Velvet antler has certain effect on improving the body’s immune cells and the regulation of immune system function, nervous system, anti-stress, anti-aging and osteoporosis. It has medicinal applications to treat a wide range of diseases such as tissue wound healing, anti-tumor, cardiovascular disease, et al. Therefore, the research on the relationship between pharmacological activities and elements in velvet antler is of great significance. The objective of this study was to comprehensively evaluate 15 kinds of elements in different varieties of velvet antlers and study on the relationship between the elements and traditional Chinese medicine efficacy for the human. The factor analysis and the factor cluster analysis methods were used to analyze the data of elements in the sika velvet antler, cervus elaphus linnaeus, flower horse hybrid velvet antler, apiti (elk) velvet antler, male reindeer velvet antler and find out the relationship between 15 kinds of elements including Ca, P, Mg, Na, K, Fe, Cu, Mn, Al, Ba, Co, Sr, Cr, Zn and Ni. Combining with MATLAB2010 and SPSS software, the chemometrics methods were made on the relationship between the elements in velvet antler and the pharmacological activities. The first commonality factor F1 had greater load on the indexes of Ca, P, Mg, Co, Sr and Ni, and the second commonality factor F2 had greater load on the indexes of K, Mn, Zn and Cr, and the third commonality factor F3 had greater load on the indexes of Na, Cu and Ba, and the fourth commonality factor F4 had greater load on the indexes of Fe and Al. 15 kinds of elements in velvet antler in the order were elk velvet antler>flower horse hybrid velvet antler>cervus elaphus linnaeus>sika velvet antler>male reindeer velvet antler. Based on the factor analysis and the factor cluster analysis, a model for evaluating traditional Chinese medicine quality was constructed. These studies provide the scientific base and theoretical foundation for the future large-scale rational relation development of velvet antler resources as well as the relationship between the elements and traditional Chinese medicine efficacy for the human.

1.
Zhigang
Sui
,
Lihua
Zhang
,
Yushu
Huo
,
Yukui
Zhang
,
Bioactive components of velvet antlers and their pharmacological properties
,
Journal of Pharmaceutical and Biomedical Analysis
87
(
2014
)
229
240
.
2.
Jiongran
Chen
,
Woodbury
,
Murray
R.
,
Alcorn
,
Jane
,
Honaramooz
,
Ali
,
Dietary Supplementation of Female Rats with Elk Velvet Antler Improves Physical and Neurological Development of Offspring
,
Evidence-based Complementary and Alternative Medicine 2012
(
2012
)
1
7
.
3.
Kumar
,
Vijay
,
Van Staden
,
Johannes
,
A Review of Swertia chirayita (Gentianaceae) as a Traditional Medicinal Plant
,
Frontiers in Pharmacology
6
(
2016
)
1
14
.
4.
Kumar
V
,
Van Staden
J
,
A Review of Swertia chirayita (Gentianaceae) as a Traditional Medicinal Plant
,
Front Pharmacol
6
(
2016
)
308
.
5.
Do
,
T.
,
Popov
,
S.
,
Marekov
,
N.
, et al.,
Iridoids from Gentianaceae Plants Growing in Bulgaria
,
Planta Medica
6
(
1987
)
580
.
6.
Chun-Ying
Xue
,
De-Zhu
Li
,
Use of DNA barcode sensu lato to identify traditional Tibetan medicinal plant Gentianopsis paludosa (Gentianaceae
),
Journal of Systematics and Evolution
49
(
2011
)
267
270
.
7.
Zhang
ZR
,
Yang
J
,
Sun
Y
, et al.,
A set of novel microsatellite markers developed for the traditional Tibetan medicinal plant Halenia elliptica (Gentianaceae
),
American Journal of Botany
98
(
2011
)
e173
5
.
8.
Shen
Yan
,
Chengbin
Zheng
,
Xiaoming
Jiang
, et al.,
Integration of hydride generation and photochemical vapor generation for multi-element analysis of traditional Chinese medicine by ICP-OES
,
Microchemical Journal
123
(
2015
)
164
169
.
9.
