Second or subsequent microvascular free flaps in head and neck reconstructive surgery: a narrative review
Ziad Albash, Wajih Kashkash, Anton Sergeevich Sharapo, Zaderenko Igor Alexandrovich, Hassan Alsayed HachemBackground:
Microvascular free tissue transfer is the cornerstone of complex head and neck reconstruction, with primary flap success rates exceeding 95% in high-volume centers. However, a growing number of patients require second or subsequent free flaps due to recurrent malignancy, osteoradionecrosis (ORN), primary flap failure, or functional and aesthetic refinements. These re-operative scenarios present a uniquely hostile surgical environment shaped by prior surgery, radiation, and vessel depletion, demanding a fundamentally different reconstructive strategy.
Objectives:
This narrative review aims to synthesize current evidence on the indications, technical challenges, preoperative planning considerations, surgical strategies, and outcomes associated with second or subsequent microvascular free flaps in head and neck reconstruction.
Methods:
A targeted literature search was conducted across PubMed, Scopus, and the Cochrane Library using key terms such as “second free flap,” “salvage microsurgery,” and “head and neck reconstruction.” Emphasis was placed on clinical studies, case series, and expert reviews from the past three decades. Given the heterogeneity of the available data, a narrative – rather than systematic – approach was adopted to provide a clinically contextualized synthesis of the evidence.
Key findings:
Based predominantly on retrospective single-institution case series and systematic reviews of such data, reported flap survival rates for secondary reconstructions range from 90 to 95%, with further marginal declines for third or subsequent flaps. Common indications include locoregional cancer recurrence, ORN, and salvage after primary flap loss. The anterolateral thigh, scapular/parascapular, and fibula flaps are frequently employed due to their long pedicles and versatility. Critical technical considerations include advanced vascular mapping (typically via CT angiography), use of alternative recipient vessels (e.g., transverse cervical, internal mammary), and strategic deployment of vein grafts. Complication rates – particularly for pharyngocutaneous fistula, thrombosis, and wound dehiscence – are higher than in primary reconstruction, and outcomes are influenced by factors such as smoking status, nutritional health, and prior treatment burden.
Conclusion:
Second and subsequent free flaps are feasible and effective in experienced hands but require a paradigm shift in planning and execution. Success depends on meticulous multidisciplinary assessment, image-guided vascular mapping, technical adaptability, and a patient-centered approach that balances reconstructive ambition with realistic functional goals.