Novel Antifungal Dimers from the Roots of Taiwania cryptomerioides
Abstract
:1. Introduction
2. Results and Discussion
2.1. Structure Elucidation of Compounds
2.2. Biological Studies
3. Materials and Methods
3.1. General Experimental Procedures
3.2. Plant Material
3.3. Isolation and Characterization of Secondary Metabolites
3.4. Antifungal Activity Assays
3.4.1. By Disc Diffusion Assay
3.4.2. By Broth Dilution Assay
4. Conclusions
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Li, H.L.; Keng, H. Taxodiaceae. In Flora of Taiwan, 2nd ed.; Editorial Committee of the Flora of Taiwan: Taipei, Taiwan, 1994; Volume 1, pp. 582–585. [Google Scholar]
- Cheng, Y.S.; Kuo, Y.H.; Lin, Y.T. Extractive components from the wood of Taiwania cryptomerioides Hayata: The structures of “T-cadinol” and “T-murrolol”. J. Chem. Soc. Chem. Commun. 1967, 12, 565–566. [Google Scholar] [CrossRef]
- Lin, Y.T.; Cheng, Y.S.; Kuo, Y.H. Extractive components from the wood of taiwania cryptomerioides hayata: A new sesquiterpene keto alcohol, cadinane-3-ene-9α-ol-2-one. Tetrahedron Lett. 1968, 9, 3881–3882. [Google Scholar] [CrossRef]
- Kuo, Y.H.; Cheng, Y.S.; Lin, Y.T. Extractive components from the wood of taiwania cryptomerioides hayata: Three new sesquiterpene alcohols, muurolane-3-ene-9β-ol-2-one, muurolane-2δ,9β-diol-3-ene, and muurolane-2β,9β-diol-3-ene. Tetrahedron Lett. 1969, 10, 2375–2377. [Google Scholar] [CrossRef]
- Kuo, Y.H.; Chang, C.I.; Lee, C.K. Six podocarpane-type trinorditerpenes from the bark of Taiwania cryptomerioides. Chem. Pharm. Bull. 2000, 48, 597–599. [Google Scholar] [CrossRef] [PubMed]
- Kuo, Y.H.; Chang, C.I. Podocarpane-Type Trinorditerpenes from the Bark of Taiwania cryptomerioides. J. Nat. Prod. 2000, 63, 650–652. [Google Scholar] [CrossRef] [PubMed]
- Kuo, Y.H.; Chien, S.C. Quinone-type podocarpanes from the bark of Taiwania cryptomerioides. Chem. Pharm. Bull. 2001, 49, 1033–1035. [Google Scholar] [CrossRef] [PubMed]
- Kuo, Y.H.; Chien, S.C.; Huang, S.L. Four new podocarpane-type trinorditerpenes from the bark of Taiwania cryptomerioides. Chem. Pharm. Bull. 2002, 50, 544–546. [Google Scholar] [CrossRef] [PubMed]
- Kuo, Y.H.; Chien, S.C.; Kuo, C.C. Cadinane-Type Sesquiterpenes from the Roots of Taiwania cryptomerioides HAYATA. Planta Med. 2002, 68, 1020–1023. [Google Scholar] [CrossRef] [PubMed]
- Kuo, Y.H.; Chyu, C.F.; Lin, H.C.; Kuo, Y.H.; Chyu, C.F.; Lin, H.C. Cadinane-Type Sesquiterpenes from the Roots of Taiwania cryptomerioides Hayata. Chem. Pharm. Bull. 2003, 51, 986–989. [Google Scholar] [CrossRef] [PubMed]
