Literature DB >> 28975248

Use of Condensed Nanofat Combined With Fat Grafts to Treat Atrophic Scars.

Zichun Gu1, Yirun Li1, Hua Li1.   

Abstract

IMPORTANCE: In addition to the physical deformity, there is often great psychological burden of facial scars for patients. In this study, we use condensed nanofat combined with fat grafts in a novel technique to improve atrophic facial scars by raising both the surface and the bottom of the affected area.
OBJECTIVE: To assess whether the use of condensed nanofat combined with fat grafting can be effective in treating atrophic facial scars from both an aesthetic and a functional perspective. DESIGN, SETTING, AND PARTICIPANTS: In this prospective case series of 20 patients with 25 atrophic facial scars, each scar was treated with condensed nanofat combined with fat grafts at the Sir Run Run Shaw Hospital, Zhejiang University, Hangzhou, Zhejiang, China. Postoperative results were evaluated by the patients themselves and by 3 senior plastic surgeon observers. MAIN OUTCOMES AND MEASURES: Multiple preoperative and postoperative examinations included the use of the Patient and Observer Scar Assessment Scale (POSAS) to evaluate both the functional and aesthetic aspects of the atrophic facial scars. Punch biopsy specimens were stained for the presence of melanin, elastic fibers, and cytokeratin (CK) 14 and CK19. Images were analyzed using ImageJ software, and the data were analyzed by paired sample t test.
RESULTS: Twenty patients (6 men and 14 women; mean age, 38.25 years; age range, 21-62 years) with a total of 25 atrophic facial scars were treated between March 2014 and December 2016. The patients' mean (SD) scar assessment scores were significantly decreased postoperatively in the final examination for color, 6.40 (0.51) vs 2.40 (0.24) (P < .001); stiffness, 7.20 (0.37) vs 3.20 (0.20) (P < .001); thickness, 5.80 (0.73) vs 1.80 (0.37) (P = .001); and irregularity, 5.20 (0.49) vs 2.20 (0.37) (P = .003); and the observers' scores were also significantly decreased for pigmentation, 4.40 (0.51) vs 2.00 (0.32) (P = .004); thickness, 3.00 (0.32) vs 1.80 (0.20) (P = .03); relief, 4.40 (0.51) vs 2.40 (0.24) (P = .003); and pliability, 4.20 (0.37) vs 1.40 (0.24) (P < .001). In the final follow-up examinations, a significantly improved overall POSAS score was found among both patients, 28.80 (1.02) vs 12.20 (0.80) (P < .001), and observers, 18.00 (0.71) vs 9.20 (0.37) (P = .001). Enhancement of Fontana-Masson staining of melanin in the basal cell layer was observed postoperatively, and a significant postoperative change was detected for the mean (SD) values of average optical density from the preoperative measurement, 0.671 (0.083) vs 0.844 (0.110) (P = .01). The sebaceous glands and sweat glands that were not found in the preoperative images were seen postoperatively by immunohistochemical staining with CK14 and CK19. CONCLUSIONS AND RELEVANCE: Our preliminary clinical and pathological results indicate that the use of condensed nanofat combined with fat grafts may be an effective approach to treating atrophic facial scars from both an aesthetic and a functional perspective. LEVEL OF EVIDENCE: 4.

Entities:  

Mesh:

Year:  2018        PMID: 28975248      PMCID: PMC5885968          DOI: 10.1001/jamafacial.2017.1329

Source DB:  PubMed          Journal:  JAMA Facial Plast Surg        ISSN: 2168-6076            Impact factor:   4.611


  45 in total

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5.  Facial augmentation with structural fat grafting.

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6.  The patient and observer scar assessment scale: a reliable and feasible tool for scar evaluation.

Authors:  Lieneke J Draaijers; Fenike R H Tempelman; Yvonne A M Botman; Wim E Tuinebreijer; Esther Middelkoop; Robert W Kreis; Paul P M van Zuijlen
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7.  Autologous fat graft in scar treatment.

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9.  Intralesional injection of adipose-derived stem cells reduces hypertrophic scarring in a rabbit ear model.

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Journal:  Aesthetic Plast Surg       Date:  2021-02-26       Impact factor: 2.326

2.  The investigation of the efficacy and safety of stromal vascular fraction in the treatment of nanofat-treated acne scar: a randomized blinded controlled clinical trial.

Authors:  Elham Behrangi; Sepideh Moradi; Mohammadreza Ghassemi; Azadeh Goodarzi; Amirreza Hanifnia; Sona Zare; Maryam Nouri; Abbas Dehghani; Azadeh Seifadini; Mohammad Ali Nilforoushzadeh; Masoumeh Roohaninasab
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3.  Efficacy and Safety of Autologous Fat Transfer in Facial Reconstructive Surgery: A Systematic Review and Meta-analysis.

Authors:  Todor K Krastev; Jip Beugels; Juliette Hommes; Andrzej Piatkowski; Irene Mathijssen; Rene van der Hulst
Journal:  JAMA Facial Plast Surg       Date:  2018-09-01       Impact factor: 4.611

Review 4.  Scar Revisions.

Authors:  Anna Skochdopole; Rami P Dibbs; Shayan M Sarrami; Robert F Dempsey
Journal:  Semin Plast Surg       Date:  2021-06-08       Impact factor: 2.314

5.  Invited Response on: Comment on: "Oral and Maxillofacial Autologous Fat Transplantation: History, Clinical Application Status and Research Progress".

Authors:  Qiang Niu; Junrui Zhang; Bin Lu; Kai Zhang; Zhiye Li; Weiwei Guo; Huan Chen; Yunpeng Li
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6.  Fat extract promotes angiogenesis in a murine model of limb ischemia: a novel cell-free therapeutic strategy.

Authors:  Ziyou Yu; Yizuo Cai; Mingwu Deng; Dong Li; Xiangsheng Wang; Hongjie Zheng; Yuda Xu; Wei Li; Wenjie Zhang
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7.  Fat extract improves fat graft survival via proangiogenic, anti-apoptotic and pro-proliferative activities.

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8.  Protective Effect of Fat Extract on UVB-Induced Photoaging In Vitro and In Vivo.

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Journal:  Oxid Med Cell Longev       Date:  2019-08-18       Impact factor: 6.543

Review 9.  Nanofat: A therapeutic paradigm in regenerative medicine.

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10.  Systematic review: Advances of fat tissue engineering as bioactive scaffold, bioactive material, and source for adipose-derived mesenchymal stem cells in wound and scar treatment.

Authors:  Pietro Gentile; Aris Sterodimas; Claudio Calabrese; Simone Garcovich
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  10 in total

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