-6)14-5-13-8-9(14)11-4-12-10(8)16/h4-7,15H,1-3H2,(H,11,12,16)/t6-,7+/m0/s1
Stdinchikey:BXZVVICBKDXVGW-NKWVEPMBSA-N

Didanosine (ddI, DDI), sold under the brand name Videx, is a medication used to treat HIV/AIDS.[1] It is used in combination with other medications as part of highly active antiretroviral therapy (HAART). It is of the reverse-transcriptase inhibitor class.

Didanosine was first described in 1975 and approved for use in the United States in 1991.[2]

Adverse effects

The most common adverse events with didanosine are diarrhea, nausea, vomiting, abdominal pain, fever, headache, and rash.[3] Peripheral neuropathy occurred in 21-26% of participants in key didanosine trials.

Pancreatitis is rarely observed but has caused occasional fatalities, and has black box warning status.[4] Other reported serious adverse events are retinal changes, optic neuritis and alterations of liver functions. The risk of some of these serious adverse events is increased by drinking alcohol.

In February 2010, the United States Food and Drug Administration issued a statement that patients using didanosine (Videx) are at risk for a rare but potentially fatal liver disorder, non-cirrhotic portal hypertension.[5]

Drug interactions

Resistance

Drug resistance to didanosine does develop, though slower than to zidovudine (ZDV). The most common mutation observed in vivo is L74V in the viral pol gene, which confers cross-resistance to zalcitabine; other mutations observed include K65R and M184V .[7]

Mechanism of action

Didanosine (ddI) is a nucleoside analogue of adenosine.[8] It differs from other nucleoside analogues, because it does not have any of the regular bases, instead it has hypoxanthine attached to the sugar ring. Within the cell, ddI is phosphorylated to the active metabolite of dideoxyadenosine triphosphate, ddATP, by cellular enzymes. Like other anti-HIV nucleoside analogs, it acts as a chain terminator by incorporation and inhibits viral reverse transcriptase by competing with natural dATP.

Pharmacokinetics

Oral absorption of didanosine is fairly low (42%)[9] but rapid. Food substantially reduces didanosine bioavailability, and the drug should be administered on an empty stomach. The half-life in plasma is only 1.5 hours, but in the intracellular environment more than 12 hours. An enteric-coated formulation is now marketed as well. Elimination is predominantly renal; the kidneys actively secrete didanosine, the amount being 20% of the oral dose.

History

The related pro-drug of didanosine, 2′,3′-dideoxyadenosine (ddA), was initially synthesized by Morris J. Robins (professor of Organic Chemistry at Brigham Young University) and R.K. Robins in 1964. Subsequently, Samuel Broder, Hiroaki Mitsuya, and Robert Yarchoan in the National Cancer Institute (NCI) found that ddA and ddI could inhibit HIV replication in the test tube and conducted initial clinical trials showing that didanosine had activity in patients infected with HIV. On behalf of the NCI, they were awarded patents on these activities. Since the NCI does not market products directly, the National Institutes of Health (NIH) awarded a ten-year exclusive license to Bristol-Myers Squibb Co. (BMS) to market and sell ddI as Videx tablets.

Didanosine became the second drug approved for the treatment of HIV infection in many other countries, including in the United States by the Food and Drug Administration (FDA) on October 9, 1991. Its FDA approval helped bring down the price of zidovudine (ZDV), the initial anti-HIV drug.

Didanosine has weak acid stability and is easily damaged by stomach acid. Therefore, the original formula approved by the FDA used chewable tablets that included an antacid buffering compound to neutralize stomach acid. The chewable tablets were not only large and fragile, they also were foul-tasting and the buffering compound would cause diarrhea. Although the FDA had not approved the original formulation for once-a-day dosing it was possible for some people to take it that way.

At the end of its ten-year license, BMS re-formulated Videx as Videx EC and patented that, which reformulation the FDA approved in 2000. The new formulation is a smaller capsule containing coated microspheres instead of using a buffering compound. It is approved by the FDA for once-a-day dosing. Also at the end of that ten-year period, the NIH licensed didanosine to Barr Laboratories under a non-exclusive license, and didanosine became the first generic anti-HIV drug marketed in the United States.

One of the patents for ddI expired in the United States on August 29, 2006, but other patents extend beyond that time.

Further reading

External links

Notes and References

  1. News: didanosine, Videx, Videx EC: Drug Facts, Side Effects and Dosing. MedicineNet. 2018-08-08. en.
  2. Book: Fischer J, Ganellin CR . Analogue-based Drug Discovery. 2006. John Wiley & Sons. 9783527607495. 505. en.
  3. News: Didanosine Side Effects in Detail - Drugs.com. Drugs.com. 2018-08-08. en-US.
  4. Web site: Didanosine Videx - Treatment - National HIV Curriculum. www.hiv.uw.edu. en. 2018-08-08.
  5. Web site: Serious liver disorder associated with the use of Videx/Videx EC (didanosine). FDA Drug Safety Communication . U.S. Food and Drug Administration . 19 January 2010 .
  6. Web site: DHHS Panel . Guidelines for the use of antiretroviral agents in HIV-1-infected adults and adolescents . May 4, 2006 . AIDSInfo . U.S. Department of Health and Human Services . https://web.archive.org/web/20060506193229/http://aidsinfo.nih.gov/Guidelines/GuidelineDetail.aspx?MenuItem=Guidelines&Search=Off&GuidelineID=7&ClassID=1 . 2006-05-06 .
  7. Moyle GJ . Use of viral resistance patterns to antiretroviral drugs in optimising selection of drug combinations and sequences . Drugs . 52 . 2 . 168–85 . August 1996 . 8841736 . 10.2165/00003495-199652020-00002 . 27709969 .
  8. Pruvost A, Negredo E, Benech H, Theodoro F, Puig J, Grau E, García E, Moltó J, Grassi J, Clotet B . 6 . Measurement of intracellular didanosine and tenofovir phosphorylated metabolites and possible interaction of the two drugs in human immunodeficiency virus-infected patients . Antimicrobial Agents and Chemotherapy . 49 . 5 . 1907–14 . May 2005 . 15855513 . 1087635 . 10.1128/AAC.49.5.1907-1914.2005 .
  9. Web site: VIDEX (didanosine): chewable/dispersible buffered tablets; buffered powder for oral solution; pediatric powder for oral solution. . July 2000 . U.S. Food and Drug Administration .