References
[1]
Bödeker
K.
Justus Liebigs Ann Chem,
1881, 208: 363-367
Google Scholar
http://scholar.google.com/scholar_lookup?author=Bödeker K&publication_year=1881&journal=Justus Liebigs Ann Chem&volume=208&pages=363-367
[2]
Murphy
RA,
Sarpong
R.
Chem Eur J,
2014, 20: 42-56
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Murphy RA&author=Sarpong R&publication_year=2014&journal=Chem Eur J&volume=20&pages=42-56
[3]
Ferreira
A,
Rodrigues
M,
Fortuna
A,
Falcão
A,
Alves
G,
Zhang
DB,
Chen
JJ,
Zhang
L,
Song
QY,
Gao
K,
Banejee
J,
Biswas
S,
Madhu
NR,
Karmakar
SR,
Surjyo
Y,
Morita
H,
Hirasawa
Y,
Kobayashi
J.
Phytochem Rev,
2016, 15: 51-85
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Ferreira A&author=Rodrigues M&author=Fortuna A&author=Falcão A&author=Alves G&author=Zhang DB&author=Chen JJ&author=Zhang L&author=Song QY&author=Gao K&author=Banejee J&author=Biswas S&author=Madhu NR&author=Karmakar SR&author=Surjyo Y&author=Morita H&author=Hirasawa Y&author=Kobayashi J&publication_year=2016&journal=Phytochem Rev&volume=15&pages=51-85
[4]
Liu
J,
Yu
C,
Zhou
Y,
Han
Y,
Qi
B,
Zhu
Y.
Acta Chim Sin,
1986, 44: 1035-1040
Google Scholar
http://scholar.google.com/scholar_lookup?author=Liu J&author=Yu C&author=Zhou Y&author=Han Y&author=Qi B&author=Zhu Y&publication_year=1986&journal=Acta Chim Sin&volume=44&pages=1035-1040
[5]
Liu
JS,
Zhu
YL,
Yu
CM,
Zhou
YZ,
Han
YY,
Wu
FW,
Qi
BF.
J Chem,
1986, 64: 837-839
Google Scholar
http://scholar.google.com/scholar_lookup?author=Liu JS&author=Zhu YL&author=Yu CM&author=Zhou YZ&author=Han YY&author=Wu FW&author=Qi BF&publication_year=1986&journal=J Chem&volume=64&pages=837-839
[6]
Cheng
YS,
Lu
CZ,
Ying
ZL,
Ni
WY,
Zhang
CL,
Sang
GW.
Chin J New Drug Clin Remedies,
1986, 5: 197-199
Google Scholar
http://scholar.google.com/scholar_lookup?author=Cheng YS&author=Lu CZ&author=Ying ZL&author=Ni WY&author=Zhang CL&author=Sang GW&publication_year=1986&journal=Chin J New Drug Clin Remedies&volume=5&pages=197-199
[7]
Zhang
RW,
Tang
XC,
Han
YY,
Sang
GW,
Zhang
YD,
Ma
YX,
Zhang
CL,
Yang
RM.
Acta Pharmacol Sin,
1991, 12: 250-252
Google Scholar
http://scholar.google.com/scholar_lookup?author=Zhang RW&author=Tang XC&author=Han YY&author=Sang GW&author=Zhang YD&author=Ma YX&author=Zhang CL&author=Yang RM&publication_year=1991&journal=Acta Pharmacol Sin&volume=12&pages=250-252
[8]
Ma
X,
Gang
DR.
Nat Prod Rep,
2004, 21: 752-772
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Ma X&author=Gang DR&publication_year=2004&journal=Nat Prod Rep&volume=21&pages=752-772
[9]
Ayer
WA,
Trifonov
LS.
The Alkaloids.
San Diego:
Acadimic Press.
