• 제목/요약/키워드: Melanosome transfer

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Whitening effect of novel peptide mixture by regulating melanosome biogenesis, transfer and degradation

  • Lee, Eung-Ji;Kim, Jandi;Jeong, Min Kyeong;Lee, Young Min;Chung, Yong Ji;Kim, Eun Mi
    • The Korean Journal of Physiology and Pharmacology
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    • 제25권1호
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    • pp.15-26
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    • 2021
  • Peptides are short chain of amino acids linked by peptide bonds. They are widely used as effective and biocompatible active ingredients in cosmetic industry. In this study, we developed novel peptide mixture and identified its anti-pigmentation effect on melanocytes and keratinocytes. Our results revealed that peptide mixture inhibited melanosome biogenesis through the regulation of microphthalmia-associated transcription factor, a key factor of melanogenesis in melanocytes. And we observed that peptide mixture inhibited melanosome uptake through the reduction of protease-activated receptor 2, a phagocytosis-related receptor in keratinocytes. Furthermore, peptide mixture activated autophagy system resulting in degradation of transferred melanosomes in keratinocytes. The anti-pigmentation effect of multi-targeting peptide mixture was assessed in a human skin equivalent model (MelanoDerm). Melanin contents in epidermal layer were significantly decreased by topical treatment of peptide mixture, suggesting that it can be applied as a novel cosmetics material having a whitening function.

Regulation of Melanosome Transfer to and Distribution in Keratinocytes

  • Boissy, Raymond E.;Minwalla, Ljiljana
    • Journal of Photoscience
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    • 제9권2호
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    • pp.213-216
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    • 2002
  • Skin pigmentation, also known as complexion coloration, results from the biosynthesis of melanin within the melanocytes of the Stratum basalum and the subsequent transfer, translocation, and degradation of this pigment to, in, and by the neighboring keratinocytes respectively, Melanins are produced and retained in melanosomes synthesized in the cell body that are translocated along the dendrites using microtubules via motor proteins. Melanosomes are eventually captured and retained at the tips of dendrites by attachment to the peripherally localized actin. Melanosomes reaching the dendritic tips are transferred to keratinocytes, primarily via phagocytosis of released melanosomes by keratinocytes. Molecules responsible for cell/cell recognition and interaction that regulate transfer are being identified. Some of these putative mediators appear to be affected by ultraviolet radiation. After the keratinocytes receive melanosomes, the granules are distributed individually or as clusters in dark versus light skin respectively. These melanosomes are then aggregated over the nucleus for photoprotection ofkeratinocyte DNA and eventually degraded.

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Protease Activated Receptor-2의 길항제로서 Lobaric Acid의 피부 색소침착 억제 효능 연구 (A Study on the Inhibition of Skin Pigmentation by Lobaric Acid as Protease Activated Receptor-2 Antagonist)

  • 구정현;이지은;명철환;박종일;황재성
    • 대한화장품학회지
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    • 제41권3호
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    • pp.243-252
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    • 2015
  • 멜라노사이트에서 생성된 멜라노좀은 수상돌기를 따라 케라티노사이트로 이동한다. 세포막을 통한 정보 전달계에 관여하는 protease activated receptor-2 (PAR-2)는 SLIGKV와 같은 펩타이드에 의해 활성화되어 멜라노좀 전달을 증가하는 역할을 한다고 보고되어 있다. 본 연구에서는 새로운 PAR-2의 저해제를 찾고 본 저해제가 멜라노좀의 이동과 색소침착을 저해함을 확인하고자 하였다. PAR-2가 활성화되면 G 단백질이 방출되고, 이때 증가하는 세포 내 칼슘 이온 농도가 lobaric acid에 의하여 감소하는 것을 확인하여 lobaric acid가 PAR-2의 길항제로 작용할 수 있음을 발견하였다. 각질형성세포에서 SLIGKV에 의해 증가된 형광 비드 uptake가 lobaric acid에 의해 억제 되는 것을 확인하였고 또한, 분리된 멜라노좀을 이용한 시험에서도 동일한 경향을 나타내었다. 멜라노사이트와 케라티노사이트를 공동 배양하여 멜라노좀의 이동을 공초점 현미경으로 관찰한 결과, lobaric acid에 의해 멜라노좀의 전달이 억제되었다. 인공피부조직에 lobaric acid를 처리하였을 때 색소 침착이 억제됨을 확인하였고, 또한 Fontana-Masson 염색을 통해 멜라닌의 양이 감소함을 확인하였다. 이상의 결과를 통해 lobaric acid가 PAR-2 길항제로 작용함으로써 케라티노사이트로 멜라노좀 전달을 억제하고 이를 통해 피부 색소 침착을 저해함을 확인할 수 있었다.