- Kuo, Y.H.; Chyu, C.F.; Kuo, Y.H.; Chyu, C.F. Two novel sesquiterpenes from the roots of Taiwania cryptomerioides Hayata. Tetrahedron Lett. 2003, 44, 7221–7223. [Google Scholar] [CrossRef]
- Chyu, C.F.; Chiang, Y.M.; Lin, H.C.; Kuo, Y.H. Two novel 9,11-seco-11-norabietanes from the roots of Taiwania cryptomerioides. Tetrahedron Lett. 2004, 45, 641–643. [Google Scholar] [CrossRef]
- Chyu, C.F.; Lin, H.C.; Kuo, Y.H. New abietane and seco-abietane diterpenes from the roots of Taiwania cryptomerioides. Chem. Pharm. Bull. 2005, 53, 11–14. [Google Scholar] [CrossRef]
- Chyu, C.F.; Ke, M.R.; Chang, Y.S.; Chien, S.C.; Kuo, Y.H. New cadinane-type sesquiterpenes from the roots of Taiwania cryptomerioides Hayata. Helv. Chim. Acta 2007, 8, 1514–1521. [Google Scholar] [CrossRef]
- Gonzàlez, A.G.; Andrès, L.S.; Luis, J.G.; Brito, I.; Rodriguez, M.L. Diterpenes from Salvia mellifera. Phytochemistry 1991, 30, 4067–4070. [Google Scholar] [CrossRef]
- Lin, Y.T.; Wang, K.T.; Weinstein, B. Phytochemical studies. The structure of taiwanin A. J. Chem. Soc. Chem. Commun. 1965, 23, 592–593. [Google Scholar] [CrossRef]
- Esquivel, B.; Flores, M.; Hernandez-Ortega, S.; Toscano, R.A.; Ramamoorthy, T.P. Abietane and icetexane diterpenoids from the roots of Salvia aspera. Phytochemistry 1995, 39, 139–143. [Google Scholar] [CrossRef]
- Cao, W.; Deng, X.; Liu, M.; Liu, T.; Pan, Z.; Yang, S.; Zhou, Y. Efficient Synthesis of Icetexane Diterpenes and Apoptosis Inducing Effect by Upregulating BiP-ATF4-CHOP Axis in Colorectal Cells. J. Nat. Prod. 2021, 84, 2012–2019. [Google Scholar] [CrossRef] [PubMed]
- San Feliciano, A.; Medarde, M.; Lopez, J.L.; Miguel del Corral, J.M.; Puebla, P.; Barrero, A.F. Terpenoids from leaves of Juniperus thurifera. Phytochemistry 1988, 27, 2241–2248. [Google Scholar] [CrossRef]
- Clinical and Laboratory Standards Institute. Method for Antifungal Disk Diffusion Susceptibility Testing of Yeasts; Approved Guideline; CLSI document M44-A, Clinical and Laboratory Standards Institute: Wayne, PA, USA, 2004. [Google Scholar]
- Clinical and Laboratory Standards Institute. Zone Diameter Interpretive Standards, Corresponding Minimal Inhibitory Concentration (MIC) Interpretive Breakpoints, and Quality Control Limits for Antifungal Disk Diffusion Susceptibility Testing of Yeasts, 2nd ed.; Informational supplement; CLSI document M44-S2, Clinical and Laboratory Standards Institute: Wayne, PA, USA, 2008. [Google Scholar]
