Comparison of cellular, mechanical, and optical properties of different polymers for corneal tissue engineering

سال انتشار: 1404
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 238

فایل این مقاله در 18 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_IJBMS-28-8_012

تاریخ نمایه سازی: 11 خرداد 1404

چکیده مقاله:

Objective(s): The invention of corneal tissue engineering is essential for vision due to the lack of effective treatments and donated corneas. Finding the right polymer is crucial for reducing inflammation, ensuring biocompatibility, and mimicking natural cornea properties.Materials and Methods: In this study, solvent casting and physical crosslinking (freeze-thaw cycles) were used to fabricate polymeric scaffolds of Polyvinyl alcohol, alginate, gelatin, carboxymethyl chitosan, carboxymethyl cellulose, polyacrylic acid, polyvinyl pyrrolidone, and their combinations. The mechanical evaluation of scaffolds for tension and suture ability was conducted. Biodegradability, swelling, water vapor, bacterial permeability, anti-inflammatory properties, blood compatibility, Blood Clotting Index (BCI), pH alterations, and cell compatibility with human Mesenchymal Stem cells (MSCs) were investigated with MTT. The hydrophilicity of the samples and the ability to adhere to surfaces were also compared with the contact angle and adhesive test, respectively. Finally, quantitative and qualitative analysis was used to check the transparency of the samples.Results: The mechanical strength of polyvinyl alcohol and polyvinyl pyrrolidone samples was highest, showing good suture ability. All samples had blood compatibility below ۵% and cell compatibility above ۷۵%. Polyvinyl alcohol was the most transparent at around ۹۳%. Carboxymethyl chitosan effectively inhibited bacterial permeability, while its anti-inflammatory potential showed no significant difference.Conclusion: This study aims to choose the best polymer composition for corneal tissue engineering. The selection depends on the study’s goals, like mechanical strength or transparency. Comparing polymers across different dimensions provides better insight for polymer selection.

نویسندگان

Sepehr Zamani

Student Research Committee, School of Medicine, Shahroud University of Medical Sciences, Shahroud, Iran

Sadeghi Javad

Eye Research Center, Mashhad University of Medical Sciences, Mashhad, Iran

Mohammad Kamalabadi-Farahani

Department of Tissue Engineering, School of Medicine, Shahroud University of Medical Sciences, Shahroud, Iran

Seyede Nazanin Aghayan

Student Research Committee, School of Medicine, Shahroud University of Medical Sciences, Shahroud, Iran

Zohreh Arabpour

Department of Ophthalmology and Visual Sciences, University of Illinois at Chicago, IL, USA

Ali Djalilian

Department of ophthalmology and Visual Sciences, University of Illinois at Chicago, IL, USA

Majid Salehi

Regenerative Medicine Research Center, Shahroud University of Medical Sciences, Shahroud, Iran

