REFERENCES

1. Balzano FL, Hudak SJ. Military genitourinary injuries: past, present, and future. Transl Androl Urol 2018;7:646-52.

2. Ismail Aly ME, Huang T. Management of burn injuries of the perineum. In: Herndon D, editor. London: Elsevier; 2018. pp. 609-17.

3. Lehnhardt M, Wallner C, Daigeler A. Reconstruction of the male genitals after Fournier gangrene. In: Mirastschijski U, Remmel E, editors. Berlin: Springer; 2019. pp. 253-63.

4. World Health Organization. Male circumcision: global trends and determinants of prevalence, safety and acceptability. Geneva: IWHO Library Cataloguing-in-Publication Data; 2007. Avaliable from: https://apps.who.int/iris/bitstream/handle/10665/43749/9789241596169_eng.pdf?sequence=1. [Last accessed on 17 Nov 2020].

5. Mirastschijski U, Schwab I, Coger V, et al. Lung surfactant accelerates skin wound healing: a translational study with a randomized clinical phase I study. Sci Rep 2020;10:2581.

6. Correa-Gallegos D, Jiang D, Christ S, et al. Patch repair of deep wounds by mobilized fascia. Nature 2019;576:287-92.

7. Jiang D, Correa-Gallegos D, Christ S, et al. Two succeeding fibroblastic lineages drive dermal development and the transition from regeneration to scarring. Nat Cell Biol 2018;20:422-31.

8. Mirastschijski U, Schwenke C, Schwab I, Buchhorn A, Schmiedl A. Midline raphe scroti artery flap for penile shaft reconstruction. Plast Aesthet Res 2020;7:1-13.

9. Mirastschijski U, Remmel E. Intimchirurgie. Berlin: Springer Verlag; 2019.

10. Gilliver SC, Ashworth JJ, Ashcroft GS. The hormonal regulation of cutaneous wound healing. Clin Dermatol 2007;25:56-62.

11. Gilliver SC, Ashcroft GS. Sex steroids and cutaneous wound healing: the contrasting influences of estrogens and androgens. Climacteric 2007;10:276-88.

12. Pomari E, Dalla Valle L, Pertile P, Colombo L, Thornton MJ. Intracrine sex steroid synthesis and signaling in human epidermal keratinocytes and dermal fibroblasts. FASEB J 2015;29:508-24.

13. Emmerson E, Campbell L, Ashcroft GS, Hardman MJ. Unique and synergistic roles for 17beta-estradiol and macrophage migration inhibitory factor during cutaneous wound closure are cell type specific. Endocrinology 2009;150:2749-57.

14. Crompton R, Williams H, Ansell D, et al. Oestrogen promotes healing in a bacterial LPS model of delayed cutaneous wound repair. Lab Invest 2016;96:439-49.

15. Wilkinson HN, Hardman MJ. The role of estrogen in cutaneous ageing and repair. Maturitas 2017;103:60-4.

16. Portman DJ, Gass ML. Vulvovaginal atrophy terminology consensus conference p. genitourinary syndrome of menopause: new terminology for vulvovaginal atrophy from the international society for the study of women’s sexual health and the north american menopause society. Maturitas 2014;79:349-54.

17. Santoro N, Komi J. Prevalence and impact of vaginal symptoms among postmenopausal women. J Sex Med 2009;6:2133-42.

18. Rzepecki AK, Murase JE, Juran R, Fabi SG, McLellan BN. Estrogen-deficient skin: the role of topical therapy. Int J Womens Dermatol 2019;5:85-90.

19. Nappi RE, Martini E, Cucinella L, et al. Addressing vulvovaginal atrophy (VVA)/genitourinary syndrome of menopause (GSM) for healthy aging in women. Front Endocrinol (Lausanne) 2019;10:561.

20. Gallant-Behm CL, Du P, Lin SM, Marucha PT, DiPietro LA, Mustoe TA. Epithelial regulation of mesenchymal tissue behavior. J Invest Dermatol 2011;131:892-9.

21. Schill S, Panfilov DE, Mirastschijski U. Intimchirurgie beim mann. In: Mirastschijski U, Remmel E, editors. Berlin: Springer; 2019. pp. 49-68.

22. Lemperle G, Casavantes L. Penisvergrößerung durch Injektion von PMMA-Mikrosphären. In: Mirastschijski U, Remmel E, editors. Berlin: Springer; 2019. pp. 79-89.

23. Lemperle G, Elist JJ, Jethon C. Penisvergrößerung mit dem penuma-silikon-implantat. In: Mirastschijski U, Remmel E, editors. Berlin: Springer; 2019. pp. 69-78.

24. Lee A, Fischer G. Diagnosis and treatment of vulvar lichen sclerosus: an update for dermatologists. Am J Clin Dermatol 2018;19:695-706.

25. Clouston D, Hall A, Lawrentschuk N. Penile lichen sclerosus (balanitis xerotica obliterans). BJU Int 2011;108 Suppl 2:14-9.

26. Kirtschig G. Lichen sclerosus-presentation, diagnosis and management. Dtsch Arztebl Int 2016;113:337-43.

27. Terlou A, Santegoets LA, van der Meijden WI, et al. An autoimmune phenotype in vulvar lichen sclerosus and lichen planus: a Th1 response and high levels of microRNA-155. J Invest Dermatol 2012;132:658-66.