- Clinical and Laboratory Standards Institute. Method for Antifungal Disk Diffusion Susceptibility Testing of Filamentous Fungi; Proposed guideline; CLSI document M51-P, Clinical and Laboratory Standards Institute: Wayne, PA, USA, 2008. [Google Scholar]
- Clinical and Laboratory Standards Institute. Reference Method for Broth Dilution Antifungal Susceptibility Testing of Yeasts, 3rd ed.; Approved standard; CLSI document M27-A3, Clinical and Laboratory Standards Institute: Wayne, PA, USA, 2008. [Google Scholar]
- Clinical and Laboratory Standards Institute. Reference Method for Broth Dilution Antifungal Susceptibility Testing of Yeasts, 3rd ed.; Informational supplement; CLSI document M27-S3, Clinical and Laboratory Standards Institute: Wayne, PA, USA, 2008. [Google Scholar]
- Clinical and Laboratory Standards Institute. Reference Method for Broth Dilution Antifungal Susceptibility Testing of Filamentous Fungi, 2nd ed.; Approved standard; CLSI document M38-A2, Clinical and Laboratory Standards Institute: Wayne, PA, USA, 2008. [Google Scholar]
No | 1 | 2 | 3 | 4 | 5 |
---|---|---|---|---|---|
Part A | |||||
1 | 1.50 (m), 1.77 (m) | 1.36 (m), 1.72 (m) | 1.78 (m), 1.96 (m) | ||
2 | 1.40 (m), 1.77 (m) | 1.37 (m), 1.70 (m) | 1.57 (m), 1.79 (m) | 2.20 (m), 2.40 (m) | 1.81 (m) |
3 | 1.23 (m), 1.38 (m) | 1.23 (m), 1.49 (m) | 1.50 (m), 1.11 (m) | 1.62 (dt, J = 13.2, 6.0) 2.04 (dt, J = 13.2, 6.0) | 1.70 (m), 2.81 (m) |
4 | |||||
5 | 1.30 (m) | 1.28 (m) | 1.80 (m) | 4.28 (s) | 5.65 (d, J = 2.0) |
6 | 1.80 (m), 1.96 (m) | 1.80 (m), 1.99 (m) | 1.91 (m), 2.12 (m) | ||
7 | 2.69 (m), 2.79 (m) | 2.70 (m), 2.77 (m) | 4.89 (br. d, J = 6.4), 2.77 (m) | 2.40 (m) | 2.22 (br d, J = 13.2) |
8 | 1.25 (m), 1.51 (m) | 1.80 (m), 1.65 (m) | |||
9 | 2.20 (m), 2.40 (m) | 1.41 (m), 1.74 (m) | |||
10 | |||||
11 | 2.28 (m) | 2.12 (m) | |||
12 | 0.94 (d, J = 6.8) | 0.84 (d, J = 6.8) | |||
13 | 0.75 (d, J = 6.8) | 0.94 (d, J = 6.8) | |||
14 | 6.69 (s) | 6.64 (s) | 6.60 (s) | 4.77 (s), 4.93 (s) | 1.30 (s) |
15 | 3.25 (sept, J = 6.8) | 3.25 (sept, J = 6.8) | 3.27 (sept, J = 6.8) | 1.30 (s) | 1.29 (s) |
16 | 1.20 (d, J = 6.8) | 1.21 (d, J = 6.8) | 1.17 (d, J = 6.8) | ||
17 | 1.24 (d, J = 6.8) | 1.18 (d, J = 6.8) | 1.24 (d, J = 6.8) | ||
18 | 0.88 (s) | 0.88 (s) | 0.81 (s) | ||
19 | 0.91 (s) | 0.91 (s) | 0.92 (s) | ||
20 | 2.50/3.29 (each d, J = 14.4) | 2.50/3.29 (each d, J = 14.4) | 2.48/2.77 (each d, J = 17.0) | ||
Part B | |||||
1′ | 1.37 (m) 3.17 (dt, J = 13.6, 3.6) | 2.02 (ddd, J = 13.2, 11.2, 2.8) 2.92 (dt, J = 13.2, 8.8) | |||