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • Goodarzi H, Jadidi K, Pourmotabed S, Sharifi E, Aghamollaei H. ...
  • Bhattacharjee P, Ahearne M. Significance of crosslinking approaches in the ...
  • Ting DSJ, Deshmukh R, Ting DSW, Ang M. Big data ...
  • Lu Q, Al-Sheikh O, Elisseeff JH, Grant MP. Biomaterials and ...
  • Karamichos D. Ocular tissue engineering: current and future directions. MDPI ...
  • Gain P, Jullienne R, He Z, Aldossary M, Acquart S, ...
  • Chi M, Yuan B, Xie Z, Hong J. The innovative ...
  • Riaz M, Zaman M, Hameed H, Sarwar HS, Khan MA, ...
  • Özlem K, Ayhan ET, Ilbasmis-Tamer S, Tirnaksiz FF. Timolol maleate ...
  • Yang Y, Lockwood A. Topical ocular drug delivery systems: innovations ...
  • Koelwel C, Rothschenk S, Fuchs-Koelwel B, Gabler B, Lohmann C, ...
  • Bastante CC, Silva NH, Cardoso LC, Serrano CM, De La ...
  • Ji P, Zhang C, Kong Y, Liu H, Guo J, ...
  • Beena M, Ameer JM, Kasoju N. Optically clear silk fibroin ...
  • Gong D, Wu N, Chen H, Zhang W, Yan C, ...
  • Vollmert B. Polymer chemistry. ۱st ed. Springer Science & Business ...
  • Ceylan S, Demir D. Polyvinyl alcohol: starch based membrane scaffolds ...
  • Han Y, Li C, Cai Q, Bao X, Tang L, ...
  • Bates NM, Puy C, Jurney PL, McCarty OJT, Hinds MT. ...
  • Salehi AOM, Nourbakhsh MS, Rafienia M, Baradaran-Rafii A, Keshel SH. ...
  • Küng F, Schubert DW, Stafiej P, Kruse FE, Fuchsluger TA. ...
  • Arica TA, Guzelgulgen M, Yildiz AA, Demir MM. Electrospun GelMA ...
  • Yan Y, Cao Y, Cheng R, Shen Z, Zhao Y, ...
  • Cheng H, Li C, Jiang Y, Wang B, Wang F, ...
  • Hubbell JA. Hydrogel systems for barriers and local drug delivery ...
  • Sahi AK, Varshney N, Poddar S, Mahto SK. Comparative behaviour ...
  • Koudouna E, Huertas-Bello M, Rodriguez CN, Consuelo Henao S, Navarrete ...
  • Zhou C, Yi Z. Blood-compatibility of polyurethane/liquid crystal composite membranes. ...
  • Ilina O, Friedl P. Mechanisms of collective cell migration at ...
  • Straccia MC, d’Ayala GG, Romano I, Oliva A, Laurienzo P. ...
  • Stafiej P, Küng F, Kruse F, Schubert D, Fuchsluger T. ...
  • McDougall S, Dallon J, Sherratt J, Maini P. Fibroblast migration ...
  • Nowak A, Zagórska-Dziok M, Perużyńska M, Cybulska K, Kucharska E, ...
  • Fan F, Saha S, Hanjaya-Putra D. Biomimetic hydrogels to promote ...
  • Turner PV, Albassam MA. Susceptibility of rats to corneal lesions ...
  • Formisano N, van der Putten C, Grant R, Sahin G, ...
  • Khalili M, Asadi M, Kahroba H, Soleyman MR, Andre H, ...
  • Latthe SS, Terashima C, Nakata K, Fujishima A. Superhydrophobic surfaces ...
  • Tian JJY, Liu L, Ross M, Sheardown H. Hyaluronic acid ...
  • Delaey J, De Vos L, Koppen C, Dubruel P, Van ...
  • Kolarijani NR, Mirzaii M, Zamani S, Maghsoodifar H, Naeiji M, ...
  • Fan L, Yang H, Yang J, Peng M, Hu J. ...
  • Agostinacchio F, Mu X, Dire S, Motta A, Kaplan DL. ...
  • Montanheiro TLA, Schatkoski VM, de Menezes BRC, Pereira RM, Ribas ...
  • Pye DC. A clinical method for estimating the modulus of ...
  • Matalia HP, Nandini C, Matalia J. Surgical technique for the ...
  • Krainer S, Hirn U. Contact angle measurement on porous substrates: ...
  • Wu KY, Qian SY, Faucher A, Tran SD. Advancements in ...
  • Jadach B, Świetlik W, Froelich A. Sodium alginate as a ...
  • Bayliss N, Schmidt BV. Hydrophilic polymers: current trends and visions ...
  • Gupta Y, Kishore A, Kumari P, Balakrishnan N, Lomi N, ...
  • Geng Y, Xue H, Zhang Z, Panayi AC, Knoedler S, ...
  • Sarika PR, James NR. Polyelectrolyte complex nanoparticles from cationised gelatin ...
  • Yang Y, Liang Y, Chen J, Duan X, Guo B. ...
  • Irfan NI, Zubir AZM, Suwandi A, Haris MS, Jaswir I, ...
  • Hassanzadeh-Tabrizi SA. Alginate based hemostatic materials for bleeding management: a ...
  • Abdalkader RK, Fujita T. Corneal epithelium models for safety assessment ...
  • Sandaruwan B, Manatunga DC, Nilmini R, Dassanayake R, Wijesinghe R, ...
  • Ruan Y, Jiang S, Musayeva A, Pfeiffer N, Gericke A. ...
  • Kang JI, Park KM. Advances in gelatin-based hydrogels for wound ...
  • Rahman MS, Hasan MS, Nitai AS, Nam S, Karmakar AK, ...
  • Wu M, Hill LJ, Downie LE, Chinnery HR. Neuroimmune crosstalk ...
  • Erdinest N, Wajnsztajn D, London N, Solomon A. Ocular surface ...
  • Yang Y, Lin Y, Han Z, Wang B, Zheng W, ...
  • Peris-Martínez C, García-Domene MC, Penadés M, Luque MJ, Fernández-López E, ...
  • Kong B, Sun W, Chen G, Tang S, Li M, ...
  • Li S, Chen N, Li X, Li Y, Xie Z, ...
  • Hernandez JL, Woodrow KA. Medical applications of porous biomaterials: features ...
  • نمایش کامل مراجع