Your browser does not fully support modern features. Please upgrade for a smoother experience.
Submitted Successfully!
Thank you for your contribution! You can also upload a video entry or images related to this topic. For video creation, please contact our Academic Video Service.
Version Summary Created by Modification Content Size Created at Operation
1 handwiki Sirius Huang -- 3457 2022-09-27 02:54:07

Video Upload Options

We provide professional Academic Video Service to translate complex research into visually appealing presentations. Would you like to try it?
Cite
If you have any further questions, please contact Encyclopedia Editorial Office.
HandWiki. Melanin. Encyclopedia. Available online: https://encyclopedia.pub/entry/27842 (accessed on 01 October 2026).
HandWiki. Melanin. Encyclopedia. Available at: https://encyclopedia.pub/entry/27842. Accessed October 01, 2026.
HandWiki. "Melanin" Encyclopedia, https://encyclopedia.pub/entry/27842 (accessed October 01, 2026).
HandWiki. (2022, September 28). Melanin. In Encyclopedia. https://encyclopedia.pub/entry/27842
HandWiki. "Melanin." Encyclopedia. Web. 28 September, 2022.
Melanin
Edit

Melanin (/ˈmɛlənɪn/ (listen); from Greek: μέλας, romanized: melas, lit. 'black, dark') is a broad term for a group of natural pigments found in most organisms. Eumelanin is produced through a multistage chemical process known as melanogenesis, where the oxidation of the amino acid tyrosine is followed by polymerization. The melanin pigments are produced in a specialized group of cells known as melanocytes. Functionally, eumelanin serves as protection against UV radiation. Melanin (neuromelanin) functions as the catalyst of all cellular functions within an organism. There are five basic types of melanin: eumelanin, pheomelanin, neuromelanin, allomelanin and pyomelanin. The most common type is eumelanin, of which there are two types— brown eumelanin and black eumelanin. Pheomelanin, which is produced when melanocytes are malfunctioning due to derivation of the gene to its recessive format is a cysteine-derivative that contains polybenzothiazine portions that are largely responsible for the of red yellow tint given to some skin or hair colors. Neuromelanin is found in the brain. Research has been undertaken to investigate its efficacy in treating neurodegenerative disorders such as Parkinson's. Allomelanin and pyomelanin are two types of nitrogen-free melanin. In the human skin, melanogenesis is initiated by exposure to UV radiation, causing the skin to darken. Eumelanin is an effective absorbent of light; the pigment is able to dissipate over 99.9% of absorbed UV radiation. Because of this property, eumelanin is thought to protect skin cells from UVA and UVB radiation damage, reducing the risk of folate depletion and dermal degradation. It is considered that exposure to UV radiation is associated with increased risk of malignant melanoma, a cancer of melanocytes (melanin cells). Studies have shown a lower incidence for skin cancer in individuals with more concentrated melanin, i.e. darker skin tone.

melanin pigments allomelanin neuromelanin

References

  1. Solano, F. (2014). "Melanins: Skin Pigments and Much More—Types, Structural Models, Biological Functions, and Formation Routes". New Journal of Science 2014: 1–28. doi:10.1155/2014/498276.  https://dx.doi.org/10.1155%2F2014%2F498276
  2. Cichorek, Mirosława; Wachulska, Małgorzata; Stasiewicz, Aneta; Tymińska, Agata (20 February 2013). "Skin melanocytes: biology and development". Advances in Dermatology and Allergology 30 (1): 30–41. doi:10.5114/pdia.2013.33376. PMID 24278043.  http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=3834696
  3. "oculocutaneous albinism". https://ghr.nlm.nih.gov/condition/oculocutaneous-albinism. 
