Chitosan adhesives with sub-micron structures for photochemical tissue bonding

Q2 Medicine Laser therapy Pub Date : 2022-12-27 DOI:10.4081/ltj.2022.306
Samuel J. Frost, J. Houang, J. Hook, A. Lauto
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Abstract

We describe a method for fabricating biocompatible chitosan-based adhesives with sub-micron structures to enhance tissue bonding. This procedure avoids coating and chemical modification of structures and requires a simple drop-casting step for the adhesive film formation. Chitosan thin films (27±3 μm) were fabricated with sub-micron pillars (rectangular cuboid with height ∼150 nm, square dimension ∼1 μm and pitch ∼2 μm) or holes (diameter ~500 nm or ~1 μm, depth ~100 or 400 nm, pitch of 1 or 2 μm). Polydimethylsiloxane moulds were used as negative templates for the adhesive solution that was cast and then allowed to dry to form thin films. These were applied on bisected rectangular strips of small sheep intestine and photochemically bonded by a green laser (λ= 532 nm, irradiance ∼110 J/cm2). The tissue repair was subsequently measured using a computer-interfaced tensiometer. The mould sub-micron structures were reproduced in the chitosan adhesive with high fidelity. The adhesive with pillars achieved the highest bonding strength (17.1±1.2 kPa) when compared to the adhesive with holes (13.0±1.3 kPa, p<0.0001, one-way ANOVA, n=15). The production of chitosan films with patterned pillars or holes in the sub-micron range was demonstrated, using a polydimethylsiloxane mould and a single drop-casting step. This technique is potentially scalable to produce adhesives of larger surface areas.
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亚微米结构的光化学组织键合壳聚糖粘合剂
我们描述了一种制造具有亚微米结构的生物相容性壳聚糖基粘合剂的方法,以增强组织粘合。这种方法避免了涂层和化学修饰结构,并且需要一个简单的滴铸步骤来形成胶膜。壳聚糖薄膜(27±3 μm)采用亚微米柱(高~ 150 nm,方形尺寸~1 μm,间距~ 2 μm的长方体)或孔(直径~500 nm或~1 μm,深度~100或400 nm,间距1或2 μm)制备。聚二甲基硅氧烷模具被用作胶粘剂溶液的负模板,然后让其干燥形成薄膜。这些材料被应用于小绵羊肠的等分矩形条上,并通过绿色激光(λ= 532 nm,辐照度~ 110 J/cm2)进行光化学结合。随后使用计算机接口张力计测量组织修复。在壳聚糖胶粘剂中再现了模具亚微米结构,保真度高。柱状粘结剂的粘结强度(17.1±1.2 kPa)高于孔状粘结剂(13.0±1.3 kPa, p<0.0001,单因素方差分析,n=15)。利用聚二甲基硅氧烷模具和单步滴铸工艺,制备了亚微米范围内具有图案柱或孔的壳聚糖薄膜。这种技术有可能扩展到生产更大表面积的粘合剂。
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来源期刊
Laser therapy
Laser therapy Medicine-Surgery
CiteScore
2.80
自引率
0.00%
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0
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