2′ | 6.91 (d, J = 8.0) | 6.91 (dd, J = 8.0, 1.6) | 6.92 (d, J = 8.0) | 1.71 (m) | 2.30 (m) 2.73 (m) |
3′ | 6.80 (d, J = 8.0) | 6.81 (d, J = 8.0) | 6.82 (d, J = 8.0) | 3.27 (dd, J = 9.0, 6.8) | |
4′ | |||||
5′ | 1.24 (m) | 2.11 (m) | |||
6′ | 6.94 (s) | 6.94 (s) | 6.94 (s) | 1.55 (m) 1.78 (m) | 1.68 (m) 1.74 (m) |
7′ | 5.06 (s) | 5.05 (s) | 5.12 (m) | 2.78 (m) | 2.80 (m) |
8′ | |||||
9′ | |||||
10′ | |||||
11′ | |||||
12′ | |||||
13′ | |||||
14′ | 6.43 (s) | 6.48 (s) | |||
15′ | 3.10 (sept, J = 6.8) | 3.14 (sept, J = 6.8) | |||
16′ | 1.14 (d, J = 6.8) | 1.16 (d, J = 6.8) | |||
17′ | 1.23 (d, J = 6.8) | 1.16 (d, J = 6.8) | |||
18′ | 1.04 (s) | 1.15 (s) | |||
19′ | 0.86 (s) | 1.10 (s) | |||
20′ | 1.28 (s) | 1.17 (s) | |||
1″ | |||||
2″ | 6.44 (d, J = 8.0) | 6.42 (d, J = 8.0) | 6.37 (dd, J = 8.0, 1.6) | ||
3″ | 6.73 (d, J = 8.0) | 6.73 (d, J = 8.0) | 6.74 (d, J = 8.0) | ||
4″ | |||||
5″ | |||||
6″ | 6.42 (s) | 6.41 (s) | 6.33 (s) | ||
7″ | 6.47 (s) | 6.44 (s) | 6.35 (br. s) | ||
8′; | |||||
9″ | 3.94/4.81 (each dd, J = 13.2, 2.8) | 3.90 (dd, J = 13.2, 2.8), 4.77 (dd, J = 13.2, 1.6) | 3.90 (dd, J = 13.6, 2.4), 4.74 (dd, J = 13.6, 2.4) | ||
4′,5′-OCH2O- | 5.94 (s) | 5.94 (s) | 5.94 (s) | ||
4″,5″-OCH2O- | 5.97 (d, J = 1.6) 5.99 (d, J = 1.6) | 5.98 (d, J = 1.6) 6.01 (d, J = 1.6) | 5.98 (d, J = 1.6) 6.00 (d, J = 1.6) |
No | 1 | 2 | 3 | 4 | 5 |
---|---|---|---|---|---|
A | |||||
1 | 42.1 | 42.2 | 30.3 | 133.2 | 75.4 |
2 | 18.8 | 18.7 | 16.0 | 24.3 | 24.6 |
3 | 42.4 | 42.5 | 31.6 | 29.8 | 34.4 |
4 | 34.3 | 34.4 | 31.8 | 71.2 | 69.5 |
5 | 58.1 | 58.2 | 50.7 | 73.5 | 133.3 |
6 | 23.8 | 23.8 | 40.0 | 134.9 | 137.7 |
7 | 36.0 | 36.2 | 75.9 | 42.0 | 42.1 |
8 | 122.1 | 122.1 | 134.7 | 22.3 | 21.5 |
9 | 137.2 | 138.5 | 118.9 | 30.8 | 32.5 |
10 | 70.9 | 71.2 | 80.1 | 144.6 | 75.8 |
11 | 141.8 | 140.5 | 140.6 | 21.0 | 26.1 |
12 | 137.3 | 138.0 | 137.6 | 20.1 | 17.0 |
13 | 134.7 | 134.7 | 134.0 | 17.0 | 22.2 |
14 | 119.0 | 118.2 | 114.6 | 108.4 | 23.0 |
15 | 26.9 | 27.0 | 26.8 | 22.6 | 16.8 |
16 | 22.7 | 22.8 | 23.1 | ||
17 | 22.1 | 22.3 | 21.7 | ||
18 | 21.6 | 21.7 | 26.9 | ||
19 | 32.2 | 32.2 | 30.4 | ||
20 | 40.6 | 40.5 | 38.8 | ||
Part B | |||||
1′ | 127.2 | 127.1 | 126.9 | 35.6 | 37.1 |
2′ | 107.6 | 108.4 | 107.5 | 28.3 | 34.2 |
3′ | 108.5 | 108.5 | 108.4 | 78.7 | 220.0 |
4′ | 148.0 | 147.9 | 147.7 | 39.3 | 47.2 |
5′ | 148.3 | 148.3 | 148.37 | 52.5 | 51.8 |
6′ | 121.1 | 121.40 | 121.16 | 19.1 | 20.7 |
7′ | 77.4 | 76.92 | 76.86 | 32.5 | 31.9 |
8′ | 78.6 | 79.08 | 78.78 | 127.5 | 127.6 |
9′ | 171.7 | 171.50 | 171.39 | 123.4 | 135.0 |