Chunchao
Han
,
Jia
Li
,
Qiusha
Hui
,
Determination of trace elements in Jinqi, a traditional Chinese medicine
,
Biological Trace Element Research
122
(
2008
)
122
126
.
10.
Jiaolan
Qin
,
Zhenfeng
Chen
,
Yancheng
Liu
, et al.,
Determination of Trace Metal Elements in Zanthoxylum Nitidum by ICP-AES
,
Spectroscopy and Spectral Analysis
29
(
2009
)
2851
2854
.
11.
Taylor
A.
,
Branch
S.
,
Halls
D.
, et al.,
Atomic spectrometry update:Clinical and biological materials, foods and beverages [Review]
,
Journal of Analytical Atomic Spectrometry
18
(
2003
)
385
427
.
12.
Du
Ying
,
Ouyang
Li
,
Ya-qiong
Liu
, et al.,
Wavy Distribution of Trace Elements in Phytolacca Samples from Different Areas
,
Journal of Chinese Pharmaceutical Sciences
13
(
2004
)
271
275
.
13.
Lei
Zhao
,
Jihai
Li
,
Dazhou
Zhu
,
Baoping
Ji
,
Principal Component Analysis of Nutrients in Five Varieties of Velvet Antler (Cornu Cervi Pantotrichum
),
Spectroscopy and Spectral Analysis
30
(
2010
) pp
2571
2575
.
14.
Noha M.
Shafik
,
Maha M.
El Batsh
,
Protective Effects of Combined Selenium and Punica granatum Treatment on Some Inflammatory and Oxidative Stress Markers in Arsenic-Induced Hepatotoxicity in Rats
,
Biological Trace Element Research
169
(
2016
)
121
128
.
15.
Margarida
Simõesa
,
José
Lopesa
,
Rui Abrunhosa
Gonçalvesb
,
International note: Confirmatory factor analysis and psychometric properties of the Youth Psychopathic Traits Inventory in a sample of Portuguese adolescents
,
Journal of Adolescence
47
(
2016
)
100
103
.
16.
Popov
,
Stanko
Ilić
,
Stafilov
,
Trajče
,
Šajn
,
Robert
, et al.,
Distribution of trace elements in sediment and soil from river Vardar Basin, Macedonia/Greece
,
Journal of Environmental Science and Health, Part A: Toxic/Hazardous Substances and Environmental Engineering
51
(
2016
)
1
14
.
17.
Mainka
A
,
Zajusz-Zubek
E
,
Kaczmarek
K
,
PM2.5 in Urban and Rural Nursery Schools in Upper Silesia, Poland: Trace Elements Analysis
,
Int J Environ Res Public Health
12
(
2015
)
7990
8008
.
18.
Jens
Laursen
,
Nils
Milman
,
Niels
Pind
, et al.,
The association between content of the elements S, Cl, K, Fe, Cu, Zn and Br in normal and cirrhotic liver tissue from Danes and Greenlandic Inuit examined by dual hierarchical clustering analysis
,
Journal of Trace Elements in Medicine and Biology
28
(
2014
)
50
55
.
19.
Szymański
,
Marcin
,
Witkowska-Banaszczak
,
Ewa
,
Klak
,
Natalia
, et al.,
Effects of Trace Elements on Polyphenolic Compounds in Millefolii Herba
,
Polish Journal of Environmental Studies
23
(
2014
)
459
466
.
20.
Adam
,
Abdel Majid A.
,
Salman
,
Mahmoud
,
Application of multivariate statistical analyses in the differentiation between two phosphate ores from the Nuba Mountains, Sudan
,
International Journal of Environmental Studies
69
(
2012
)
785
805
.
21.
Salvatore
Giammanco
,
Massimo
Ottaviani
,
Enrico
Veschetti
,
Temporal Variability of Major and Trace Element Concentrations in the Groundwaters of Mt. Etna (Italy): Effects of Transient Input of Magmatic Fluids Highlighted by Means of Cluster Analysis
,
pure and applied geophysics PAGEOPH
164
(
2007
)
2523
2547
.
22.