  4. Meredith, Paul; Sarna, Tadeusz (1 December 2006). "The physical and chemical properties of eumelanin". Pigment Cell Research 19 (6): 572–594. doi:10.1111/j.1600-0749.2006.00345.x. PMID 17083485.  https://dx.doi.org/10.1111%2Fj.1600-0749.2006.00345.x
  5. Ito, S.; Wakamatsu, K. (December 2011). "Diversity of human hair pigmentation as studied by chemical analysis of eumelanin and pheomelanin". Journal of the European Academy of Dermatology and Venereology 25 (12): 1369–1380. doi:10.1111/j.1468-3083.2011.04278.x. ISSN 1468-3083. PMID 22077870.  https://dx.doi.org/10.1111%2Fj.1468-3083.2011.04278.x
  6. "Melanin pigmentation in mammalian skin and its hormonal regulation". Physiological Reviews 84 (4): 1155–228. October 2004. doi:10.1152/physrev.00044.2003. PMID 15383650. https://semanticscholar.org/paper/e5483673641f40a5a97f84fbf487d4ecd5a69933. 
  7. "pheomelanin". 2010. https://metacyc.org/META/NEW-IMAGE?type=COMPOUND&object=CPD-12380. 
  8. "Uncovering the structure of human red hair pheomelanin: benzothiazolylthiazinodihydroisoquinolines as key building blocks". Journal of Natural Products 74 (4): 675–82. April 2011. doi:10.1021/np100740n. PMID 21341762.  https://dx.doi.org/10.1021%2Fnp100740n
  9. Prota, G.; Searle, A. G. (1978). "Biochemical sites of gene action for melanogenesis in mammals". Annales de Génétique et de Sélection Animale 10 (1): 1–8. doi:10.1186/1297-9686-10-1-1. PMID 22896083. PMC 2757330. http://www.gse-journal.org/10.1051/gse:19780101/pdf. 
  10. "Neuromelanin in human dopamine neurons: comparison with peripheral melanins and relevance to Parkinson's disease". Prog Neurobiol 75 (2): 109–124. 2005. doi:10.1016/j.pneurobio.2005.02.001. PMID 15784302.  https://dx.doi.org/10.1016%2Fj.pneurobio.2005.02.001
  11. Double KL (2006). "Functional effects of neuromelanin and synthetic melanin in model systems". J Neural Transm 113 (6): 751–756. doi:10.1007/s00702-006-0450-5. PMID 16755379.  https://dx.doi.org/10.1007%2Fs00702-006-0450-5
  12. "Melanins in fungal pathogens". Journal of Medical Microbiology 51 (3): 189–91. March 2002. doi:10.1099/0022-1317-51-3-189. PMID 11871612.  https://dx.doi.org/10.1099%2F0022-1317-51-3-189
  13. "The prophenoloxidase-activating system in invertebrates". Immunological Reviews 198: 116–26. April 2004. doi:10.1111/j.0105-2896.2004.00116.x. PMID 15199959.  https://dx.doi.org/10.1111%2Fj.0105-2896.2004.00116.x
  14. Castelvecchi, Davide (26 May 2007). "Dark Power: Pigment seems to put radiation to good use". Science News 171 (21): 325. doi:10.1002/scin.2007.5591712106.  https://dx.doi.org/10.1002%2Fscin.2007.5591712106
  15. "Ionizing radiation changes the electronic properties of melanin and enhances the growth of melanized fungi". PLOS ONE 2 (5): e457. 2007. doi:10.1371/journal.pone.0000457. PMID 17520016. Bibcode: 2007PLoSO...2..457D.  http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=1866175
  16. Gunderson, Alex R.; Frame, Alicia M.; Swaddle, John P.; Forsyth, Mark H. (1 September 2008). "Resistance of melanized feathers to bacterial degradation: is it really so black and white?". Journal of Avian Biology 39 (5): 539–545. doi:10.1111/j.0908-8857.2008.04413.x.  https://dx.doi.org/10.1111%2Fj.0908-8857.2008.04413.x
  17. Bonser, Richard H. C. (1995). "Melanin and the Abrasion Resistance of Feathers". Condor 97 (2): 590–591. doi:10.2307/1369048. https://sora.unm.edu/node/105022. 
