1
|
GBD, Tobacco collaborators. Spatial,
temporal, and demographic patterns in prevalence of smoking tobacco
use and attributable disease burden in 204 countries and
territories, 1990-2019: A systematic analysis from the Global
burden of Disease Study 2019. Lancet. 2021:2337–2360.
2019.PubMed/NCBI View Article : Google Scholar
|
2
|
Murakami Y, Miura K, Okamura T and Ueshima
H: EPOCH-JAPAN Research Group. Population attributable numbers and
fractions of deaths due to smoking: A pooled analysis of 180,000
Japanese. Prev Med. 52:60–65. 2011.PubMed/NCBI View Article : Google Scholar
|
3
|
Ikeda N, Inoue M, Iso H, Ikeda S, Satoh T,
Noda M, Mizoue T, Imano H, Saito E, Katanoda K, et al: Adult
mortality attributable to preventable risk factors for
non-communicable diseases and injuries in Japan: A comparative risk
assessment. PLoS Med. 9(e1001160)2012.PubMed/NCBI View Article : Google Scholar
|
4
|
Wang S, Zhang C, Zhang M, Liang B, Zhu H,
Lee J, Viollet B, Xia L, Zhang Y and Zou MH: Activation of
AMP-activated protein kinase α2 by nicotine instigates formation of
abdominal aortic aneurysms in mice in vivo. Nat Med. 18:902–910.
2012.PubMed/NCBI View
Article : Google Scholar
|
5
|
Bramwell JC and Hill AV: Velocity of
transmission of the pulse-wave. Lancet. 199:891–892. 1922.
|
6
|
Yamashina A, Tomiyama H, Takeda K, Tsuda
H, Arai T, Hirose K, Koji Y, Hori S and Yamamoto Y: Validity,
reproducibility, and clinical significance of noninvasive
brachial-ankle pulse wave velocity measurement. Hypertens Res.
25:359–364. 2002.PubMed/NCBI View Article : Google Scholar
|
7
|
Tanaka H, Munakata M, Kawano Y, Ohishi M,
Shoji T, Sugawara J, Tomiyama H, Yamashina A, Yasuda H, Sawayama T
and Ozawa T: Comparison between carotid-femoral and brachial-ankle
pulse wave velocity as measures of arterial stiffness. J Hypertens.
27:2022–2027. 2009.PubMed/NCBI View Article : Google Scholar
|
8
|
Yamashina A, Tomiyama H, Arai T, Hirose K,
Koji Y, Hirayama Y, Yamamoto Y and Hori S: Brachial-ankle pulse
wave velocity as a marker of atherosclerotic vascular damage and
cardiovascular risk. Hypertens Res. 26:615–622. 2003.PubMed/NCBI View Article : Google Scholar
|
9
|
Tomiyama H, Matsumoto C, Yamada J, Yoshida
M, Odaira M, Shiina K, Nagata M and Yamashina A: Predictors of
progression from prehypertension to hypertension in Japanese men.
Am J Hypertens. 22:630–636. 2009.PubMed/NCBI View Article : Google Scholar
|
10
|
Vlachopoulos C, Aznaouridis K,
Terentes-Printzios D, Ioakeimidis N and Stefanadis C: Prediction of
cardiovascular events and all-cause mortality with brachial-ankle
elasticity index: A systematic review and meta-analysis.
Hypertension. 60:556–562. 2012.PubMed/NCBI View Article : Google Scholar
|
11
|
Mäki-Petäjä KM, Booth AD, Hall FC, Wallace
SM, Brown J, McEniery CM and Wilkinson IB: Ezetimibe and
Simvastatin reduce inflammation, disease activity, and aortic
stiffness and improve endothelial function in rheumatoid arthritis.
J Am Coll Cardiol. 50:852–858. 2007.PubMed/NCBI View Article : Google Scholar
|
12
|
Ichihara A, Hayashi M, Koura Y, Tada Y,
Kaneshiro Y and Saruta T: Long-term effects of statins on arterial
pressure and stiffness of hypertensives. J Hum Hypertens.