1994,
Google Scholar
http://scholar.google.com/scholar_lookup?title=The Alkaloids&author=Ayer WA&author=Trifonov LS&publication_year=1994&
[10]
Yuan
C,
Chang
CT,
Axelrod
A,
Siegel
D,
Liau
BB,
Shair
MD,
White
JD,
Li
Y,
Kim
J,
Terinek
M.
J Am Chem Soc,
2010, 132: 5924-5925
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Yuan C&author=Chang CT&author=Axelrod A&author=Siegel D&author=Liau BB&author=Shair MD&author=White JD&author=Li Y&author=Kim J&author=Terinek M&publication_year=2010&journal=J Am Chem Soc&volume=132&pages=5924-5925
[11]
Li
H,
Wang
X,
Hong
B,
Lei
X,
Yang
YR,
Lai
ZW,
Shen
L,
Huang
JZ,
Wu
XD,
Yin
JL,
Wei
K,
Ding
R,
Fu
JG,
Xu
GQ,
Sun
BF,
Lin
GQ.
J Org Chem,
2013, 78: 800-821
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Li H&author=Wang X&author=Hong B&author=Lei X&author=Yang YR&author=Lai ZW&author=Shen L&author=Huang JZ&author=Wu XD&author=Yin JL&author=Wei K&author=Ding R&author=Fu JG&author=Xu GQ&author=Sun BF&author=Lin GQ&publication_year=2013&journal=J Org Chem&volume=78&pages=800-821
[12]
Cassayre
J,
Gagosz
F,
Zard
SZ,
Chandra
A,
Pigza
JA,
Han
JS,
Mutnick
D,
Johnston
JN.
Angew Chem Int Ed,
2002, 41: 1783-1785
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Cassayre J&author=Gagosz F&author=Zard SZ&author=Chandra A&author=Pigza JA&author=Han JS&author=Mutnick D&author=Johnston JN&publication_year=2002&journal=Angew Chem Int Ed&volume=41&pages=1783-1785
[13]
Yang
Y,
Dai
M,
Wang
X,
Li
H,
Lei
X,
Siengalewicz
P,
Mulzer
J,
Rinner
U,
Nakayama
A,
Kitajima
M,
Takayama
H,
Williams
BM,
Trauner
D,
Yang
Y,
Haskins
CW,
Zhang
W,
Low
PL,
Dai
M,
Nishimura
T,
Unni
AK,
Yokoshima
S,
Fukuyama
T,
Newton
JN,
Fischer
DF,
Sarpong
R,
Zhang
J,
Wu
J,
Hong
B,
Ai
W,
Wang
X,
Li
H,
Lei
X.
Synlett,
2014, 25: 2093-2098
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Yang Y&author=Dai M&author=Wang X&author=Li H&author=Lei X&author=Siengalewicz P&author=Mulzer J&author=Rinner U&author=Nakayama A&author=Kitajima M&author=Takayama H&author=Williams BM&author=Trauner D&author=Yang Y&author=Haskins CW&author=Zhang W&author=Low PL&author=Dai M&author=Nishimura T&author=Unni AK&author=Yokoshima S&author=Fukuyama T&author=Newton JN&author=Fischer DF&author=Sarpong R&author=Zhang J&author=Wu J&author=Hong B&author=Ai W&author=Wang X&author=Li H&author=Lei X&publication_year=2014&journal=Synlett&volume=25&pages=2093-2098
[14]
Rulev
AY,
Moberg
C,
Brahmachari
G,
Goutam
D,
Hack
D,
Dürr
AB,
Deckers
K,
Chauhan
P,
Seling
N,
Rübenach
L,
Mertens
L,
Raabe
G,
Schoenebeck
F,
Enders
D,
Perdriau
S,
Zijlstra
DS,
Heeres
HJ,
de Vries
JG,
Otten
E,
Farley
AJM,
Sandford
C,
Dixon
DJ,
Li
J,
Huang
R,
Xing
YK,
Qiu
G,
Tao
HY,
Wang
CJ,
Cichowicz
NR,
Kaplan
W,
Khomutnyk
Y,
Bhattarai
B,
Sun
Z,
Nagorny
P.
