In vivo biocompatibility testing of nanoparticle-functionalized alginate-chitosan scaffolds for tissue engineering applications

被引:1
|
作者
Viveros-Moreno, Nancy G. [1 ]
Garcia-Lorenzana, Mario [2 ]
Pena-Mercado, Eduardo [3 ]
Garcia-Sanmartin, Josune [4 ]
Narro-iniguez, Judit [4 ]
Salazar-Garcia, Marcela [5 ]
Huerta-Yepez, Sara [6 ]
Sanchez-Gomez, Concepcion [5 ]
Martinez, Alfredo [4 ]
Beltran-Vargas, Nohra E. [3 ]
机构
[1] Univ Autonoma Metropolitana, Ciencias Biol & Salud, Mexico City, Mexico
[2] Univ Autonoma Metropolitana, Dept Reprod Biol, Div Biol & Hlth Sci, Iztapalapa, Mexico
[3] Univ Autonoma Metropolitana, Dept Proc & Technol, Div Nat Sci & Engn, Cuajimalpa, Mexico
[4] Ctr Biomed Res La Rioja CIBIR, Angiogenesis Grp, Logrono, Spain
[5] Childrens Hosp Mex Federico Gomez, Res Lab Dev Biol & Expt Teratogenesis, Mexico City, Mexico
[6] Childrens Hosp Mex Federico Gomez, Res Lab Dev Biol & Expt Teratogenesis, Mexico City, Mexico
关键词
alginate; chitosan; biocompatibility; foreign body reaction; subcutaneous implantation; FOREIGN-BODY RESPONSE; GOLD NANOPARTICLES; MACROPHAGE POLARIZATION; IMMUNE-RESPONSE; TNF-ALPHA; ANGIOGENESIS; BIOMATERIALS; MODULATION; CELLS; REGENERATION;
D O I
10.3389/fbioe.2023.1295626
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background: There is a strong interest in designing new scaffolds for their potential application in tissue engineering and regenerative medicine. The incorporation of functionalization molecules can lead to the enhancement of scaffold properties, resulting in variations in scaffold compatibility. Therefore, the efficacy of the therapy could be compromised by the foreign body reaction triggered after implantation.Methods: In this study, the biocompatibilities of three scaffolds made from an alginate-chitosan combination and functionalized with gold nanoparticles (AuNp) and alginate-coated gold nanoparticles (AuNp + Alg) were evaluated in a subcutaneous implantation model in Wistar rats. Scaffolds and surrounding tissue were collected at 4-, 7- and 25-day postimplantation and processed for histological analysis and quantification of the expression of genes involved in angiogenesis, macrophage profile, and proinflammatory (IL-1 beta and TNF alpha) and anti-inflammatory (IL-4 and IL-10) cytokines.Results: Histological analysis showed a characteristic foreign body response that resolved 25 days postimplantation. The intensity of the reaction assessed through capsule thickness was similar among groups. Functionalizing the device with AuNp and AuNp + Alg decreased the expression of markers associated with cell death by apoptosis and polymorphonuclear leukocyte recruitment, suggesting increased compatibility with the host tissue. Similarly, the formation of many foreign body giant cells was prevented. Finally, an increased detection of alpha smooth muscle actin was observed, showing the angiogenic properties of the elaborated scaffolds.Conclusion: Our results show that the proposed scaffolds have improved biocompatibility and exhibit promising potential as biomaterials for elaborating tissue engineering constructs.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Biomimetic TiO2-chitosan/sodium alginate blended nanocomposite scaffolds for tissue engineering applications
    Shanmugam, Balu Kolathupalayam
    Rangaraj, Suriyaprabha
    Subramani, Karthik
    Srinivasan, Surendhiran
    Aicher, Wilhelm K.
    Venkatachalam, Rajendran
    MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2020, 110
  • [22] In vivo biocompatibility and vascularization of biodegradable porous polyurethane scaffolds for tissue engineering
    Laschke, M. W.
    Strohe, A.
    Scheuer, C.
    Eglin, D.
    Verrier, S.
    Alini, M.
    Pohlemann, T.
    Menger, M. D.
    ACTA BIOMATERIALIA, 2009, 5 (06) : 1991 - 2001
  • [23] In vivo degradation rate of alginate-chitosan hydrogels influences tissue repair following physeal injury
    Erickson, Christopher B.
    Newsom, Jake P.
    Fletcher, Nathan A.
    Feuer, Zachary M.
    Yu, Yangyi
    Rodriguez-Fontan, Francisco
    Miller, Nancy Hadley
    Krebs, Melissa D.
    Payne, Karin A.
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS, 2020, 108 (06) : 2484 - 2494
  • [24] Regulating Preparation Of Functional Alginate-Chitosan Three-Dimensional Scaffold For Skin Tissue Engineering
    Zhu, Tonghe
    Jiang, Jia
    Zhao, Jinzhong
    Chen, Sihao
    Yan, Xiaoyu
    INTERNATIONAL JOURNAL OF NANOMEDICINE, 2019, 14 : 8891 - 8903
  • [25] Cardiac ECM/chitosan/alginate ternary scaffolds for cardiac tissue engineering application
    Tamimi, Maryam
    Rajabi, Sarah
    Pezeshki-Modaress, Mohamad
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2020, 164 : 389 - 402
  • [26] Bioprinting of alginate-carboxymethyl chitosan scaffolds for enamel tissue engineering in vitro
    Mohabatpour, Fatemeh
    Duan, Xiaoman
    Yazdanpanah, Zahra
    Tabil, Xavier Lee
    Lobanova, Liubov
    Zhu, Ning
    Papagerakis, Silvana
    Chen, Xiongbiao
    Papagerakis, Petros
    BIOFABRICATION, 2023, 15 (01)
  • [27] Highly Porous Biocomposite Scaffolds Fabricated by Chitosan/Alginate/Diatom for Tissue Engineering
    Ozcan, Yusuf
    Gonenmis, Dicle Erden
    Kizilhan, Esranur
    Gok, Cem
    POLYMER-KOREA, 2022, 46 (04) : 455 - 462
  • [28] CHARACTERIZATION OF THREE DIMENSIONAL SCAFFOLDS FROM LOCAL CHITOSAN/ALGINATE/GEOTHERMAL SILICA FOR POTENTIAL TISSUE ENGINEERING APPLICATIONS
    Kusumastuti, Yuni
    Kobayashi, Mime
    Purwaningtyas, Fiska Yohana
    Najmina, Mazaya
    Petrus, Himawan Tri Bayu Murti
    Putri, Nur Rofiqoh Eviana
    Budhijanto
    Tanihara, Masao
    JOURNAL OF ENGINEERING SCIENCE AND TECHNOLOGY, 2018, 13 (11) : 3500 - 3515
  • [29] Chitosan-Based Nanocomposite Scaffolds for Tissue Engineering Applications
    Sultana, Naznin
    Mokhtar, Masturah
    Hassan, Mohd Izzat
    Jin, Rashid Mad
    Roozbahani, Fatemeh
    Khan, Tareef Hayat
    MATERIALS AND MANUFACTURING PROCESSES, 2015, 30 (03) : 273 - 278
  • [30] Enzymatically biomineralized chitosan scaffolds for tissue-engineering applications
    Dash, Mamoni
    Samal, Sangram K.
    Douglas, Timothy E. L.
    Schaubroeck, David
    Leeuwenburgh, Sander C.
    Van der Voort, Pascal
    Declercq, Heidi A.
    Dubruel, Peter
    JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2017, 11 (05) : 1500 - 1513