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Bottom line

Dalbavancin is a semisynthetic lipoglycopeptide antibiotic with a long half-life (~14 days) enabling a convenient 2-dose weekly IV regimen (1,000 mg day 1, 500 mg day 8) for ABSSSI. Its lipophilic side chain enhances activity against MRSA and other Gram-positive bacteria. Not active against Gram-negative organisms. A single 1,500 mg dose is also approved.

Identity and composition

FieldVerified information
Preferred nameDalbavancin
Key aliasesDalvance, BI-397, VER001
Molecular/sequence identitySemisynthetic lipoglycopeptide derived from the A40926 fermentation product of Nonomuraea species. A mixture of five active homologs (A0, A1, B0, B1, B2); B0 is the major component. The core structure is a glycopeptide with an N-acylaminoglucuronic acid moiety carrying a fatty acid side chain.
Modifications/formHydrochloride salt; lyophilized powder for IV infusion after reconstitution and dilution
Stable identifiersPubChem CID: 16134627 (B0); DrugBank: DB09032; ChEBI: CHEBI:136534; CAS: 171500-79-1
Identity caveatsA lipoglycopeptide — classified as a peptide-derived antibiotic, not a natural peptide. Distinguish from vancomycin (glycopeptide, no lipophilic side chain) and oritavancin.

Development and approval status

JurisdictionStatus and indicationProduct/sourceAs of
USA (FDA)Approved — ABSSSI (adults and pediatric patients)Dalvance (Durata Therapeutics/AbbVie)2014
EU (EMA)Approved — ABSSSI (adults)Dalvance2015

Mechanism and pharmacology

Dalbavancin interferes with bacterial cell wall synthesis by binding to the D-alanyl-D-alanine terminus of the stem pentapeptide in nascent peptidoglycan, preventing cross-linking. It is bactericidal in vitro against S. aureus and S. pyogenes. The lipophilic side chain increases potency and prolongs half-life by enhancing albumin binding and reducing renal clearance.

Pharmacokinetics: IV administration; half-life ~14.4 days; high protein binding (>93%); primarily renal excretion; not CYP450 metabolized; no dose adjustment for hepatic impairment.

Evidence by claim

Claim/indicationStageGradeBest human evidenceMain resultImportant limitations
ABSSSI (adults, two-dose)ApprovedATwo identically designed phase 3 RCTs (Trial 1/2; N=1,312); dalbavancin 1,000 mg d1 + 500 mg d8 vs vancomycin 1 g q12h (optional switch to linezolid)Early clinical response (48-72 h): dalbavancin 79.7-82.3% vs vancomycin 75.8-80.7% — met non-inferiority (margin -10%)~5% received concomitant aztreonam; Eastern European majority population
ABSSSI (single dose)ApprovedAPhase 3 RCT (Trial 3; N=698); dalbavancin 1,500 mg single dose vs 1,000/500 mg two-doseSingle dose non-inferior to two-dose regimenNot placebo-controlled; insufficient historical data to compare vs placebo at follow-up

Key studies

StudyDesign/populationExposure studiedEndpoints and resultLimitations
DUR001-301 and DUR001-302 (two-dose)Phase 3, DB, double-dummy, RCT; N=1,312; ABSSSIDalbavancin 1,000 mg IV d1 + 500 mg d8 vs vancomycin IV q12hECR (48-72 h): 79.7% vs 75.8% (Trial 1); 82.3% vs 80.7% (Trial 2); both met NIShort course comparator (10-14 d); different geographies
DUR001-303 (single dose)Phase 3, DB, RCT; N=698; ABSSSIDalbavancin 1,500 mg single dose vs two-dose regimenSingle dose met NI vs two-dose for ≥20% lesion reduction at 48-72 hNo active non-dalbavancin comparator for single dose

Dose and administration evidence

Approved labeled regimen

The label summary below is product-, indication-, and jurisdiction-specific; consult the full current label and a licensed clinician/pharmacist.

Adults (two-dose): 1,000 mg IV followed 1 wk later by 500 mg IV. Single-dose: 1,500 mg IV ×1. Pediatric (3 mo to <18 y): weight-based. Infuse over 30 min. Renal impairment (CrCl <30 mL/min): two-dose regimen — 750 mg/375 mg; single dose — 1,125 mg.

What is not established

  • Use beyond ABSSSI (e.g., osteomyelitis, endocarditis — off-label studied but not approved).

  • Use in pregnancy: limited human data.

  • Pediatric patients <3 months: very limited data.

