Amniotic membrane grafts (AMGs) are commonly used to treat a variety of ophthalmologic conditions. Complications exist with permanent tarsorrhaphies, including the risk of re-fusion following tarsorrhaphy separation. We report a novel application of amniotic graft in lieu of skin grafts to protect the exposed marginal surface during the initial re-epithelialization period following release of a permanent tarsorrhaphy. We present a 24-year-old man who sustained an 80% total body surface area burn from a motor vehicle accident 16 months prior to presentation at our Oculoplastic service for evaluation of residual lagophthalmos. His original permanent tarsorrhaphies were removed; however, re-fusion occurred temporally in both sides. During a second attempt, AMGs were secured over the eyelid margins, leading to a successful tarsorrhaphy takedown without re-fusion. Periocular burn injuries present particular challenges, as cicatricial changes continue to evolve and viable skin graft areas diminish with each successive graft. In the setting of recurrent auto-tarsorrhaphy, the AMG has shown to be a viable alternative to standard skin grafting. This case demonstrates excellent results in a skin graft sparing procedure that is effective and efficient. Amniotic membrane grafting reduces morbidity by foregoing skin graft donor sites and can achieve similar functional and cosmetic results to standard skin grafting with reduced overall surgical time. As such, AMGs have the potential to supplant standard skin grafting in cases of recurrent auto-tarsorrhaphy, particularly in the setting of diminished available healthy skin tissue.
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http://dx.doi.org/10.1177/2515841420971927 | DOI Listing |
J Indian Soc Periodontol
December 2024
VISTA Institute for Therapeutic Innovations, California, USA.
Oral squamous cell papilloma is a benign proliferation of the stratified squamous epithelium, associated with the human papillomavirus (HPV). The clinical manifestation includes papillary or verrucous exophytic mass. Complete excision of the lesion, including normal margins, followed by histopathological examination is the treatment of choice.
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November 2024
Ophthalmology, Tokyo Women's Medical University Adachi Medical Center, Tokyo, JPN.
We report a case of sympathetic ophthalmia that developed in the fellow eye following therapeutic corneal transplantation and amniotic membrane transplantation for corneal perforation caused by corneal ulceration. A 62-year-old man presented with discharge, lacrimation, and decreased visual acuity in the left eye. He was diagnosed with a corneal ulcer and treated with antimicrobial agents, but corneal epithelial erosion persisted, leading to nontraumatic corneal perforation.
View Article and Find Full Text PDFJ Obstet Gynaecol Can
December 2024
Department of Obstetrics and Gynecology, Galilee Medical Center, Nahariya, Israel; Azrieli Faculty of Medicine, Bar Ilan University, Safed, Israel.
Aim: Maternal colonization by Enterobacteriaceae that produce extended-spectrum β-lactamases (ESBL-E) has risen, and the antimicrobial resistance of ESBL-E is significant. We aimed to evaluate the rates of ESBL-E colonization among women with preterm premature rupture of membranes (PPROM) and of maternal-neonatal vertical transmission. We also aimed to compare obstetrical and neonatal complications among ESBL-E positive versus negative maternal colonization in pregnancies complicated by PPROM.
View Article and Find Full Text PDFIndian J Ophthalmol
December 2024
Department of Ophthalmology, Military Hospital, Panagarh, West Bengal, India.
We describe a novel technique for recurrent pterygium and assess the advantage of properties of extended tenonectomy, amniotic membrane transplantation, and limbal epithelial transplantation in terms of recurrence rate, postoperative symptoms, postoperative orthoptics, and other complications. A total of nine eyes with recurrent pterygium underwent PERMISLET, i.e.
View Article and Find Full Text PDFBiomimetics (Basel)
December 2024
Division of Endodontics, Columbia University College of Dental Medicine, New York, NY 10032, USA.
The dehydrated human amnion-chorion membranes (dHACMs) derived from the human placenta have emerged as a promising biomaterial for dental pulp regeneration owing to their unique biological and structural properties. The purpose of this review is to explore the potentials of dHACMs in dental pulp tissue engineering, focusing on their ability to promote cellular proliferation, differentiation, angiogenesis, and neurogenesis. dHACMs are rich in extracellular matrix proteins and growth factors such as TGF-β1, FGF2, and VEGF.
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