10′ | 39.0 | 37.9 | |||
11′ | 139.8 | 138.4 | |||
12′ | 137.4 | 136.9 | |||
13′ | 134.2 | 132.3 | |||
14′ | 118.3 | 118.1 | |||
15′ | 26.8 | 26.8 | |||
16′ | 22.2 | 22.2 | |||
17′ | 22.4 | 22.4 | |||
18′ | 28.6 | 28.8 | |||
19′ | 15.9 | 19.7 | |||
20′ | 20.1 | 21.8 | |||
1″ | 129.6 | 129.6 | 129.9 | ||
2″ | 108.4 | 108.4 | 108.3 | ||
3″ | 108.5 | 108.5 | 108.4 | ||
4″ | 147.9 | 147.9 | 147.9 | ||
5″ | 147.7 | 147.9 | 147.9 | ||
6″ | 123.2 | 123.1 | 123.2 | ||
7″ | 128.7 | 128.6 | 128.4 | ||
8″ | 129.1 | 129.1 | 128.8 | ||
9″ | 69.6 | 69.6 | 69.6 | ||
4′,5′-OCH2O- | 101.4 | 101.4 | 101.4 | ||
4″,5″-OCH2O- | 101.4 | 101.4 | 101.4 |
No | 1 | 2 | 3 | 4 | 5 | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Part A | COSY | HMBC | NOESY | COSY | HMBC | NOESY | COSY | HMBC | NOESY | COSY | HMBC | NOESY | COSY | HMBC | NOESY |
1 | 2 | 2, 3 | 2 (eq) | 2 | 2, 3 | 2 (eq) | 2 | 2, 3, 10 | 2 (eq) | ||||||
2 | 1, 3 | 4, 10 | 3 (eq) | 1, 3 | 4, 10 | 3 (eq) | 1, 3 | 3 (eq) | 3 | 3 | 14 | 3 | 3 | 15 | |
3 | 2 | 1, 5 | 18 | 2 | 1, 5 | 18 | 2 | 1, 2, 5 | 18 | 2 | 1 | 2 | 2 | 2 | 15 |
4 | |||||||||||||||
5 | 6 | 6 | 6 | 3, 6, 7, 15, 11′ | 3 | 1, 6, 7 | 11, 12, 13 | ||||||||
6 | 7 | 5, 7, 8 | 19 | 7 | 5, 7, 8 | 19 | 7 | 5, 7, 8 | 19 | ||||||
7 | 6 | 14 | 6 | 14 | 6 | 6 (eq), 14 | 8, 11 | 1 | 8, 11 | 1, 11, 12, 13 | 8, 12 | ||||
8 | 7, 9 | 6, 10 | 7 (eq) | 6, 9 | 9 | ||||||||||
9 | 8 | 10 | 14 | 1, 8 | 8 | ||||||||||
10 | |||||||||||||||
11 | 7, 12, 13 | 6 | 7, 12, 13 | ||||||||||||
12 | 11 | 7 | 11 | 7 | |||||||||||
13 | 11 | 7 | 11 | 7 | |||||||||||
14 | 7, 13, 15 | 7, 15, 16 | 7, 13, 15 | 7, 15, 16 | 7, 13, 15 | 7, 15, 16 | 1, 9, 10 | 9 (eq) | 1, 9 | 2 | |||||
15 | 16, 17 | 12, 14 | 16, 17 | 12, 14 | 16, 17 | 12, 14 | 3, 5 | 5 | 2, 3 | ||||||
16 | 15 | 15 | 15 | 15 | 15 | 15 | |||||||||
17 | 16 | 13 | 15 | 16 | 13 | 15 | 16 | 13 | 15 | ||||||
18 | 3, 5 | 3, 5 | 3, 5 | ||||||||||||
19 | 5 | 5 | 5 | ||||||||||||
20 | 5, 8, 9, 10, 11 | 5, 8, 9, 10, 11 | 1, 5, 8, 9, 10, 11 | 5 | |||||||||||
Part B | |||||||||||||||
1′ | 2′ | 2′ | 2′ | 2′ | 20′ | ||||||||||
2′ | 1′ | 1′, 3′, 19′, 20′ | 1′ | 3′, 10′ | |||||||||||
3′ | 2′ | 2′, 4′ | |||||||||||||
4′ | |||||||||||||||
5′ | 6′ | 6′ | 6′ | 6′ | 3′, 7′, 10′ | 3′, 6′ | 6′ | 20′ | 6′ | ||||||
6′ | 5′ | 7′ | 5′ | 7′ | 5′ | 7′ | 5′, 7′ | 5′, 7′, 19′ | 5′, 7′ | 7′, 8′, 10′ | |||||
7′ | 2′, 8′, 8″ | 2′ | 2′, 8′, 12′, 8″ | 2′ | 2′, 8′, 12′, 8″ | 2′ | 5′, 6′, 8′, 14′ | 6′, 14′ | 6′, 9′ | ||||||
8′ | |||||||||||||||
9′ | |||||||||||||||
10′ | |||||||||||||||
11′ | |||||||||||||||