  18. Galván, Ismael; Solano, Francisco (8 April 2016). "Bird Integumentary Melanins: Biosynthesis, Forms, Function and Evolution". International Journal of Molecular Sciences 17 (4): 520. doi:10.3390/ijms17040520. PMID 27070583.  http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=4848976
  19. Rodríguez‐Martínez, Sol; Galván, Ismael (2020). "Juvenile pheomelanin-based plumage coloration has evolved more frequently in carnivorous species" (in en). Ibis 162 (1): 238–244. doi:10.1111/ibi.12770. ISSN 1474-919X.  https://dx.doi.org/10.1111%2Fibi.12770
  20. Jimbow, K; Quevedo WC, Jr; Fitzpatrick, TB; Szabo, G (July 1976). "Some aspects of melanin biology: 1950–1975". The Journal of Investigative Dermatology 67 (1): 72–89. doi:10.1111/1523-1747.ep12512500. PMID 819593.  https://dx.doi.org/10.1111%2F1523-1747.ep12512500
  21. Meneely, Philip (2014). Genetic Analysis: Genes, Genomes, and Networks in Eukaryotes. Oxford University Press. ISBN 9780199681266. https://books.google.com/books?id=8DxdDgAAQBAJ&pg=PA377. 
  22. Griffiths, Anthony JF; Miller, Jeffrey H.; Suzuki, David T.; Lewontin, Richard C.; Gelbart, William M. (2000). Gene interaction in coat color of mammals. https://www.ncbi.nlm.nih.gov/books/NBK21804/. 
  23. Millar, S. E.; Miller, M. W.; Stevens, M. E.; Barsh, G. S. (October 1995). "Expression and transgenic studies of the mouse agouti gene provide insight into the mechanisms by which mammalian coat color patterns are generated". Development 121 (10): 3223–3232. doi:10.1242/dev.121.10.3223. PMID 7588057.  https://dx.doi.org/10.1242%2Fdev.121.10.3223
  24. Neville, A. C. (2012). Biology of the Arthropod Cuticle. Springer Science & Business Media. ISBN 9783642809101. https://books.google.com/books?id=VQHtCAAAQBAJ&pg=PA121. 
  25. Hsiung, B.-K.; Blackledge, T. A.; Shawkey, M. D. (2015). "Spiders do have melanin after all". Journal of Experimental Biology 218 (22): 3632–3635. doi:10.1242/jeb.128801. PMID 26449977.  https://dx.doi.org/10.1242%2Fjeb.128801
  26. Hegna, Robert H.; Nokelainen, Ossi; Hegna, Jonathan R.; Mappes, Johanna (2013). "To quiver or to shiver: increased melanization benefits thermoregulation, but reduces warning signal efficacy in the wood tiger moth". Proc. R. Soc. B 280 (1755): 20122812. doi:10.1098/rspb.2012.2812. PMID 23363631.  http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=3574392
  27. Mosse, Irma B.; Dubovic, Boris V.; Plotnikova, Svetlana I.; Kostrova, Ludmila N.; Molophei, Vadim; Subbot, Svetlana T.; Maksimenya, Inna P. (20-25 May 2001). "Melanin is Effective Radioprotector against Chronic Irradiation and Low Radiation Doses". in Obelic, B.; Ranogajev-Komor, M.; Miljanic, S. et al.. IRPA Regional Congress on Radiation Protection in Central Europe: Radiation Protection and Health. Dubrovnik (Croatia): Croatian Radiation Protection Association. p. 35 (of 268). 