Applying the basic knowledge about regulation of pigmentation towards development of strategies for cutaneous hypopigmentation

  • Abdel-Malek, Zalfa A.
    • 대한화장품학회지
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    • 제28권3호
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    • pp.7-39
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    • 2002
  • 인체피부의 색소침착에 있어서 다양한 차이는 주로 표피의 멜라닌생성 세포에 의한 멜라닌 합성 비율, 합성된 eumelanin과 pheomelanin의 상대적인 양과 melanocyte에서 keratinocyte로 melanosomes의 이동 속도와 그 방법에서 기인된다. 색소침착은 유전적, 환경적으로 조절되어지는 복합적 특성이다. 많은 관심이 집중되었던 하나의 유전자인 melanocortin 1 receptor 유전자가 있다. 인간집단에서 이 유전자의 다앙한 polymorphism은 색소침착의 다양성에 있어서 중요하다. 자외선(UV)에 대한 노출은 다양한 성장 요인, cytokines과 호르몬의 합성이 증가되고, 표피에서 그들 수용체들의 환경적응등이 나타난다. 색소침착 조절에 관한 정보는 과다색소 침착된 피부손상의 임상치료를 위한 전략들에서 이끌어 냈다. 주된 3개의 전략은 다음과 같다. 1) melanin 합성경로를 방해하는 화합물의 사용 2) eumelanin 합성을 조절하는 호르몬의 구조에서 기인된 peptides 또는 peptide-mimetics개발 3) melanocytes에서 keratinocytes로의 melanosome 이동을 감소시키는 물질의 개발. 이 모든 3가지의 전략은 각각 전체 멜라닌 합성, eumelanin 생성 또는 피부의 멜라닌 단위를 억제시킴으로 미백작용을 유도시킬 것으로 기대되어 진다.

Methylanthranilate, a Food Fragrance Attenuates Skin Pigmentation through Downregulation of Melanogenic Enzymes by cAMP Suppression

  • Heui-Jin Park;Kyuri Kim;Eun-Young Lee;Prima F. Hillman;Sang-Jip Nam;Kyung-Min Lim
    • Biomolecules & Therapeutics
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    • 제32권2호
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    • pp.231-239
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    • 2024
  • Methyl anthranilate (MA) is a botanical fragrance used in food flavoring with unexplored potential in anti-pigment cosmetics. MA dose-dependently reduced melanin content without affecting cell viability, inhibited dendrite elongation and melanosome transfer in the co-culture system of human melanoma cells (MNT-1) and human keratinocyte cell line (HaCaT), and downregulated melanogenic genes, including tyrosinase, tyrosinase-related protein 1 and 2 (TRP-1, TRP-2). Additionally, MA decreased cyclic adenosine monophosphate (cAMP) production and exhibited a significant anti-pigmentary effect in MelanodermTM. These results suggest that MA is a promising anti-pigmentary agent for replacing or complementing existing anti-pigmentary cosmetics.

Loss of EMP2 Inhibits Melanogenesis of MNT1 Melanoma Cells via Regulation of TRP-2

  • Enkhtaivan, Enkhmend;Kim, Hyun Ji;Kim, Boram;Byun, Hyung Jung;Yu, Lu;Nguyen, Tuan Minh;Nguyen, Thi Ha;Do, Phuong Anh;Kim, Eun Ji;Kim, Kyung Sung;Huy, Hieu Phung;Rahman, Mostafizur;Jang, Ji Yun;Rho, Seung Bae;Lee, Ho;Kang, Gyeoung Jin;Park, Mi Kyung;Kim, Nan-Hyung;Choi, Chang Ick;Lee, Kyeong;Han, Hyo Kyung;Cho, Jungsook;Lee, Ai Young;Lee, Chang Hoon
    • Biomolecules & Therapeutics
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    • 제30권2호
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    • pp.203-211
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    • 2022
  • Melanogenesis is the production of melanin from tyrosine by a series of enzyme-catalyzed reactions, in which tyrosinase and DOPA oxidase play key roles. The melanin content in the skin determines skin pigmentation. Abnormalities in skin pigmentation lead to various skin pigmentation disorders. Recent research has shown that the expression of EMP2 is much lower in melanoma than in normal melanocytes, but its role in melanogenesis has not yet been elucidated. Therefore, we investigated the role of EMP2 in the melanogenesis of MNT1 human melanoma cells. We examined TRP-1, TRP-2, and TYR expression levels during melanogenesis in MNT1 melanoma cells by gene silencing of EMP2. Western blot and RT-PCR results confirmed that the expression levels of TYR and TRP-2 were decreased when EMP2 expression was knocked down by EMP2 siRNA in MNT1 cells, and these changes were reversed when EMP2 was overexpressed. We verified the EMP2 gene was knocked out of the cell line (EMP2 CRISPR/Cas9) by using a CRISPR/Cas9 system and found that the expression levels of TRP-2 and TYR were significantly lower in the EMP2 CRISPR/Cas9 cell lines. Loss of EMP2 also reduced migration and invasion of MNT1 melanoma cells. In addition, the melanosome transfer from the melanocytes to keratinocytes in the EMP2 KO cells cocultured with keratinocytes was reduced compared to the cells in the control coculture group. In conclusion, these results suggest that EMP2 is involved in melanogenesis via the regulation of TRP-2 expression.