Open AccessDissertation
Amniotic membrane as a battlefield dressing for the ocular surface
Gerald Arthur Clare
- 10 Dec 2013
7
TL;DR: A systematic review of the evidence of AM treatment of acute chemical injuries was conducted, and a framework was proposed for optimising the dried tissue through thermal, moisture sorption and surface analytical techniques.
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Abstract: The use of amniotic membrane (AM) as a dressing for ocular surface injuries has attracted the interest of the military ophthalmological community. First applied in the 1930s, the tissue is widely used today, although clinical indications for treatment are incompletely defined. While AM is most commonly stored frozen and thawed before use, dried AM is preferred for logistical reasons. Optimal preservation of the tissue is necessary to preserve its quality. The effect of drying on the physical and biological properties of the tissue are unknown.
A systematic review of the evidence of AM treatment of acute chemical injuries was conducted. A framework was proposed for optimising the dried tissue through thermal, moisture sorption and surface analytical techniques. The physical properties of AM preparations were compared by mechanical testing and mathematical modelling, and an attempt was made to cross-link the AM collagen. Inflammatory aspects of the tissue were assessed by immunological techniques, zymography and macrophage assays.
There is a lack of high quality evidence to support the clinical application of AM for acute burns. Complex interactions were demonstrated between the dried tissue, its excipients and moisture, suggesting novel ways of optimising the product. The mechanical properties of the dried membrane indicated that the process adversely affected the tissue, and artificial cross-linking could not be achieved. While the presence of antimicrobial peptides was not clearly established, the elution of collagenolytic enzymes was shown in therapeutic preparations of AM. The production of tumour necrosis factor by macrophages, which adhere to the spongy layer of AM, was suppressed.
This project makes original contributions relevant to the use of dried AM as a biomaterial in ophthalmic surgery. Further refinements of this work, animal model experimentation and clinical trials may support its future acceptance as a clinical application.
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Citations
Iconographies supplémentaires de l'article : Collagenolytic enzymes (gelatinases) and their inhibitors in human amniochorionic membrane
Stephen J. Fortunato,Ramkumar Menon,Salvatore J. Lombardi +2 more
- 09 Nov 2011
TL;DR: In this article, the presence of matrix metalloproteinase-2 (gelatinase A), matrix metallo-photonase-9 (melatinase B), and their natural inhibitors in both cultured amniochorionic membrane and membrane obtained from women with infection-associated preterm labor was investigated.
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Characterization and Stability Study of Amniotic Membrane Stem Cell Metabolite Product (AMSC-MP)
Diah Indah Kumala Sari,Tristiana Erawati,Andang Miatmoko,Cita Rosita Sigit Prakoeswa,Widji Soeratri +4 more
- 27 Feb 2020
TL;DR: In this paper, a qualitative test of the liquid and freeze dried AMSC-MP form using the SDSPAGE method, also determined the quantitative TGF-β levels, stability tested both materials at room and cold temperature during 28 days.
References
The extracellular matrix of human amniotic epithelium: Ultrastructure, composition and deposition
TL;DR: In vitro and in vivo evidence suggest that the epithelium contributes to the subjacent dense collagenous zone as well as to the basal lamina, suggesting the need for an organized subcellular template to complete matrix morphogenesis.
Evaluation of lyophilised, gamma-irradiated amnion as a biological dressing.
TL;DR: Lyophilised, irradiated amnion provided for the first time in the country by the Tata Memorial Hospital Tissue Bank was evaluated as a temporary biological dressing and was used to treat 35 patients with burns, 21 patients with bedsores and non-healing ulcers and the skin graft donor sites of 11 patients.
Suppression of corneal neovascularization by PEDF release from human amniotic membranes.
Chun-kui Shao,Chun-kui Shao,Jing Sima,Sarah X. Zhang,Ji Jin,Peter S. Reinach,Zheng Wang,Jian Xing Ma +7 more
TL;DR: HAM specifically inhibits endothelial cell growth and thus suppresses neovascularization in the cornea, and PEDF in HAM has a major role in eliciting this antiangiogenic activity.
Methods for preservation and extension of shelf life
TL;DR: Less severe preservation procedures are therefore being developed that make use of preservative factors in combinations to deliver less damage to product quality (hurdle technologies); new methods of heating that are better controlled and therefore deliver milder heat to products; and use of antimicrobial systems that are more natural.
Soluble lumican glycoprotein purified from human amniotic membrane promotes corneal epithelial wound healing.
Lung Kun Yeh,Wei-Li Chen,Wei-Li Chen,Wei Li,Edgar M. Espana,J. Ouyang,Tetsuya Kawakita,Winston W.-Y. Kao,Scheffer C.G. Tseng,Chia-Yang Liu +9 more
TL;DR: The diversified functions of lumican include modulation of epithelial cells in wound healing and serving as an extracellular matrix component in human amniotic membrane.