Safety

Established label risks

  • Nausea, diarrhea, headache, vomiting, pruritus — most frequent adverse events.

  • Infusion reactions (phlebitis, thrombophlebitis).

  • Elevated ALT/AST (typically mild).

  • Not studied in pregnancy; animal studies show no teratogenicity at clinically relevant exposures.

Human-study signals

  • No evidence of QTc prolongation (thorough QT study).

  • Lower overall adverse event rate than vancomycin in the phase 3 trials (driven largely by the ability to stop IV therapy earlier).

Unknowns and product-quality risks

  • One vial may not deliver full label dose; overdosing possible if multiple vials used without accounting for reconstitution overfill.

  • No oral formulation.

Interactions and special populations

Not a CYP inhibitor/inducer/substrate. Avoid concurrent nephrotoxic agents (limited data). Renal impairment requires dose adjustment (CrCl <30 mL/min). No dose change for mild-moderate hepatic impairment.

Regulatory, compounding, and sport notes

WADA status: not prohibited. No US federal CSA scheduling was identified as of 2026-08-06; state law and other jurisdictions were not assessed. FDA-approved ABSSSI populations and current generic availability are product-specific.

Evidence gaps

  • Comparative effectiveness vs ceftaroline or tedizolid for ABSSSI.

  • Utilization for off-label indications (osteomyelitis, IE, prosthetic joint infections).

  • Long-term safety of single-dose regimen (60-day follow-up used in trials).

  • Dalbavancin-nonsusceptible isolates: not observed in clinical trials but in vitro serial passage can select resistant variants.

Search notes

  • Databases and registries: FDA label (accessdata.fda.gov), DailyMed, ClinicalTrials.gov, PubMed

  • Search terms: dalbavancin, Dalvance, lipoglycopeptide, ABSSSI, MRSA, two-dose regimen

  • Last searched: 2026-08-06

  • Inclusion emphasis: FDA/EMA labels, phase 3 RCTs

Sources

  1. FDA prescribing information: DALVANCE (dalbavancin) for injection. Available at: https://www.accessdata.fda.gov/drugsatfda_docs/label/2025/021883Orig1s012lbl.pdf (accessed 2026-08-06).

  2. DailyMed: DALVANCE. Available at: https://dailymed.nlm.nih.gov/dailymed/drugInfo.cfm?setid=4b4674d8-4d1e-4728-8465-d42ada33fa5c (accessed 2026-08-06).

  3. Boucher HW, et al. Once-weekly dalbavancin versus daily conventional therapy for skin infection. N Engl J Med. 2014;370(23):2169-79. DOI: 10.1056/NEJMoa1310480.

  4. Dunne MW, et al. Single-dose oritavancin and dalbavancin for ABSSSI — two pivotal trials and a single-dose study. Clin Infect Dis. 2015;61(Suppl 2):S58-67. DOI: 10.1093/cid/civ675.

प्रश्न

Is dalbavancin FDA-approved?

Yes. Dalbavancin (Dalvance) was approved by the FDA in 2014 and the EMA in 2015 for acute bacterial skin and skin structure infections (ABSSSI) in adults and pediatric patients. Its long half-life of about 14 days supports a labeled regimen with very infrequent administration compared with older agents.

What does the evidence show for dalbavancin in ABSSSI?

Two phase 3 RCTs (N=1,312 total) compared the labeled dalbavancin regimen against vancomycin. Early clinical response at 48-72 hours was 79.7-82.3% for dalbavancin versus 75.8-80.7% for vancomycin, meeting non-inferiority. Trials also support an alternative labeled regimen with comparable efficacy.

Is dalbavancin the same as vancomycin?

No. Both are glycopeptide-derived antibiotics, but dalbavancin is a semisynthetic lipoglycopeptide with a lipophilic side chain that enhances potency and prolongs half-life. Vancomycin lacks this side chain. They have distinct approved indications and labeled regimens; see the individual monographs.

What are dalbavancin's main safety signals?

The most frequent adverse events are nausea, diarrhea, headache, vomiting, and pruritus. Treatment-related reactions including phlebitis have been reported, and ALT or AST elevations were typically mild. The overall adverse-event rate was lower than vancomycin in the cited phase 3 trials.

Does dalbavancin work against Gram-negative bacteria?

No. Dalbavancin is not active against Gram-negative organisms. It is specifically active against Gram-positive bacteria including MRSA. It binds to the D-alanyl-D-alanine terminus of peptidoglycan precursors to inhibit cell wall synthesis.

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