Extraction and Purification of the FrHb1 Fraction from Commercial Natural Latex of Hevea brasiliensis for Biomedical Applications.

IF 3.9 3区 医学 Q1 ENGINEERING, MULTIDISCIPLINARY Biomimetics Pub Date : 2025-01-30 DOI:10.3390/biomimetics10020085
Ana Karoline Almeida da Silva, Gustavo Adolfo Marcelino de Almeida Nunes, Rafael Mendes Faria, Ana Luiza Coutinho Favilla, Jéssica Dornelas, Marcos Augusto Mountinho Fonseca, Angie Daniela Ibarra Benavides, Lindemberg Barreto Mota da Costa, Mário Fabrício Fleury Rosa, Adson Ferreira da Rocha, Suelia de Siqueira Rodrigues Fleury Rosa
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Abstract

Biomaterials interact with biological systems, influencing their responses. Different types of polymers-both natural and synthetic-are widely used in biomedical engineering, among a plethora of healthcare applications, to promote tissue regeneration. The natural rubber latex extracted from Hevea brasiliensis is a biopolymer that whose biocompatibility makes it a valuable study object. Its great regenerative properties are largely associated with the fraction FrHB1, which has demonstrated angiogenic and wound-healing potential by inducing blood vessel formation, collagen synthesis, and fibroblast migration-crucial factors for tissue repair. This study aimed to develop scalable methods for extracting and purifying the F1 protein fraction from industrialized natural latex for biomedical applications. We tested two types of industrial latex, bi-centrifuged and pre-vulcanized latex as well as 60% centrifuged natural latex to determine the most effective composition used in subsequent extractions and fractionation steps. Then, we isolated FrHB1 from the pre-vulcanized latex using selective precipitation, ultrafiltration, and affinity chromatography. The yield of the first batch of this serum was 40.62% with protein concentration of 1.52 ± 0.06 mg/mL. The second batch had a yield of 49.74%; however, due to results lying outside the analytical curve, its protein concentration could not be calculated. The yield of the third batch was 57.19%, and its protein concentration was 1.8477 ± 0.033 mg/mL. This approach facilitates large-scale therapeutic applications utilizing a commercially viable and accessible resource. Moreover, these findings highlight industrialized natural latex as a sustainable source of bioactive molecules, contributing to advancements in regenerative medicine and tissue engineering.

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商用巴西橡胶树天然乳胶中FrHb1组分的提取与纯化
生物材料与生物系统相互作用,影响它们的反应。不同类型的聚合物——包括天然的和合成的——被广泛应用于生物医学工程,以及大量的医疗保健应用中,以促进组织再生。从巴西橡胶树中提取的天然胶乳是一种生物聚合物,其生物相容性使其成为有价值的研究对象。其巨大的再生特性在很大程度上与FrHB1部分有关,FrHB1通过诱导血管形成、胶原合成和成纤维细胞迁移(组织修复的关键因素)显示出血管生成和伤口愈合的潜力。本研究旨在开发可扩展的方法,从工业天然乳胶中提取和纯化用于生物医学应用的F1蛋白部分。我们测试了两种类型的工业乳胶,双离心和预硫化乳胶以及60%离心天然乳胶,以确定在随后的提取和分馏步骤中使用的最有效成分。然后,我们使用选择性沉淀、超滤和亲和层析从预硫化乳胶中分离出FrHB1。第一批血清的产率为40.62%,蛋白浓度为1.52±0.06 mg/mL。第二批得率为49.74%;但由于结果在分析曲线之外,无法计算其蛋白浓度。第三批产率为57.19%,蛋白浓度为1.8477±0.033 mg/mL。这种方法有利于利用商业上可行和可获得的资源进行大规模的治疗应用。此外,这些发现强调了工业化天然乳胶作为生物活性分子的可持续来源,有助于再生医学和组织工程的进步。
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来源期刊
Biomimetics
Biomimetics Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
3.50
自引率
11.10%
发文量
189
审稿时长
11 weeks
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