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人工智能发现的天然肽的抗衰老作用。

The anti-ageing effects of a natural peptide discovered by artificial intelligence.

机构信息

Nuritas Ltd, Joshua Dawson House, Dawson St, Dublin 2, D02 RY95, Ireland.

出版信息

Int J Cosmet Sci. 2020 Aug;42(4):388-398. doi: 10.1111/ics.12635.

Abstract

OBJECTIVE

As skin ages, impaired extracellular matrix (ECM) protein synthesis and increased action of degradative enzymes manifest as atrophy, wrinkling and laxity. There is mounting evidence for the functional role of exogenous peptides across many areas, including in offsetting the effects of cutaneous ageing. Here, using an artificial intelligence (AI) approach, we identified peptide RTE62G (pep_RTE62G), a naturally occurring, unmodified peptide with ECM stimulatory properties. The AI-predicted anti-ageing properties of pep_RTE62G were then validated through in vitro, ex vivo and proof of concept clinical testing.

METHODS

A deep learning approach was applied to unlock pep_RTE62G from a plant source, Pisum sativum (pea). Cell culture assays of human dermal fibroblasts (HDFs) and keratinocytes (HaCaTs) were subsequently used to evaluate the in vitro effect of pep_RTE62G. Distinct activities such as cell proliferation and ECM protein production properties were determined by ELISA assays. Cell migration was assessed using a wound healing assay, while ECM protein synthesis and gene expression were analysed, respectively, by immunofluorescence microscopy and PCR. Immunohistochemistry of human skin explants was employed to further investigate the induction of ECM proteins by pep_RTE62G ex vivo. Finally, the clinical effect of pep_RTE626 was evaluated in a proof of concept 28-day pilot study.

RESULTS

In vitro testing confirmed that pep_RTE62G is an effective multi-functional anti-ageing ingredient. In HaCaTs, pep_RTE62G treatment significantly increases both cellular proliferation and migration. Similarly, in HDFs, pep_RTE62G consistently induced the neosynthesis of ECM protein elastin and collagen, effects that are upheld in human skin explants. Lastly, in our proof of concept clinical study, application of pep_RTE626 over 28 days demonstrated anti-wrinkle and collagen stimulatory potential.

CONCLUSION

pep_RTE62G represents a natural, unmodified peptide with AI-predicted and experimentally validated anti-ageing properties. Our results affirm the utility of AI in the discovery of novel, functional topical ingredients.

摘要

目的

随着皮肤衰老,细胞外基质(ECM)蛋白合成受损和降解酶活性增加表现为萎缩、皱纹和松弛。越来越多的证据表明外源性肽在许多领域都具有功能作用,包括抵消皮肤衰老的影响。在这里,我们使用人工智能(AI)方法,鉴定出一种具有 ECM 刺激特性的天然存在的未修饰肽肽 RTE62G(pep_RTE62G)。然后通过体外、离体和概念验证临床测试验证了 pep_RTE62G 的 AI 预测的抗衰老特性。

方法

应用深度学习方法从植物豌豆(Pisum sativum)中解锁 pep_RTE62G。随后,用人真皮成纤维细胞(HDFs)和角质形成细胞(HaCaTs)的细胞培养测定评估 pep_RTE62G 的体外作用。通过 ELISA 测定分别确定细胞增殖和 ECM 蛋白产生特性等不同活性。通过划痕愈合测定评估细胞迁移,通过免疫荧光显微镜和 PCR 分别分析 ECM 蛋白合成和基因表达。用人皮肤外植体的免疫组织化学进一步研究 pep_RTE62G 对 ECM 蛋白的诱导作用。最后,在概念验证的 28 天试点研究中评估 pep_RTE62G 的临床效果。

结果

体外测试证实 pep_RTE62G 是一种有效的多功能抗衰老成分。在 HaCaTs 中,pep_RTE62G 处理显著增加细胞增殖和迁移。同样,在 HDFs 中,pep_RTE62G 一致诱导 ECM 蛋白弹性蛋白和胶原蛋白的新生合成,这些作用在人皮肤外植体中得以维持。最后,在我们的概念验证临床研究中,应用 pep_RTE62G 超过 28 天显示出抗皱和胶原蛋白刺激潜力。

结论

pep_RTE62G 代表一种具有 AI 预测和实验验证的抗衰老特性的天然、未修饰肽。我们的结果证实了 AI 在发现新型功能性局部成分方面的实用性。

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