19:103–109. 2005.PubMed/NCBI View Article : Google Scholar
|
13
|
Tomiyama H, Takazawa K, Osa S, Hirose K,
Hirai A, Iketani T, Monden M, Sanoyama K and Yamashina A: Do
eicosapentaenoic acid supplements attenuate age-related increases
in arterial stiffness in patients with dyslipidemia?: A preliminary
study. Hypertens Res. 28:651–655. 2005.PubMed/NCBI View Article : Google Scholar
|
14
|
Kyriakos CN, Zatoński MZ and Filippidis
FT: Flavour capsule cigarette use and perceptions: a systematic
review. Tob Control: Oct 4, 2021 (Epub ahead of print).
|
15
|
Gertsch J, Leonti M, Raduner S, Racz I,
Chen JZ, Xie XQ, Altmann KH, Karsak M and Zimmer A:
Beta-caryophyllene is a dietary cannabinoid. Proc Natl Acad Sci
USA. 105:9099–9104. 2008.PubMed/NCBI View Article : Google Scholar
|
16
|
Kugo H, Zaima N, Tanaka H, Urano T, Unno N
and Moriyama T: The effects of nicotine administration on the
pathophysiology of rat aortic wall. Biotech Histochem. 92:141–148.
2017.PubMed/NCBI View Article : Google Scholar
|
17
|
Kugo H, Zaima N, Onozato M, Miyamoto C,
Hashimoto K, Yanagimoto K and Moriyama T: Suppressive effects of
dietary EPA-rich fish oil on the degradation of elastin fibers in
the aortic wall in nicotine-administered mice. Food Funct.
8:2829–2835. 2017.PubMed/NCBI View Article : Google Scholar
|
18
|
Takemoto Y, Kishi C, Sugiura Y, Yoshioka
Y, Matsumura S, Moriyama T and Zaima N: Distribution of inhaled
volatile β-caryophyllene and dynamic change of liver metabolites in
mice. Sci Rep. 11(1728)2021.PubMed/NCBI View Article : Google Scholar
|
19
|
Kishi C, Higashihara M, Takemoto Y, Kamei
M, Yoshioka Y, Matsumura S, Yamada K, Kobayashi T, Matahira Y,
Moriyama T and Zaima N: Inhaled volatile β-caryophyllene is
incorporated into the aortic wall and attenuates nicotine-induced
aorta degeneration via a CB2 receptor-dependent pathway. Biomed
Pharmacother. 153(113423)2022.PubMed/NCBI View Article : Google Scholar
|
20
|
He Y, Galaj E, Bi GH, Wang XF, Gardner E
and Xi ZX: β-caryophyllene, a dietary terpenoid, inhibits nicotine
taking and nicotine seeking in rodents. Br J Pharmacol.
177:2058–2072. 2020.PubMed/NCBI View Article : Google Scholar
|
21
|
Varga ZV, Matyas C, Erdelyi K, Cinar R,
Nieri D, Chicca A, Nemeth BT, Paloczi J, Lajtos T, Corey L, et al:
β-caryophyllene protects against alcoholic steatohepatitis by
attenuating inflammation and metabolic dysregulation in mice. Br J
Pharmacol. 175:320–334. 2018.PubMed/NCBI View Article : Google Scholar
|
22
|
Amalraj A, Jacob J, Varma K and Gopi S:
Preparation and characterization of liposomal β-caryophyllene
(Rephyll) by nanofiber weaving technology and its effects on
delayed onset muscle soreness (DOMS) in humans: A randomized,
double-blinded, crossover-designed, and placebo-controlled study.
ACS Omega. 5:24045–24056. 2020.PubMed/NCBI View Article : Google Scholar
|
23
|
Kanda Y: Investigation of the freely
available easy-to-use software ‘EZR’ for medical statistics. Bone
Marrow Transplant. 48:452–458. 2013.PubMed/NCBI View Article : Google Scholar
|
24
|
Patton JS, Fishburn CS and Weers JG: The
lungs as a portal of entry for systemic drug delivery. Proc Am
Thorac Soc. 1:338–344. 2004.PubMed/NCBI View Article : Google Scholar
|
25
|
Henningfield JE: Nicotine medications for
smoking cessation. N Engl J Med. 333:1196–1203. 1995.PubMed/NCBI View Article : Google Scholar
|
26
|
Benowitz NL, Hukkanen J and Jacob P: III:
Nicotine chemistry, metabolism, kinetics and biomarkers. Handb Exp
Pharmacol. 192:29–60. 2009.PubMed/NCBI View Article : Google Scholar
|
27
|
D'Ruiz CD, Graff DW and Yan XS: Nicotine
delivery, tolerability and reduction of smoking urge in smokers
following short-term use of one brand of electronic cigarettes. BMC
Public Health. 15(991)2015.PubMed/NCBI View Article : Google Scholar
|
28
|
Adams TB, Gavin CL, McGowen MM, Waddell
WJ, Cohen SM, Feron VJ, Marnett LJ, Munro IC, Portoghese PS,
Rietjens IM and Smith RL: The FEMA GRAS assessment of aliphatic and
aromatic terpene hydrocarbons used as flavor ingredients. Food Chem
Toxicol. 49:2471–2494. 2011.PubMed/NCBI View Article : Google Scholar
|
29
|
Fard MR and Zarezadeh N: Relationship
between FEV1 and PaO2, PaCO2 in patients with
chronic bronchitis. Tanaffos. 3:41–46. 2004.
