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尽管人类皮肤有晒黑反应,但反复低水平的长波紫外线 A1 照射仍会导致皮肤损伤。

Dermal damage promoted by repeated low-level UV-A1 exposure despite tanning response in human skin.

机构信息

Department of Dermatology, University of Michigan Medical School, Ann Arbor.

currently a medical student at the University of Michigan Medical School, Ann Arbor.

出版信息

JAMA Dermatol. 2014 Apr;150(4):401-6. doi: 10.1001/jamadermatol.2013.8417.

Abstract

IMPORTANCE

Solar UV irradiation causes photoaging, characterized by fragmentation and reduced production of type I collagen fibrils that provide strength to skin. Exposure to UV-B irradiation (280-320 nm) causes these changes by inducing matrix metalloproteinase 1 and suppressing type I collagen synthesis. The role of UV-A irradiation (320-400 nm) in promoting similar molecular alterations is less clear yet important to consider because it is 10 to 100 times more abundant in natural sunlight than UV-B irradiation and penetrates deeper into the dermis than UV-B irradiation. Most (approximately 75%) of solar UV-A irradiation is composed of UV-A1 irradiation (340-400 nm), which is also the primary component of tanning beds.

OBJECTIVE

To evaluate the effects of low levels of UV-A1 irradiation, as might be encountered in daily life, on expression of matrix metalloproteinase 1 and type I procollagen (the precursor of type I collagen).

DESIGN, SETTING, AND PARTICIPANTS: In vivo biochemical analyses were conducted after UV-A1 irradiation of normal human skin at an academic referral center. Participants included 22 healthy individuals without skin disease.

MAIN OUTCOMES AND MEASURES

Skin pigmentation was measured by a color meter (chromometer) under the L* variable (luminescence), which ranges from 0 (black) to 100 (white). Gene expression in skin samples was assessed by real-time polymerase chain reaction.

RESULTS

Lightly pigmented human skin (L* >65) was exposed up to 4 times (1 exposure/d) to UV-A1 irradiation at a low dose (20 J/cm2), mimicking UV-A levels from strong sun exposure lasting approximately 2 hours. A single exposure to low-dose UV-A1 irradiation darkened skin slightly and did not alter matrix metalloproteinase 1 or type I procollagen gene expression. With repeated low-dose UV-A1 irradiation, skin darkened incrementally with each exposure. Despite this darkening, 2 or more exposures to low-dose UV-A1 irradiation significantly induced matrix metalloproteinase 1 gene expression, which increased progressively with successive exposures. Repeated UV-A1 exposures did not suppress type I procollagen expression.

CONCLUSIONS AND RELEVANCE

A limited number of low-dose UV-A1 exposures, as commonly experienced in daily life, potentially promotes photoaging by affecting breakdown, rather than synthesis, of collagen. Progressive skin darkening in response to repeated low-dose UV-A1 exposures in lightly pigmented individuals does not prevent UV-A1-induced collagenolytic changes. Therefore, for optimal protection against skin damage, sunscreen formulations should filter all UV wavelengths, including UV-A1 irradiation.

摘要

重要性

太阳紫外线照射会导致光老化,其特征是 I 型胶原纤维的碎片化和减少,I 型胶原纤维为皮肤提供强度。暴露于 UV-B 照射(280-320nm)会通过诱导基质金属蛋白酶 1 和抑制 I 型胶原合成引起这些变化。然而,UV-A 照射(320-400nm)在促进类似分子改变中的作用尚不清楚,但考虑到它在自然阳光中比 UV-B 照射丰富 10 到 100 倍,并且比 UV-B 照射更深地渗透到真皮中,因此这一点很重要。大部分(约 75%)的太阳 UV-A 照射由 UV-A1 照射(340-400nm)组成,它也是晒黑床的主要成分。

目的

评估日常生活中可能遇到的低水平 UV-A1 照射对基质金属蛋白酶 1 和 I 型前胶原(I 型胶原的前体)表达的影响。

设计、地点和参与者:在学术转诊中心对正常人体皮肤进行 UV-A1 照射后,进行体内生化分析。参与者包括 22 名无皮肤病的健康个体。

主要结果和措施

通过色度计(分光光度计)在 L*变量(发光度)下测量皮肤色素沉着,范围从 0(黑色)到 100(白色)。通过实时聚合酶链反应评估皮肤样本中的基因表达。

结果

轻度色素沉着的人体皮肤(L*>65)接受低剂量(20J/cm2)UV-A1 照射 4 次(每天 1 次),模拟持续约 2 小时的强阳光照射的 UV-A 水平。单次低剂量 UV-A1 照射会使皮肤稍微变暗,但不会改变基质金属蛋白酶 1 或 I 型前胶原基因表达。随着重复低剂量 UV-A1 照射,每次照射皮肤都会逐渐变暗。尽管皮肤变暗,但 2 次或更多次接受低剂量 UV-A1 照射会显著诱导基质金属蛋白酶 1 基因表达,并且随着连续照射而逐渐增加。重复的 UV-A1 暴露并没有抑制 I 型前胶原的表达。

结论和相关性

日常生活中常见的少量低剂量 UV-A1 暴露可能会通过影响胶原蛋白的分解而不是合成,从而促进光老化。在轻度色素沉着的个体中,对重复低剂量 UV-A1 暴露的反应性皮肤变暗并不能防止 UV-A1 诱导的胶原溶解变化。因此,为了获得最佳的皮肤损伤保护,防晒配方应过滤所有紫外线波长,包括 UV-A1 照射。

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