Miller SF, Bessey P, Lentz CW, Jeng JC, Schurr M, Browning S. ABA NBR committee. National burn repository 2007 report: a synopsis of the 2007 call for data. J Burn Care Res. 2008;29:862–70.
Article
Google Scholar
Hamid AAA, Soliman MF. Effect of topical Aloe vera on the process of healing of full-thickness skin burn: a histological and immunohistochemical study. J of Histology and Histopathology. 2015;2:3.
Article
Google Scholar
He S, Alonge O, Agrawal P, et al. Epidemiology of burns in rural Bangladesh: an update. tchounwou PB edt. Int. J. Environ. Res. Public Health. 2017;14:381.
Article
Google Scholar
Mashreky SR, Rahman A, Chowdhury SM, Giashuddin S, SvanstrOm L, Linnan M, Shafinaz S, Uhaa IJ, Rahman F. Epidemiology of childhood burn: yield of largest community based injury survey in Bangladesh. Burns. 2008;34:856–62.
CAS
Article
Google Scholar
Atiyeh B, Masellis A, Conte C. Optimizing burn treatment in developing low- and middle-income countries with limited health care resources (part 1). Ann Burns Fire Disasters. 2009;22:121–5.
CAS
PubMed
PubMed Central
Google Scholar
Tehrani S, Lotfi P, Tehrani S, et al. Healing effect of sesame ointment on second-degree burn wound in rats. Galen Medical J. 2016;5:56–62.
Google Scholar
Gurtner GC, Werner S, Barrandon Y, Longaker MT. Wound repair and regeneration. Nature. 2008;453:314–21.
CAS
Article
Google Scholar
Tiwari VK. Burn wound: how it differs from other wounds? Indian J of Plastic Surgery. 2012;45:364.
CAS
Article
Google Scholar
Werner S, Krieg T, Smola H. Keratinocyte–fibroblast interactions in wound healing. J of Invest Dermatol. 2007;127(5):998–1008.
CAS
Article
Google Scholar
Pastar I, Stojadinovic O, Yin NC, Ramirez H, Nusbaum AG, Sawaya A, Tomic-Canic M. Epithelialization in wound healing: a comprehensive review. Adv in Wound Care. 2014;3:445–64.
Article
Google Scholar
Guo S, Dipietro LA. Factors affecting wound healing. J Dent Res. 2010;89:219–29.
CAS
Article
Google Scholar
Xue M, Jackson CJ. Extracellular matrix reorganization during wound healing and its impact on abnormal scarring. Adv Wound Care (New Rochelle). 2015;4:119–36.
Article
Google Scholar
Ter Horst B, Chouhan G, Moiemen NS, Grover LM. Advances in keratinocyte delivery in burn wound care. Adv Drug Deliv Rev. 2017;S0169-409X(17):30096–0.
Google Scholar
Lootens L, Brusselaers N, Beele H, Monstrey S. Keratinocytes in the treatment of severe burn injury: an update. Int Wound J. 2013;10:6–12.
Article
Google Scholar
Yang JD, Choi DS, Cho YK, Kim TK, Lee JW, Choi KY, Chung HY, Cho BC, Byun JS. Effect of amniotic fluid stem cells and amniotic fluid cells on the wound healing process in a white rat model. Arch Plast Surg. 2013;40:496–504.
Article
Google Scholar
Skardal A, Mack D, Kapetanovic E, et al. Bioprinted amniotic fluid-derived stem cells accelerate healing of large skin wounds. Stem Cells Transl Med. 2012;1:792–802.
CAS
Article
Google Scholar
Davis JW. Skin transplantation with a review of 550 cases at the Johns Hopkins Hospital. Johns Hopkins Med J. 1910;15:307.
Google Scholar
Bujang-Safawi E, Halim AS, et al. Dried irradiated human amniotic membrane as a biological dressing for facial burns-a 7-year case series. Burns. 2010;36:876–82.
CAS
Article
Google Scholar
Tehrani FA, Ahmadiani A, et al. The effects of preservation procedures on antibacterial property of amniotic membrane. Cryobiology. 2013;67:293–8.
CAS
Article
Google Scholar
Riau AK, Beuerman RW, Lim LS, et al. Preservation, sterilization and de-epithelialization of human amniotic membrane for use in ocular surface reconstruction. Biomaterials. 2010;31:216–25.
CAS
Article
Google Scholar
Higa K, Shimmura S, et al. Hyaluronic acid-CD44 interaction mediates the adhesion of lymphocytes by amniotic membrane stroma. Cornea. 2005;24:206–12.