RSC Adv,
2014, 4: 26002-26012
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Rulev AY&author=Moberg C&author=Brahmachari G&author=Goutam D&author=Hack D&author=Dürr AB&author=Deckers K&author=Chauhan P&author=Seling N&author=Rübenach L&author=Mertens L&author=Raabe G&author=Schoenebeck F&author=Enders D&author=Perdriau S&author=Zijlstra DS&author=Heeres HJ&author=de Vries JG&author=Otten E&author=Farley AJM&author=Sandford C&author=Dixon DJ&author=Li J&author=Huang R&author=Xing YK&author=Qiu G&author=Tao HY&author=Wang CJ&author=Cichowicz NR&author=Kaplan W&author=Khomutnyk Y&author=Bhattarai B&author=Sun Z&author=Nagorny P&publication_year=2014&journal=RSC Adv&volume=4&pages=26002-26012
[15]
Yang
H,
Carter
RG.
J Org Chem,
2010, 75: 4929-4938
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Yang H&author=Carter RG&publication_year=2010&journal=J Org Chem&volume=75&pages=4929-4938
[16]
Stork
G,
Kretchmer
RA,
Schlessinger
RH,
Ayer
WA,
Bowman
WR,
Joseph
TC,
Smith
P,
Kim
SW,
Bando
Y,
Horii
Z,
Heathcock
CH,
Kleinman
EF,
Binkley
ES,
Schumann
D,
Müller
HJ,
Naumann
A,
Kraus
GA,
Hon
Y,
Grieco
PA,
Dai
Y,
Padwa
A,
Brodney
MA,
Marino
JP,
Sheehan
SM,
Mori
M,
Hori
K,
Akashi
M,
Hori
M,
Sato
Y,
Nishida
M,
Colvin
EW,
Martin
J,
Parker
W,
Paphael
RA,
Shroot
B,
Doyle
M.
J Am Chem Soc,
1968, 90: 1647-1648
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Stork G&author=Kretchmer RA&author=Schlessinger RH&author=Ayer WA&author=Bowman WR&author=Joseph TC&author=Smith P&author=Kim SW&author=Bando Y&author=Horii Z&author=Heathcock CH&author=Kleinman EF&author=Binkley ES&author=Schumann D&author=Müller HJ&author=Naumann A&author=Kraus GA&author=Hon Y&author=Grieco PA&author=Dai Y&author=Padwa A&author=Brodney MA&author=Marino JP&author=Sheehan SM&author=Mori M&author=Hori K&author=Akashi M&author=Hori M&author=Sato Y&author=Nishida M&author=Colvin EW&author=Martin J&author=Parker W&author=Paphael RA&author=Shroot B&author=Doyle M&publication_year=1968&journal=J Am Chem Soc&volume=90&pages=1647-1648
[17]
Yang
H,
Carter
RG,
Zakharov
LN.
J Am Chem Soc,
2008, 130: 9238-9239
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Yang H&author=Carter RG&author=Zakharov LN&publication_year=2008&journal=J Am Chem Soc&volume=130&pages=9238-9239
[18]
Stork
G,
Winkler
JD,
Saccomano
NA.
Tetrahedron Lett,
1983, 24: 465-468
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Stork G&author=Winkler JD&author=Saccomano NA&publication_year=1983&journal=Tetrahedron Lett&volume=24&pages=465-468
[19]
Evans
DA,
Scheerer
JR.
Angew Chem Int Ed,
2005, 44: 6038-6042
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Evans DA&author=Scheerer JR&publication_year=2005&journal=Angew Chem Int Ed&volume=44&pages=6038-6042
[20]
Burnell
RH,
Mootoo
BS.