28. Hinz B, McCulloch CA, Coelho NM. Mechanical regulation of myofibroblast phenoconversion and collagen contraction. Exp Cell Res 2019;379:119-28.

29. Atmoko W, Shalmont G, Situmorang GR, Wahyudi I, Tanurahardja B, Rodjani A. Abnormal dartos fascia in buried penis and hypospadias: evidence from histopathology. J Pediatr Urol 2018;14:536.e1-7.

30. Canady J, Karrer S, Fleck M, Bosserhoff AK. Fibrosing connective tissue disorders of the skin: molecular similarities and distinctions. J Dermatol Sci 2013;70:151-8.

31. Mirastschijski U. Genital scars. In: Téot L, Mustoe TA, Middelkoop E, Gauglitz G, editors. London: Springer International Publishing; 2020. pp. 1-640.

32. Mirastschijski U, Schwenke C, Schmiedl A. Plastisch-chirurgische rekonstruktion des männlichen genitales. In: Mirastschijski U, Remmel E, editors. Berlin: Springer; 2019. pp. 189-206.

33. Mirastschijski U. Buried penis. In: Mirastschijski U, Remmel E, editors. Berlin: Springer; 2019. pp. 107-14.

34. Mirastschijski U. Classification and treatment of the adult buried penis. Ann Plast Surg 2018;80:653-9.

35. Schaff J, Morath S, Mirastschijski U. Operative techniken bei mann-zu-frau-transsexualität. In: Mirastschijski U, Remmel E, editors. Berlin: Springer; 2019. pp. 294-303.

36. Zouboulis CC, Chen WC, Thornton MJ, Qin K, Rosenfield R. Sexual hormones in human skin. Horm Metab Res 2007;39:85-95.

37. Choudhry R, Hodgins MB, Van der Kwast TH, Brinkmann AO, Boersma WJ. Localization of androgen receptors in human skin by immunohistochemistry: implications for the hormonal regulation of hair growth, sebaceous glands and sweat glands. J Endocrinol 1992;133:467-75.

38. Thornton MJ. Estrogens and aging skin. Dermatoendocrinol 2013;5:264-70.

39. Matthews N, Wong V, Brooks J, Kroumpouzos G. Genital diseases in the mature woman. Clin Dermatol 2018;36:208-21.

40. Boero V, Brambilla M, Sipio E, et al. Vulvar lichen sclerosus: a new regenerative approach through fat grafting. Gynecol Oncol 2015;139:471-5.

41. Fredman R, Edkins RE, Hultman CS. Fat grafting for neuropathic pain after severe burns. Ann Plast Surg 2016;76 Suppl 4:S298-303.

42. Prantl L, Rennekampff HO, Giunta RE, et al. Current perceptions of lipofilling on the basis of the new guideline on “autologous fat grafting”. Handchirurgie Mikrochirurgie Plastische Chirurgie 2016;48:330-6.

43. Clauser LC, Tieghi R, Galie M, Carinci F. Structural fat grafting: facial volumetric restoration in complex reconstructive surgery. J Craniofac Surg 2011;22:1695-701.

44. Jaspers ME, Brouwer KM, van Trier AJ, Groot ML, Middelkoop E, van Zuijlen PP. Effectiveness of autologous fat grafting in adherent scars: results obtained by a comprehensive scar evaluation protocol. Plast Reconstr Surg 2017;139:212-9.

45. Larjava H, Wiebe C, Gallant-Behm C, Hart DA, Heino J, Hakkinen L. Exploring scarless healing of oral soft tissues. J Can Dent Assoc 2011;77:b18.

46. Mak K, Manji A, Gallant-Behm C, et al. Scarless healing of oral mucosa is characterized by faster resolution of inflammation and control of myofibroblast action compared to skin wounds in the red Duroc pig model. J Dermatol Sci 2009;56:168-80.

47. DiPietro LA. Angiogenesis and wound repair: when enough is enough. J Leukoc Biol 2016;100:979-84.

48. Turabelidze A, Guo S, Chung AY, et al. Intrinsic differences between oral and skin keratinocytes. PLoS One 2014;9:e101480.

49. Glim JE, van Egmond M, Niessen FB, Everts V, Beelen RH. Detrimental dermal wound healing: what can we learn from the oral mucosa? Wound Repair Regen 2013;21:648-60.

50. Zasloff M. Innate immunity, antimicrobial peptides, and protection of the oral cavity. Lancet 2002;360:1116-7.

51. Yarbrough VL, Winkle S, Herbst-Kralovetz MM. Antimicrobial peptides in the female reproductive tract: a critical component of the mucosal immune barrier with physiological and clinical implications. Hum Reprod Update 2015;21:353-77.

52. Lai Y, Gallo RL. AMPed up immunity: how antimicrobial peptides have multiple roles in immune defense. Trends Immunol 2009;30:131-41.

53. Chung WO, Dale BA. Innate immune response of oral and foreskin keratinocytes: utilization of different signaling pathways by various bacterial species. Infect Immun 2004;72:352-8.

54. Mirastschijski U, Bugdahl R, Rollman O, Johansson BR, Agren MS. Epithelial regeneration from bioengineered skin explants in culture. Br J Dermatol 2006;154:42-9.

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