Literature DB >> 27200242

Hyperbaric Oxygen following Bilateral Skin-sparing Mastectomies: A Case Report.

Libby R Copeland-Halperin1, Sarah B Bruce1, Ali N Mesbahi1.   

Abstract

We describe a case in which hyperbaric oxygen therapy was used to salvage ischemic skin flaps after nipple-sparing mastectomy.

Entities:  

Year:  2016        PMID: 27200242      PMCID: PMC4859239          DOI: 10.1097/GOX.0000000000000657

Source DB:  PubMed          Journal:  Plast Reconstr Surg Glob Open        ISSN: 2169-7574


A 71-year-old woman with hypothyroidism, BRCA-2 gene mutation, and previous bilateral breast cancer presented for prophylactic bilateral nipple-sparing mastectomies and reconstruction with implantation of bilateral silicone elastomer tissue expanders and use of SERI surgical scaffold (Allergan, Medford, Mass.). There was previous left partial mastectomy, radiation, and endocrine therapy with tamoxifen and an aromatase inhibitor for invasive ductal and lobular carcinoma and ductal carcinoma in situ, and later right partial mastectomy for estrogen and progesterone receptor positive ductal carcinoma in situ. The final pathology was negative for malignancy. During reconstruction, the right breast developed early signs of ischemia, prompting instillation of only 50 mL normal saline, approximately 20% of their capacity. By the first postoperative day, ischemic necrosis developed bilaterally (Fig. 1). Hyperbaric oxygen therapy was initiated at 2.0 atmospheres for 120 minutes on day 1, followed by 90-minute sessions twice daily for 2 days and 120 minutes daily for the remaining treatments. There was substantial improvement in the appearance of the flaps after 15 sessions (Fig. 2), when treatment stopped because of wheezing and oropharyngeal mucosal dryness. Beginning 10 weeks postoperatively [6 weeks after completing hyperbaric oxygen (HbO) therapy], the tissue expanders were filled in 40 mL increments to a total volume of 250 mL. She underwent implant exchange 10 months postoperatively (Fig. 3).
Fig. 1.

Postoperative day 1. Right breast flap showing significant ischemia.

Fig. 2.

Interval improvement in ischemia at (A) 7 weeks postoperatively and 4 weeks after completion of HbO therapy and (B) 6 months postoperatively and 5.5 months after HbO therapy.

Fig. 3.

One year after initial surgery and 10 months after HbO therapy.

Postoperative day 1. Right breast flap showing significant ischemia. Interval improvement in ischemia at (A) 7 weeks postoperatively and 4 weeks after completion of HbO therapy and (B) 6 months postoperatively and 5.5 months after HbO therapy. One year after initial surgery and 10 months after HbO therapy.

DISCUSSION

Up to 30% of patients undergoing immediate breast reconstruction after mastectomy develop partial loss of skin flap viability,[1,2] and this delays adjuvant therapy for malignancy, requires additional surgical procedures, and compromises aesthetic outcomes. Tissue hypoxia also impairs leukocyte bactericidal activity and delays healing. Compromised tissue may respond favorably to hyperbaric oxygen therapy[3,4] through various mechanisms, including angiogenesis, increased tissue levels of reactive oxygen and nitrogen species, inhibition of β2 integrins, limiting production of inflammatory cytokines, enhancing endogenous antimicrobial activity, and promoting collagen production by fibroblasts.[1,5] Treatment protocols vary but typically involve 60- to 120-minute sessions of high concentration oxygen delivery by face mask, tent, or endotracheal tube at pressures of 2 to 2.5 atmospheres, raising systemic arterial oxygen tension to nearly 1500 torr.[6,7] A search of the English literature identified only 2 earlier case reports of hyperbaric oxygen therapy to prevent necrosis of ischemic skin flaps after mastectomy. One involved a woman with BRCA-2 gene mutation who developed erythematous wound dehiscence 1 day after bilateral mastectomy and implant reconstruction. After 20 sessions of HbO therapy initiated on postoperative day 4, the patient developed hyperoxic seizure, which is treated with midazolam. The authors reported improvement in skin flap viability, and after debridement of necrotic tissue, the outcome was satisfactory.[1] The other case involved a woman with antecedent breast irradiation who developed ischemia after a skin-sparing mastectomy.[2] The skin flap appeared compromised during the reconstructive phase, HbO therapy was initiated 6 hours postoperatively, and signs of ischemia abated after 5 sessions over 3 days. There is little evidence regarding the optimum timing of HbO therapy for this indication. The few case reports available suggest that acute wounds respond best when treatment is initiated early, but there have been no controlled studies. Among the unanswered questions is whether preoperative HbO therapy reduces the risk of postoperative tissue necrosis in patients with radiation-related tissue injury. Complications of HbO therapy include pneumothorax and potentially fatal seizures,[6] but the risks and long-term outcomes of HbO therapy have not been adequately evaluated. Our patient, like one previously described, had breast cancer associated with a BRCA-2 gene mutation and had previously undergone breast irradiation. In all 3 cases, ischemia developed when immediate breast reconstruction was attempted after mastectomy, and the flaps survived after HbO therapy, although no information is available from comparative studies involving alternative strategies. Soft tissue injury can develop years after exposure to therapeutic radiation, leading to fibrosis or microvascular compromise.[1] Although reported infrequently, we speculate that HbO therapy might prevent skin flap necrosis and reduce the need for debridement or flap revision.