Can J Chem,
1961, 39: 1090-1093
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Burnell RH&author=Mootoo BS&publication_year=1961&journal=Can J Chem&volume=39&pages=1090-1093
[21]
Burnell
RH.
1959: 3091–3093,
Google Scholar
http://scholar.google.com/scholar_lookup?author=Burnell RH&publication_year=1959: 3091–3093&
[22]
Heathcock
CH,
Blumenkopf
TA,
Smith
KM.
J Org Chem,
1989, 54: 1548-1562
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Heathcock CH&author=Blumenkopf TA&author=Smith KM&publication_year=1989&journal=J Org Chem&volume=54&pages=1548-1562
[23]
Jung
ME,
Chang
JJ.
Org Lett,
2010, 12: 2962-2965
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Jung ME&author=Chang JJ&publication_year=2010&journal=Org Lett&volume=12&pages=2962-2965
[24]
Fang
J,
Ren
J,
Wang
Z,
Qu
JP,
Deng
C,
Zhou
J,
Sun
XL,
Tang
Y.
Tetrahedron Lett,
2008, 49: 6659-6662
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Fang J&author=Ren J&author=Wang Z&author=Qu JP&author=Deng C&author=Zhou J&author=Sun XL&author=Tang Y&publication_year=2008&journal=Tetrahedron Lett&volume=49&pages=6659-6662
[25]
Takayama
H,
Katakawa
K,
Kitajima
M,
Yamaguchi
K.
Heterocycles,
2006, 69: 223
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Takayama H&author=Katakawa K&author=Kitajima M&author=Yamaguchi K&publication_year=2006&journal=Heterocycles&volume=69&pages=223
[26]
Tanaka
T,
Kogure
N,
Kitajima
M,
Takayama
H.
J Org Chem,
2009, 74: 8675-8680
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Tanaka T&author=Kogure N&author=Kitajima M&author=Takayama H&publication_year=2009&journal=J Org Chem&volume=74&pages=8675-8680
[27]
Bradshaw
B,
Luque-Corredera
C,
Bonjoch
J.
Org Lett,
2013, 15: 326-329
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Bradshaw B&author=Luque-Corredera C&author=Bonjoch J&publication_year=2013&journal=Org Lett&volume=15&pages=326-329
[28]
Hayashi
Y,
Gotoh
H,
Hayashi
T,
Shoji
M.
Angew Chem Int Ed,
2005, 44: 4212-4215
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Hayashi Y&author=Gotoh H&author=Hayashi T&author=Shoji M&publication_year=2005&journal=Angew Chem Int Ed&volume=44&pages=4212-4215
[29]
Ding
XH,
Li
X,
Liu
D,
Cui
WC,
Ju
X,
Wang
S,
Yao
ZJ,
Ge
HM,
Zhang
LD,
Tan
RX,
Yao
ZJ.
Tetrahedron,
2012, 68: 6240-6248
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Ding XH&author=Li X&author=Liu D&author=Cui WC&author=Ju X&author=Wang S&author=Yao ZJ&author=Ge HM&author=Zhang LD&author=Tan RX&author=Yao ZJ&publication_year=2012&journal=Tetrahedron&volume=68&pages=6240-6248
[30]
Zhang
LD,
Zhou
TT,
Qi
SX,
Xi
J,
Yang
XL,
Yao
ZJ.
Chem Asian J,
2014, 9: 2740-2744
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Zhang LD&author=Zhou TT&author=Qi SX&author=Xi J&author=Yang XL&author=Yao ZJ&publication_year=2014&journal=Chem Asian J&volume=9&pages=2740-2744
[31]
Zhang
LD,
Zhong
LR,
Xi
J,
Yang
XL,
Yao
ZJ.
J Org Chem,
2016, 81: 1899-1904
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Zhang LD&author=Zhong LR&author=Xi J&author=Yang XL&author=Yao ZJ&publication_year=2016&journal=J Org Chem&volume=81&pages=1899-1904