Article
Google Scholar
Shimazaki J, Shinozaki N, Tsubota K. Transplantation of amniotic membrane and limbal autograft for patients with recurrent pterygium associated with symblepharon. Br J Ophthalmology. 1998;82:235–40.
CAS
Article
Google Scholar
Solomon A, Rosenblatt M, Monroy D. Suppression of interleukin 1 alpha and interleukin 1 beta in the human limbal epithelial cells cultured on the amniotic membrane stromal matrix. Br J Ophthalmol. 2001;85:444–9.
CAS
Article
Google Scholar
Murphy SV, Skardal A, Song L, et al. Solubilized amnion membrane hyaluronic acid hydrogel accelerates full-thickness wound healing. Stem Cells Transl Med. 2017;6:2020–32.
CAS
Article
Google Scholar
Biswas TK, Mukherjee B. Plant medicines of Indian origin for wound healing activity: a review. The Int J of Lower Extremity Wounds. 2003;2:25–39.
Article
Google Scholar
Khan AW, Kotta S, Ansari SH, et al. Formulation development, optimization and evaluation of Aloe vera gel for wound healing. Pharmacogn Mag. 2013;9:S6–S10.
Article
Google Scholar
Ajmera N, Chatterjee A, Goyal V. Aloe vera: It's effect on gingivitis. J of Ind Society of Periodontology. 2013;17:435–8.
Article
Google Scholar
Chithra R, Sajithlal GB, Chandrakasan G. Influence of Aloe vera on collagen characteristics in healing dermal wounds in rats. Mol Cell Biochem. 1998;181:71–6.
CAS
Article
Google Scholar
Heggers JP, Kucukcelebi A, Listengarten D, Stabenau J, Ko F, Broemeling LD, Robson MC, Winters WD. Beneficial effect of aloe on wound healing in an excisional wound model. J Altern Complement Med. 1996;2:271–7.
CAS
Article
Google Scholar
Khorasani G, Hosseinimehr SJ, Azadbakht M, Zamani A, Mahdavi MR. Aloe versus silver sulfadiazine creams for second-degree burns: a randomized controlled study. Surg Today. 2009;39(7):587–91.
Article
Google Scholar
Akhoondinasab MR, Akhoondinasab M, Saberi M. Comparison of healing effect of Aloe vera extract and silver sulfadiazine in burn injuries in experimental rat model. World J of Plastic Surgery. 2014;3:29–34.
Google Scholar
Hirsch T, Rothoeft T, Teig N, Bauer JW, Pellegrini G, De Rosa L, Scaglione D, Reichelt J, et al. Regeneration of the entire human epidermis using transgenic stem cells. Nature. 2017;551:327–32.
CAS
Article
Google Scholar
Pereira RF, Bártolo PJ. Traditional therapies for skin wound healing. Adv in Wound Care. 2016;5:208–29.
Article
Google Scholar
Lesher AP, Curry RH, Evans J, Smith VA, Fitzgerald MT, Cina RA, Streck CJ, Hebra AV. Effectiveness of biobrane for treatment of partial-thickness burns in children. J Pediatr Surg. 2011;46:1759–63.
Article
Google Scholar
Rahmanian-Schwarz A, Beiderwieden A, Willkomm L-M, et al. A clinical evaluation of biobrane® and suprathel® in acute burns and reconstructive surgery. Burns. 2011;37:1343–8.
Article
Google Scholar
Mohammadi AA, Seyed Jafari SM, Kiasat M, Tavakkolian AR, Imani MT, Ayaz M, Tolide-ie HR. Effect of fresh human amniotic membrane dressing on graft take in patients with chronic burn wounds compared with conventional methods. Burns. 2013;39:349–53.
Article
Google Scholar
Branski LK, Herndon DN, Celis MM, Norbury WB, Masters OE, Jeschke MG. Amnion in the treatment of pediatric partial-thickness facial burns. Burns. 2008;34:393–9.
Article
Google Scholar
Akhtar N, Rahman MS, Jamil HM, Arifuzzaman M, Miah MM, Asaduzzaman SM. Tissue banking in Bangladesh: 12 years of experience (2003-2014). Cell Tissue Bank. 2016;17:189–97.
CAS
Article
Google Scholar
Khan MN, Islam JM, Khan MA. Fabrication and characterization of gelatin-based biocompatible porous composite scaffold for bone tissue engineering. J Biomed Mater Res A. 2012;100:3020–8.
Article
Google Scholar
D'Agostino A, Stellavato A, Busico T, Papa A, Tirino V, Papaccio G, La Gatta A, De Rosa M, Schiraldi C. In vitro analysis of the effects on wound healing of high- and low-molecular weight chains of hyaluronan and their hybrid H-HA/L-HA complexes. BMC Cell Biol. 2015;16:19.
