Purpose: Amniotic membrane (AM) transplantation is an accepted procedure in ocular surgery. However, little is known of the interdonor and intradonor variability within the membrane. In addition, the effects of the methods of processing, storage, and preoperative preparation on the membrane are not fully elucidated. The purpose of this study was to use TGF-beta as an example to investigate interdonor and intradonor variability and to determine the effect of "handling " on TGF-beta1 within fresh, processed and stored, and transplantation-ready AM (TRAM).
Methods: Seventeen human AMs, both fresh and handled, were analyzed for TGF-beta1 by real-time polymerase chain reaction, immunohistochemistry, SDS-PAGE, and Western blotting.
Results: TGF-beta1 was the highest normalized expressed isoform of TGF-beta in all samples, but it varied between membranes of different donors and at different sites within the same membrane. The highest concentration was noted in the spongy layer. Removal of the spongy layer successfully removed the bulk of TGF-beta1 from TRAM. Latency-associated protein (LAP) and a latent TGF-beta-binding protein (LTBP) were also detected.
Conclusion: TGF-beta1 is present in various regulatory forms in the AM. A degree of intermembrane and intramembrane variation is modified by handling. Unless a standardized protocol is adopted that delivers a membrane with consistent constituents, clinical outcomes may vary and comparisons may be invalid.
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http://dx.doi.org/10.1167/iovs.05-1415 | DOI Listing |
BMJ Case Rep
January 2025
Cornea, Dr Shroff's Charity Eye Hospital, New Delhi, India
A woman in her 50s underwent simple limbal epithelial transplantation (SLET) in the left eye for chemical injury with total limbal stem cell deficiency. A seroma, a hitherto unreported complication of the procedure was noted on the 10th postoperative day. It was associated with an accumulation of inflammatory cells and exudates in the inferior part of the amniotic membrane resembling a hypopyon.
View Article and Find Full Text PDFTransplant Proc
January 2025
Department of Perinatology, Istanbul Zeynep Kamil Maternity and Children's Diseases Health Training and Research Center, University of Health Sciences, Istanbul, Turkey. Electronic address:
Objectives: This study aimed to evaluate the effect of placental membrane covering of the omphalocele sac on the healing of giant omphaloceles requiring silo repair that could not be treated primarily.
Methods: This prospective study was performed between October 2021 and October 2023 with the approval of our hospital's ethics committee. All pregnant women diagnosed with prenatal giant omphalocele were informed that their own placenta could be used for omphalocele repair if necessary, and their consent was obtained.
Cell Tissue Bank
January 2025
Institute of Tissue Banking and Biomaterial Research, Atomic Energy Research Establishment (AERE), Savar, Dhaka, 1349, Bangladesh.
In the quest for an ideal wound healing material, human amniotic membrane (AM), tilapia skin collagen (TSC), and Centella asiatica (CA) have been studied separately for their healing potential. In this study, we formulated AM, TSC, and CA gel and studied their competency and wound healing efficacy in vivo. Gel was formulated using AM, TSC, CA, Carbopol 934, acrylic acid, glycerine, and triethanolamine and physicochemical properties e.
View Article and Find Full Text PDFStem Cells Cloning
January 2025
Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmacy, Universitas Padjadjaran, Sumedang, 45363, Indonesia.
Objective: Chronic wounds are a common clinical problem that necessitate the exploration of novel regenerative therapies. We report a method to investigate the in vitro wound healing capacity of an innovative biomaterial, which is based on amniotic membrane-derived stem cells (AMSCs) embedded in an alginate hydrogel matrix. The aim of this study was to prepare an sodium alginate-based hydrogel, cross-linked calcium chloride (CaCl with the active ingredient AMSC (AMSC/Alg-H) and to evaluate its in vitro effectiveness for wound closure.
View Article and Find Full Text PDFNarra J
December 2024
Department of Plastic Reconstructive and Aesthetic Surgery, Faculty of Medicine, Universitas Airlangga, Surabaya, Indonesia.
Previous studies have explored nanofat stimulating tissue regeneration and maturation, promoting remodeling through its rich content of growth factors and stem cells; however, comprehensive data on its use in full-thickness wounds remains limited. The aim of this study was to evaluate the effectiveness of combining nanofat with freeze-dried human amniotic membrane (FDHAM) for treating full-thickness wounds in a rabbit model. An animal experimental study using a post-test control group design was conducted.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!