12′ | |||||||||||||||
13′ | |||||||||||||||
14′ | 9′, 12′, 15′ | 7′, 17′ | 7′, 12′, 13′, 15′ | 17′ | |||||||||||
15′ | 16′, 17′ | 16′, 17′ | 16′, 17′ | ||||||||||||
16′ | 15′ | 13′ | 15′ | ||||||||||||
17′ | 15′ | 13′ | 14′ | 15′ | |||||||||||
18′ | 3′, 5′ | 3′ | 3′, 4′, 5′, 19′ | 5′ | |||||||||||
19′ | 3′, 5′ | 2′, 6′, 20′ | 3′, 4′, 18′ | 6′ | |||||||||||
20′ | 1′, 5′, 10′ | 2′, 19′ | 5′, 9′ | ||||||||||||
1″ | |||||||||||||||
2″ | |||||||||||||||
3″ | |||||||||||||||
4″ | |||||||||||||||
5″ | 6″ | 6″ | 6″ | ||||||||||||
6″ | 5″ | 5″ | 5″ | ||||||||||||
7″ | 2″, 6″, 8″ | 9″ | 2″, 6″, 8″ | 9″ | 2″, 6″, 8″ | 9″ | |||||||||
8′; | |||||||||||||||
9″ | 2′ | 2′ | 2′ | ||||||||||||
4′,5′-OCH2O- | |||||||||||||||
4″,5″-OCH2O- |
Test Microorganism | Isolated Compounds | |||||
---|---|---|---|---|---|---|
1 | 2 | 3 | 4 | 5 | Ketoconazole | |
A. niger | 25.2 ± 0.2 | 20.2 ± 1.9 | 12 ± 2.9 | 20 ± 1.8 | 22.5 ± 2.2 | 32 ± 1.2 |
P. italicum | 20.0 ± 0.2 | 18.2 ± 1.6 | 11.4 ± 2.2 | 26.3 ± 1.1 | 12.3 ± 0.3 | 30 ± 1.4 |
C. albicans | 22.2 ± 0.2 | 17.0 ± 0.2 | – | 19 ± 2.2 | 18.0 ± 1.3 | 30 ± 5.4 |
S. cerevisiae | 21.2 ± 1.8 | 25.1 ± 1.2 | – | 20 ± 1.3 | 24.9 ± 1.4 | 33 ± 1.8 |
Compounds | A. niger | P. italicum | C. albicans | S. cerevisiae |
---|---|---|---|---|
1 | 54.87 ± 6.13 a | >100 | >100 | >100 |
2 | >100 | >100 | >100 | 58.92 ± 9.30 a |
3 | >100 | >100 | >100 | >100 |
4 | >100 | 42.78 ± 5.23 a | >100 | >100 |
5 | 62.86 ± 8.04 a | >100 | >100 | 56.32 ± 13.19 a |
Ketoconazole | 3.25 ± 1.48 a | 6.72 ± 2.23 a | 11.79 ± 4.81 a | 3.16 ± 1.51 a |
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Cheng, M.-J.; Wu, M.-D.; Chang, C.-L.; Chang, H.-S.; Chyu, C.-F.; Kuo, Y.-H. Novel Antifungal Dimers from the Roots of Taiwania cryptomerioides. Molecules 2022, 27, 437. https://doi.org/10.3390/molecules27020437
Cheng M-J, Wu M-D, Chang C-L, Chang H-S, Chyu C-F, Kuo Y-H. Novel Antifungal Dimers from the Roots of Taiwania cryptomerioides. Molecules. 2022; 27(2):437. https://doi.org/10.3390/molecules27020437
Chicago/Turabian StyleCheng, Ming-Jen, Ming-Der Wu, Chao-Lin Chang, Hsun-Shuo Chang, Chiou-Fung Chyu, and Yueh-Hsiung Kuo. 2022. "Novel Antifungal Dimers from the Roots of Taiwania cryptomerioides" Molecules 27, no. 2: 437. https://doi.org/10.3390/molecules27020437
APA StyleCheng, M. -J., Wu, M. -D., Chang, C. -L., Chang, H. -S., Chyu, C. -F., & Kuo, Y. -H. (2022). Novel Antifungal Dimers from the Roots of Taiwania cryptomerioides. Molecules, 27(2), 437. https://doi.org/10.3390/molecules27020437