  28. Gessler, N. N.; Egorova, A. S.; Belozerskaya, T. A. (2014). "Melanin pigments of fungi under extreme environmental conditions (Review)". Applied Biochemistry and Microbiology (Pleiades Publishing) 50 (2): 105–113. doi:10.1134/s0003683814020094. ISSN 0003-6838.  https://dx.doi.org/10.1134%2Fs0003683814020094
  29. Nenoi, M; Wang, B; Vares, G (12 June 2014). "In vivo radioadaptive response". Toxicology (Sage) 34 (3): 272–283. doi:10.1177/0960327114537537. ISSN 0960-3271.  https://dx.doi.org/10.1177%2F0960327114537537
  30. Liu, Heng; Yang, Youyuan; Liu, Yu; Pan, Jingjing; Wang, Junqing; Man, Fengyuan; Zhang, Weiguo; Liu, Gang (7 February 2020). "Melanin‐Like Nanomaterials for Advanced Biomedical Applications: A Versatile Platform with Extraordinary Promise". Advanced Science (Wiley-VCH) 7 (7): 1903129. doi:10.1002/advs.201903129. ISSN 2198-3844.  https://dx.doi.org/10.1002%2Fadvs.201903129
  31. Mosse, Irma B. (2012). "Genetic effects of ionizing radiation – some questions with no answers". Journal of Environmental Radioactivity (Elsevier) 112: 70–75. doi:10.1016/j.jenvrad.2012.05.009. ISSN 0265-931X.  https://dx.doi.org/10.1016%2Fj.jenvrad.2012.05.009
  32. Mosse, Irma; Kilchevsky, Alexander; Nikolova, Nevena; Zhelev, Nikolai (14 December 2016). "Some problems and errors in cytogenetic biodosimetry". Biotechnology & Biotechnological Equipment (Taylor & Francis) 31 (3): 460–468. doi:10.1080/13102818.2016.1259018. ISSN 1310-2818.  https://dx.doi.org/10.1080%2F13102818.2016.1259018
  33. Mosse, Irma (18 January 2022). "Radiobiology in my life – Irma Mosse". International Journal of Radiation Biology (Taylor & Francis) 98 (3: Women in Radiobiology): 1–5. doi:10.1080/09553002.2022.2026517. ISSN 0955-3002. PMID 34994663.  https://dx.doi.org/10.1080%2F09553002.2022.2026517
  34. Dadachova, Ekaterina; Casadevall, Arturo (2011). Horikoshi, Kōki. ed (in en). Extremophiles handbook. Tokyo New York City: Springer. pp. xxix+1247. ISBN 978-4-431-53898-1. OCLC 700199222.  ISBN:978-4-431-53897-4. OCLC 711778164. https://www.worldcat.org/oclc/711778164
  35. Yao, Zeng-Yu; Qi, Jian-Hua (22 April 2016). "Comparison of Antioxidant Activities of Melanin Fractions from Chestnut Shell". Molecules 21 (4): 487. doi:10.3390/molecules21040487. PMID 27110763.  http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=6273334
  36. Kim, Y.-J.; Uyama, H. (15 May 2005). "Tyrosinase inhibitors from natural and synthetic sources: structure, inhibition mechanism and perspective for the future". Cellular and Molecular Life Sciences 62 (15): 1707–1723. doi:10.1007/s00018-005-5054-y. PMID 15968468.  https://dx.doi.org/10.1007%2Fs00018-005-5054-y
  37. Solano, F. (2014). "Melanins: Skin Pigments and Much More—Types, Structural Models, Biological Functions, and Formation Routes". New Journal of Science 2014 (498276): 1–28. doi:10.1155/2014/498276.  https://dx.doi.org/10.1155%2F2014%2F498276
  38. Solano, F. (2014). "Melanins: Skin Pigments and Much More—Types, Structural Models, Biological Functions, and Formation Routes". New Journal of Science 2014 (498276): 1–28. doi:10.1155/2014/498276.  https://dx.doi.org/10.1155%2F2014%2F498276
  39. Mason, H. S. (1948). "The chemistry of melanin. Mechanism of the oxidation of dihydroxyphenylalanine by tyrosinase". Journal of Biological Chemistry 172 (1): 83–99. doi:10.1016/S0021-9258(18)35614-X. PMID 18920770.  https://dx.doi.org/10.1016%2FS0021-9258%2818%2935614-X
  40. Zaidi, Kamal Uddin; Ali, Ayesha S.; Ali, Sharique A.; Naaz, Ishrat (2014). "Microbial Tyrosinases: Promising Enzymes for Pharmaceutical, Food Bioprocessing, and Environmental Industry". Biochemistry Research International 2014: 1–16 (see Fig. 3). doi:10.1155/2014/854687. PMID 24895537.  http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=4033337
  41. "Melanin". https://pubchem.ncbi.nlm.nih.gov/compound/Melanin. 
