TY - JOUR
T1 - Efficient Total Synthesis of Bilirubin IXα from Butyrolactone
AU - Chen, Fapu
AU - Chen, Yage
AU - Luo, Zhanglong
AU - Pan, Feng
AU - Zhao, Xiliang
AU - Zhou, Jun
AU - Chen, Rui
AU - Eisen, Moris S.
N1 - Publisher Copyright:
© 2024 The Authors. Published by American Chemical Society
PY - 2024
Y1 - 2024
N2 - Bilirubin, a yellow pigment formed during the heme breakdown in the red blood cells, plays a central role in the physiological processes of vertebrates. It is the main component of Bovis Calculus (Bezoar), one of East Asia’s most valuable and often-used medicinal materials. Although the significance of bilirubin in human health has been extensively studied, its chemical synthesis has remained a challenging endeavor. This paper presents an efficient total synthesis of bilirubin on a 33 g scale in a minimum number of steps from inexpensive starting materials under very mild conditions. The synthetic route featured 11 steps from butyrolactone, resulting in 19% overall yield with 98.8% purity. The convergent synthesis overcomes limitations such as difficult chromatographic separation, high toxicity of selenium compounds, expensive rhodium catalysts, and isomerization byproducts. This new synthetic pathway makes it possible to industrially produce bilirubin on a large scale. The methine bridge configuration in the ring systems AB and CD was assigned as a Z-syn-periplanar conformer, as corroborated by single-crystal X-ray studies.
AB - Bilirubin, a yellow pigment formed during the heme breakdown in the red blood cells, plays a central role in the physiological processes of vertebrates. It is the main component of Bovis Calculus (Bezoar), one of East Asia’s most valuable and often-used medicinal materials. Although the significance of bilirubin in human health has been extensively studied, its chemical synthesis has remained a challenging endeavor. This paper presents an efficient total synthesis of bilirubin on a 33 g scale in a minimum number of steps from inexpensive starting materials under very mild conditions. The synthetic route featured 11 steps from butyrolactone, resulting in 19% overall yield with 98.8% purity. The convergent synthesis overcomes limitations such as difficult chromatographic separation, high toxicity of selenium compounds, expensive rhodium catalysts, and isomerization byproducts. This new synthetic pathway makes it possible to industrially produce bilirubin on a large scale. The methine bridge configuration in the ring systems AB and CD was assigned as a Z-syn-periplanar conformer, as corroborated by single-crystal X-ray studies.
KW - bilirubin
KW - biliverdin
KW - butyrolactone
KW - synthesis
UR - http://www.scopus.com/inward/record.url?scp=85197519314&partnerID=8YFLogxK
U2 - 10.1021/acs.oprd.4c00122
DO - 10.1021/acs.oprd.4c00122
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AN - SCOPUS:85197519314
SN - 1083-6160
JO - Organic Process Research and Development
JF - Organic Process Research and Development
ER -