CONCLUSIONS

We describe a patient in whom bilateral skin flap ischemia developed after nipple-sparing mastectomies. Tissue expander reconstruction was successfully salvaged with HbO therapy. Clinicians should consider the potential benefits and risks of early postoperative HbO therapy in similar situations, but further research is needed to confirm the efficacy of and indications for HbO therapy after mastectomy. Such studies should also address the optimum method and timing of intervention and explore the potential prophylactic value of preoperative HbO therapy in patients at greatest risk, such as those previously exposed to adjuvant radiation therapy.
  6 in total

1.  Skin-sparing mastectomy flap ischemia salvage using urgent hyperbaric chamber oxygen therapy: a case report.

Authors:  Rafi Fredman; Itay Wise; Tali Friedman; Lior Heller; Tami Karni
Journal:  Undersea Hyperb Med       Date:  2014 Mar-Apr       Impact factor: 0.698

Review 2.  The effect of hyperbaric oxygen on compromised grafts and flaps.

Authors:  Richard C Baynosa; William A Zamboni
Journal:  Undersea Hyperb Med       Date:  2012 Jul-Aug       Impact factor: 0.698

Review 3.  Systematic review of hyperbaric oxygen therapy for the treatment of non-neurological soft tissue radiation-related injuries.

Authors:  Benjamin L Hoggan; Alun L Cameron
Journal:  Support Care Cancer       Date:  2014-03-29       Impact factor: 3.603

Review 4.  Hyperbaric oxygen for treating wounds: a systematic review of the literature.

Authors:  Chenchen Wang; Steven Schwaitzberg; Elise Berliner; Deborah A Zarin; Joseph Lau
Journal:  Arch Surg       Date:  2003-03

5.  Hyperbaric oxygen treatment for skin flap necrosis after a mastectomy: a case study.

Authors:  Joline F Mermans; Stefania Tuinder; Maarten F von Meyenfeldt; Rene R W J van der Hulst
Journal:  Undersea Hyperb Med       Date:  2012 May-Jun       Impact factor: 0.698

Review 6.  Hyperbaric oxygen and wound healing.

Authors:  William A Zamboni; Leslie K Browder; John Martinez
Journal:  Clin Plast Surg       Date:  2003-01       Impact factor: 2.017

  6 in total
  4 in total

Review 1.  Hyperbaric Oxygen Therapy for the Compromised Graft or Flap.

Authors:  Ashish Francis; Richard C Baynosa
Journal:  Adv Wound Care (New Rochelle)       Date:  2017-01-01       Impact factor: 4.730

2.  Perioperative hyperbaric oxygen treatment and postoperative complications following secondary breast reconstruction after radiotherapy: a case-control study of 45 patients.

Authors:  Eva L Meier; Stefan Hummelink; Nina Lansdorp; Onno Boonstra; Dietmar Jo Ulrich
Journal:  Diving Hyperb Med       Date:  2021-09-30       Impact factor: 1.228

3.  A critical look at the effect of hyperbaric oxygen on the ischemic nipple following nipple sparing mastectomy and implant based reconstruction: a case series.

Authors:  John Shuck; Neil O'Kelly; Matthew Endara; Maurice Y Nahabedian
Journal:  Gland Surg       Date:  2017-12

4.  Hyperbaric oxygen treatment for mastectomy flap ischaemia: A case series of 50 breasts.

Authors:  Nicole E Spruijt; Lisette T Hoekstra; Johan Wilmink; Maarten M Hoogbergen
Journal:  Diving Hyperb Med       Date:  2021-03-31       Impact factor: 0.887

  4 in total

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