  42. "Oculocutaneous Albinism". http://albinism.med.umn.edu/mmm.htm. 
  43. Ocular Manifestations of Albinism: Background, Pathophysiology, Epidemiology. 18 June 2018. https://emedicine.medscape.com/article/1216066-overview. 
  44. "Causes of Variability". http://pages.britishlibrary.net/charles.darwin/texts/origin_6th/origin6th_01.html. 
  45. EntrezGene 300700 https://www.ncbi.nlm.nih.gov/entrez/query.fcgi?db=gene&cmd=retrieve&dopt=default&list_uids=300700
  46. EntrezGene 606933 https://www.ncbi.nlm.nih.gov/entrez/query.fcgi?db=gene&cmd=retrieve&dopt=default&list_uids=606933
  47. "Effects of mutations at the W locus (c-kit) on inner ear pigmentation and function in the mouse". Pigment Cell Research 7 (1): 17–32. February 1994. doi:10.1111/j.1600-0749.1994.tb00015.x. PMID 7521050.  https://dx.doi.org/10.1111%2Fj.1600-0749.1994.tb00015.x
  48. "Lewy Body Disease". http://www.seniorpsychiatry.com/pages/articles/lewy.html. 
  49. "Redox regulation in human melanocytes and melanoma". Pigment Cell Research 14 (3): 148–54. June 2001. doi:10.1034/j.1600-0749.2001.140303.x. PMID 11434561. https://escholarship.org/content/qt72b7988d/qt72b7988d.pdf?t=nhppep. 
  50. "Comparison of oral and transdermal administration of rasagiline mesylate on human melanoma tumor growth in vivo". Cutaneous and Ocular Toxicology 31 (4): 312–7. December 2012. doi:10.3109/15569527.2012.676119. PMID 22515841.  https://dx.doi.org/10.3109%2F15569527.2012.676119
  51. "Link between facultative melanin and tobacco use among African Americans". Pharmacology Biochemistry and Behavior 92 (4): 589–96. June 2009. doi:10.1016/j.pbb.2009.02.011. PMID 19268687.  https://dx.doi.org/10.1016%2Fj.pbb.2009.02.011
  52. "Human Skin Color Variation" (in en). 20 June 2012. http://humanorigins.si.edu/evidence/genetics/human-skin-color-variation. 
  53. Berth-Jones, J. (2010), "Constitutive pigmentation, human pigmentation and the response to sun exposure", in Tony Burns; Stephen Breathnach; Neil Cox et al., Rook's Textbook of Dermatology, 3 (8th ed.), Wiley-Blackwell, p. 58.9, ISBN 978-1-4051-6169-5 
  54. Wade, Nicholas (19 August 2003). "Why Humans and Their Fur Parted Ways" (in en-US). The New York Times. ISSN 0362-4331. https://www.nytimes.com/2003/08/19/science/why-humans-and-their-fur-parted-ways.html. 
  55. "The genetic structure and history of Africans and African Americans". Science 324 (5930): 1035–44. May 2009. doi:10.1126/science.1172257. PMID 19407144. Bibcode: 2009Sci...324.1035T.  http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=2947357
  56. "A Single Migration From Africa Populated the World, Studies Find". The New York Times. 22 September 2016. https://www.nytimes.com/2016/09/22/science/ancient-dna-human-history.html. 