Article
Google Scholar
Choi J, Kim H, Choi J, Oh SM, Park J, Park K. Skin corrosion and irritation test of sunscreen nanoparticles using reconstructed 3D human skin model. Environmental Health and Toxicology. 2014;29:e2014004.
Article
Google Scholar
Guo H-F, Ali RM, Hamid RA, Zaini AA, Khaza’ai H. A new model for studying deep partial-thickness burns in rats. Int J Burns Trauma. 2017;7:107–14.
CAS
PubMed
PubMed Central
Google Scholar
Babu B, Ravi M, Kumar BN, Sudheendra VH, Ravishankar B. Burn wound healing potential of plain ghrita and Sahasradhauta ghrita on wistar albino rats. Indian J Tradit Knowl. 2015;14:273–8.
Google Scholar
Sedighi A, Mehrabani D, Shirazi R. Histopathological evaluation of the healing effects of human amniotic membrane transplantation in third-degree burn wound injuries. Comp Clin Pathol. 2016;25:381–5.
CAS
Article
Google Scholar
Kulac M, Aktas C, Tulubas F, et al. The effects of topical treatment with curcumin on burn wound healing in rats. J of Mol Histology. 2013;44:83–90.
CAS
Article
Google Scholar
Amit S, Saraswati B, Kamalesh U, Kumud U. Formulation and evaluation of a novel herbal gel of Equisetum arvense extract. J of Pharmacognosy and Phytochemistry. 2013;1:80–6.
Google Scholar
John T. Human amniotic membrane transplantation. Ophthalmol Clin. 2003;16:43–65.
Google Scholar
Ramane SB, Syed VN, Biyani KR. Evaluation of wound healing activity of polyherbal gel–a novel herbal formulation. Int J of Res in Pharmaceutical and Biomedical Sciences. 2013;4:788–94.
Google Scholar
Das T, Debnath J, Nath B, Dash S. Formulation and evaluation of an herbal cream for wound healing activity. Int J Pharm Pharm Sci. 2014;6:693–7.
CAS
Google Scholar
Lien LT, Tho NT, Ha DM, Hang PL, Nghia PT, Thang ND. Influence of phytochemicals in piper betle Linn leaf extract on wound healing. Burns and Trauma. 2015;3:1–8.
CAS
Article
Google Scholar
Gupta A, Keshri GK, Yadav A, et al. Superpulsed (Ga-as, 904 nm) low-level laser therapy (LLLT) attenuates inflammatory response and enhances healing of burn wounds. J Biophotonics. 2014;8:489–501.
Article
Google Scholar
Pereira Ddos S, Lima-Ribeiro MH, Santos-Oliveira R, Cavalcanti Cde L, de Pontes-Filho NT, Coelho LC, Carneiro-Leão AM, Correia MT. Topical application effect of the isolectin hydrogel (Cramoll 1,4) on second-degree burns: experimental model. J Biomed Biotechnol. 2012;2012:184538.
PubMed
Google Scholar
Ramli NA, Wong TW. Sodium carboxymethylcellulose scaffolds and their physicochemical effects on partial thickness wound healing. Int J Pharm. 2011;403:73–82.
CAS
Article
Google Scholar
Broughton G, Jeffrey EJ, Attinger CE. The basic science of wound healing. Plast Reconstr Surg. 2006;117(7):12S–34S.
CAS
Article
Google Scholar
Busuioc CJ, Popescu FC, Mogoşanu GD, et al. Angiogenesis assessment in experimental third degree skin burns: a histological and immunohistochemical study. Romanian J of Morphology and Embryology. 2010;52:887–95.
Google Scholar
Zielins ER, Atashroo DA, Maan ZN, Duscher D, Walmsley GG, Hu M, et al. Wound healing: an update. Regen Med. 2014;9:817–30.
CAS
Article
Google Scholar
Yagi A, Egusa T, Arase M, Tanabe M, Tsuji H. Isolation and characterization of the glycoprotein fraction with a proliferation-promoting activity on human and hamster cells in vitro from Aloe vera gel. Planta Med. 1997;63:18–21.
CAS
Article
Google Scholar
Hashim SNM, Yusof MFH, Zahari W, Noordin KBAA, Kannan TP, Hamid SSA, Mokhtar KI, Ahmad A. Angiogenic potential of extracellular matrix of human amniotic membrane. Tissue Eng Regen Med. 2016;13:211–7.
CAS
Article
Google Scholar
Malhotra C, Jain AK. Human amniotic membrane transplantation: different modalities of its use in ophthalmology. World J Transplant. 2014;4:111–21.
Article
Google Scholar