Bates
ER
,
Babb
JD
,
Casey
DE
 Jr
,
ACCF/SCAI/SVMB/SIR/ASITN 2007 clinical expert consensus document on carotid stenting: a report of the American College of Cardiology Foundation Task Force on Clinical Expert Consensus Documents (ACCF/SCAI/SVMB/SIR/ASITN Clinical Expert Consensus Document Committee on Carotid Stenting
),
Journal of the American College of Cardiology
49
(
2007
)
126
170
.
23.
S.
Canepari
,
M. L.
Astolfi
,
C.
Farao
,
M.
Maretto
,
D.
Frasca
,
M.
Marcoccia
,
C.
Perrino
,
Seasonal variations in the chemical composition of particulate matter: a case study in the Po Valley. Part II: concentration and solubility of micro- and trace-elements
,
Environmental Science and Pollution Research
21
(
2014
)
4010
4022
.
24.
Arzyńska
,
Grażyna
,
Falandysz
,
Jerzy
,
Selenium and 17 other largely essential and toxic metals in muscle and organ meats of Red Deer (Cervus elaphus) — Consequences to human health
,
Environment International
37
(
2011
)
882
888
.
25.
Karak
,
Tanmo
,
Bhagat
,
R.M.
,
Trace elements in tea leaves, made tea and tea infusion: A review
,
Food research international
43
(
2010
)
2234
2252
.
26.
Kucera
J.
,
Sabbioni
E.
,
Vandervenne
MT.
,
Bencko
V.
,
REVIEW OF TRACE ELEMENTS IN BLOOD, SERUM AND URINE FOR THE CZECH AND SLOVAK POPULATIONS AND CRITICAL EVALUATION OF THEIR POSSIBLE USE AS REFERENCE VALUES [Review]
,
The Science of the Total Environment
166
(
1995
)
211
234
.
27.
Kim A.
Eagle
,
Robert A.
Guyton
,
Ravin
Davidoff
, et al.,
ACC/AHA guidelines for coronary artery bypass graft surgery: A report of the American College of Cardiology/ American Heart Association task force on Practice Guidelines (Committee to revise the 1991 Guidelines for Coronary Artery Bypass Graft Surgery
),
Journal of the American College of Cardiology
34
(
1999
)
1262
1347
.
28.
Mendiguchia
BS
,
Aiello
I
,
Crispini
A.
,
Zn(ii) and Cu(ii) complexes containing bioactive O,O-chelated ligands: homoleptic and heteroleptic metal-based biomolecules
,
Dalton Transactions
44
(
2015
)
9321
9334
.
29.
R. Venkatesh
Kumar
,
C.D. Raghavendra
Gowda
,
Holenarasipura V.
Shivaprasad
,
Purification and characterization of ’Trimarin’ a hemorrhagic metalloprotease with factor Xa-like Activity, from Trimeresurus malabaricus snake venom
,
Thrombosis Research
126
(
2010
)
e356
.
30.
S.
Ciardullo
,
Variations in the level of some trace elements in hair of participants in the Italian expeditions in Antarctica
,
Engineering Management Journal
7
(
1999
)
1332
1334
.
31.
A.A.D.
Djama
,
M.C. Kouassi
Goffri
,
A.A.
Koua
, et al.,
Trace Elements Analysis of Some Antiparasitic Medicinal Plants in Côte d’ivoire Using Energy-Dispersive X-ray Fluorescence (EDXRF) Technique
,
Current Research Journal of Biological Sciences
3
(
2011
)
209
215
.
32.
B.K.K.K.
Jinadasaa
,
H.K.S.
De Zoysab
,
G.D.T.M.
Jayasinghea
,
Determination of the biometrical parameters, biochemical composition and essential trace metals of edible sea urchin (Stomopneustes variolaris) in Sri Lanka
,
Cogent Food & Agriculture
2
(
2016
)
1143343
.
33.
Breda
Novotnikab
,
Tea
Zuliania
,
Janez
Ščančarab
,
Content of trace elements and chromium speciation in Neem powder and tea infusions
,
Journal of Trace Elements in Medicine and Biology
31
(
2015
)
98
106
.
34.
JingKang
Guo
,
Wenhua
Deng
,
Liecheng
Zhang
,
Prediction of prostate cancer using hair trace element concentration and support vector machine method
,
Biological Trace Element Research
116
(
2007
)
257
272
.
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