  57. Harding RM; Healy E; Ray AJ et al. (April 2000). "Evidence for variable selective pressures at MC1R". American Journal of Human Genetics 66 (4): 1351–61. doi:10.1086/302863. PMID 10733465.  http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=1288200
  58. "SLC24A5, a putative cation exchanger, affects pigmentation in zebrafish and humans". Science 310 (5755): 1782–6. December 2005. doi:10.1126/science.1116238. PMID 16357253. Bibcode: 2005Sci...310.1782L.  https://dx.doi.org/10.1126%2Fscience.1116238
  59. Jablonski, Nina G.; Chaplin, George (11 May 2010). "Human skin pigmentation as an adaptation to UV radiation". Proceedings of the National Academy of Sciences 107 (Supplement 2): 8962–8968. doi:10.1073/pnas.0914628107. PMID 20445093. Bibcode: 2010PNAS..107.8962J.  http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=3024016
  60. "Ion-exchange and adsorption of Fe(III) by Sepia melanin". Pigment Cell Research 17 (3): 262–9. June 2004. doi:10.1111/j.1600-0749.2004.00140.x. PMID 15140071.  https://dx.doi.org/10.1111%2Fj.1600-0749.2004.00140.x
  61. "Interaction of melanosomal proteins with melanin". European Journal of Biochemistry 232 (1): 159–64. August 1995. doi:10.1111/j.1432-1033.1995.tb20794.x. PMID 7556145.  https://dx.doi.org/10.1111%2Fj.1432-1033.1995.tb20794.x
  62. "Melanin aggregation and polymerization: possible implications in age-related macular degeneration". Ophthalmic Research 37 (3): 136–41. 2005. doi:10.1159/000085533. PMID 15867475.  https://dx.doi.org/10.1159%2F000085533
  63. "Etiologic pathogenesis of melanoma: a unifying hypothesis for the missing attributable risk". Clinical Cancer Research 10 (8): 2581–3. April 2004. doi:10.1158/1078-0432.ccr-03-0638. PMID 15102657. https://escholarship.org/content/qt6sz6501z/qt6sz6501z.pdf?t=nhskht. 
  64. "Melanization and phagocytosis: implications for age related macular degeneration". Molecular Vision 11: 482–90. 2005. PMID 16030499.  http://www.ncbi.nlm.nih.gov/pubmed/16030499
  65. Sarna, Michal; Krzykawska-Serda, Martyna; Jakubowska, Monika; Zadlo, Andrzej; Urbanska, Krystyna (26 June 2019). "Melanin presence inhibits melanoma cell spread in mice in a unique mechanical fashion" (in en). Scientific Reports 9 (1): 9280. doi:10.1038/s41598-019-45643-9. ISSN 2045-2322. PMID 31243305. PMC 6594928. https://www.nature.com/articles/s41598-019-45643-9. 
More
Upload a video for this entry
Information
Subjects: Others
Contributor MDPI registered users' name will be linked to their SciProfiles pages. To register with us, please refer to https://encyclopedia.pub/register :
View Times: 2.8K
Entry Collection: HandWiki
Revision: 1 time (View History)
Update Date: 28 Sep 2022
Notice
You are not a member of the advisory board for this topic. If you want to update advisory board member profile, please contact office@encyclopedia.pub.
OK
Confirm
Only members of the Encyclopedia advisory board for this topic are allowed to note entries. Would you like to become an advisory board member of the Encyclopedia?
Yes
No
${ textCharacter }/${ maxCharacter }
Submit
Cancel
There is no comment~
${ textCharacter }/${ maxCharacter }
Submit
Cancel
${ selectedItem.replyTextCharacter }/${ selectedItem.replyMaxCharacter }
Submit
Cancel
Confirm
Are you sure to Delete?
Yes No
Academic Video Service