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非动物源重组胶原蛋白基生物材料作为一种有前途的脂肪组织工程策略。

Non-animal derived recombinant collagen-based biomaterials as a promising strategy towards adipose tissue engineering.

机构信息

Department of Plastic & Reconstructive Surgery, Ghent University Hospital, Corneel Heymanslaan 10, 2K12, 9000 Ghent, Belgium.

Polymer Chemistry & Biomaterials Group-Centre of Macromolecular Chemistry (CMaC)-Department of Organic and Macromolecular Chemistry, Ghent University, Krijgslaan 281, S4-Bis, 9000 Ghent, Belgium.

出版信息

Biomed Mater. 2024 Oct 4;19(6). doi: 10.1088/1748-605X/ad7e90.


DOI:10.1088/1748-605X/ad7e90
PMID:39312940
Abstract

Adipose tissue engineering (ATE) has been gaining increasing interest over the past decades, offering promise for new and innovative breast reconstructive strategies. Animal-derived gelatin-methacryloyl (Gel-MA) has already been applied in a plethora of TE strategies. However, due to clinical concerns, related to the potential occurrence of immunoglobulin E-mediated immune responses and pathogen transmission, a shift towards defined, reproducible recombinant proteins has occurred. In the present study, a recombinant protein based on human collagen type I, enriched with arginine-glycine-aspartic acid was functionalized with photo-crosslinkable methacryloyl moieties (RCPhC1-MA), processed into 3D scaffolds and compared with frequently applied Gel-MA from animal origin using an indirect printing method applying poly-lactic acid as sacrificial mould. For both materials, similar gel fractions (>65%) and biodegradation times were obtained. In addition, a significantly lower mass swelling ratio (17.6 ± 1.5 versus 24.3 ± 1.4) and mechanical strength (Young's modulus: 1.1 ± 0.2 kPa versus 1.9 ± 0.3 kPa) were observed for RCPhC1-MA compared to Gel-MA scaffolds.seeding assays showed similar cell viabilities (>80%) and a higher initial cell attachment for the RCPhC1-MA scaffolds. Moreover, the seeded adipose-derived stem cells could be differentiated into the adipogenic lineage for both Gel-MA and RCPhC1-MA scaffolds, showing a trend towards superior differentiation for the RCPhC1-MA scaffolds based on the triglyceride and Bodipy assay. RCPhC1-MA scaffolds could result in a transition towards the exploitation of non-animal-derived biomaterials for ATE, omitting any regulatory concerns related to the use of animal derived products.

摘要

脂肪组织工程(ATE)在过去几十年中受到越来越多的关注,为新的创新型乳房重建策略提供了希望。动物来源的明胶甲基丙烯酰基(Gel-MA)已经在许多 TE 策略中得到应用。然而,由于临床关注,涉及潜在发生免疫球蛋白 E 介导的免疫反应和病原体传播,已经向明确的、可重复的重组蛋白转变。在本研究中,一种基于人胶原蛋白 I 的重组蛋白,富含精氨酸-甘氨酸-天冬氨酸,用光交联的甲基丙烯酰基官能化(RCPhC1-MA),加工成 3D 支架,并通过间接印刷方法应用聚乳酸作为牺牲模具与常用的动物源 Gel-MA 进行比较。对于这两种材料,获得了相似的凝胶分数(>65%)和生物降解时间。此外,与 Gel-MA 支架相比,RCPhC1-MA 的质量肿胀比(17.6±1.5 比 24.3±1.4)和机械强度(杨氏模量:1.1±0.2 kPa 比 1.9±0.3 kPa)明显更低。接种试验表明,两种支架的细胞活力相似(>80%),RCPhC1-MA 支架的初始细胞附着率更高。此外,脂肪来源的干细胞可以在 Gel-MA 和 RCPhC1-MA 支架上分化为脂肪生成谱系,基于甘油三酯和 Bodipy 测定,RCPhC1-MA 支架显示出更好的分化趋势。RCPhC1-MA 支架可能会促使人们转向使用非动物来源的生物材料进行 ATE,避免了与使用动物来源产品相关的任何监管问题。

相似文献

[1]
Non-animal derived recombinant collagen-based biomaterials as a promising strategy towards adipose tissue engineering.

Biomed Mater. 2024-10-4

[2]
Reconstructing Curves: A Bottom-Up Approach toward Adipose Tissue Regeneration with Recombinant Biomaterials.

Macromol Biosci. 2024-8

[3]
Evaluation of 3D Printed Gelatin-Based Scaffolds with Varying Pore Size for MSC-Based Adipose Tissue Engineering.

Macromol Biosci. 2020-4

[4]
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J Mater Chem B. 2019-5-15

[5]
Additive manufacturing of photo-crosslinked gelatin scaffolds for adipose tissue engineering.

Acta Biomater. 2019-5-25

[6]
High-Resolution 3D Bioprinting of Photo-Cross-linkable Recombinant Collagen to Serve Tissue Engineering Applications.

Biomacromolecules. 2020-10-12

[7]
Extrusion-based 3D printing of photo-crosslinkable gelatin and κ-carrageenan hydrogel blends for adipose tissue regeneration.

Int J Biol Macromol. 2019-8-15

[8]
Development of GelMA/PCL and dECM/PCL resins for 3D printing of acellular in vitro tissue scaffolds by stereolithography.

Mater Sci Eng C Mater Biol Appl. 2020-7

[9]
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[10]
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