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Cold-Adapted Proteases as an Emerging Class of Therapeutics

机译:适应冷适应的蛋白酶作为新兴的治疗药物

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摘要

Proteases have been used in medicine for several decades and are an established and well tolerated class of therapeutic agent. These proteases were sourced from mammals or bacteria that exist or have adapted to moderate temperatures (mesophilic organisms); however, proteases derived from organisms from cold environments—cold-adapted or psychrophilic proteases—generally have high specific activity, low substrate affinity, and high catalytic rates at low and moderate temperatures. Made possible by greater flexibility, psychrophilic enzymes interact with and transform the substrate at lower energy costs. Cold-adapted proteases have been used in a wide range of applications, including industrial functions, textiles, cleaning/hygiene products, molecular biology, environmental bioremediations, consumer food products, cosmetics, and pharmaceutical production. In addition to these applications, they have also shown promise as therapeutic modalities for cosmeceutical applications (by reducing glabellar [frown] lines) and a number of disease conditions, including bacterial infections (by disrupting biofilms to prevent bacterial infection), topical wound management (when used as a debridement agent to remove necrotic tissue and fibrin clots), oral/dental health management (by removing plaque and preventing periodontal disease), and in viral infections (by reducing the infectivity of viruses, such as human rhinovirus 16 and herpes simplex virus). Psychrophilic proteases with greater activity and stability (than the original organism-derived variant) have been developed; this coupled with available manufacturing recombinant production techniques suggests that cold-adapted proteases have a promising future as a distinct therapeutic class with diverse clinical applications.
机译:蛋白酶已在医学中使用了数十年,是一类公认的且耐受性良好的治疗剂。这些蛋白酶来自存在或已适应中等温度的细菌或细菌(嗜温生物);但是,来自寒冷环境生物的蛋白酶(冷适应或嗜冷蛋白酶)通常具有较高的比活,较低的底物亲和力以及在低温和中温下的高催化速率。通过更大的灵活性使嗜冷酶以较低的能量成本与底物相互作用并转化底物。冷适应的蛋白酶已被广泛用于各种应用中,包括工业功能,纺织品,清洁/卫生产品,分子生物学,环境生物修复,消费食品,化妆品和药品生产。除了这些应用外,它们还显示出有望作为药妆应用的治疗方式(通过减少眉状皱纹)和许多疾病状况,包括细菌感染(通过破坏生物膜以防止细菌感染),局部伤口处理(当用作清创剂以清除坏死组织和纤维蛋白凝块时,口腔/牙齿健康管理(通过清除牙菌斑并预防牙周疾病)以及病毒感染(通过降低病毒的感染力,例如人鼻病毒16和单纯疱疹)病毒)。已经开发了具有更高活性和稳定性(比原始生物来源的变体更高)的嗜冷性蛋白酶;这与可利用的制造重组生产技术相结合,表明冷适应的蛋白酶作为具有不同临床应用的独特治疗类别具有广阔的前景。

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