|
30
|
Youssef DA, El-Fayoumi HM and Mahmoud MF:
Beta-caryophyllene protects against diet-induced dyslipidemia and
vascular inflammation in rats: Involvement of CB2 and PPAR-γ
receptors. Chem Biol Interact. 297:16–24. 2019.PubMed/NCBI View Article : Google Scholar
|
31
|
Irrera N, D'Ascola A, Pallio G, Bitto A,
Mazzon E, Mannino F, Squadrito V, Arcoraci V, Minutoli L, Campo GM,
et al: β-caryophyllene mitigates collagen antibody induced
arthritis (CAIA) in mice through a cross-talk between CB2 and
PPAR-γ receptors. Biomolecules. 9(326)2019.PubMed/NCBI View Article : Google Scholar
|
32
|
Wu C, Jia Y, Lee JH, Jun HJ, Lee HS, Hwang
KY and Lee SJ: Trans-caryophyllene is a natural agonistic ligand
for peroxisome proliferator-activated receptor-α. Bioorg Med Chem
Lett. 24:3168–3174. 2014.PubMed/NCBI View Article : Google Scholar
|
33
|
Ames-Sibin AP, Barizão CL, Castro-Ghizoni
CV, Silva FMS, Sá-Nakanishi AB, Bracht L, Bersani-Amado CA,
Marçal-Natali MR, Bracht A and Comar JF: β-caryophyllene, the major
constituent of copaiba oil, reduces systemic inflammation and
oxidative stress in arthritic rats. J Cell Biochem.
119:10262–10277. 2018.PubMed/NCBI View Article : Google Scholar
|
34
|
Al-Taee H, Azimullah S, Meeran MFN, Alaraj
Almheiri MK, Al Jasmi RAA, Tariq S, Ab Khan M, Adeghate E and Ojha
S: β-caryophyllene, a dietary phytocannabinoid attenuates oxidative
stress, inflammation, apoptosis and prevents structural alterations
of the myocardium against doxorubicin-induced acute cardiotoxicity
in rats: An in vitro and in vivo study. Eur J Pharmacol.
858(172467)2019.PubMed/NCBI View Article : Google Scholar
|
35
|
Brito LF, Oliveira HBM, das Neves Selis N,
E Souza CLSE, Júnior MNS, de Souza EP, Silva LSCD, de Souza
Nascimento F, Amorim AT, Campos GB, et al: Anti-inflammatory
activity of β-caryophyllene combined with docosahexaenoic acid in a
model of sepsis induced by Staphylococcus aureus in mice. J Sci
Food Agric. 99:5870–5880. 2019.PubMed/NCBI View Article : Google Scholar
|
36
|
Fontes LBA, Dias DDS, Aarestrup BJV,
Aarestrup FM, Da Silva Filho AA and Corrêa JODA: β-caryophyllene
ameliorates the development of experimental autoimmune
encephalomyelitis in C57BL/6 mice. Biomed Pharmacother. 91:257–264.
2017.PubMed/NCBI View Article : Google Scholar
|
37
|
Basha RH and Sankaranarayanan C:
β-caryophyllene, a natural sesquiterpene lactone attenuates
hyperglycemia mediated oxidative and inflammatory stress in
experimental diabetic rats. Chem Biol Interact. 245:50–58.
2016.PubMed/NCBI View Article : Google Scholar
|
38
|
Wagenhäuser MU, Schellinger IN, Yoshino T,
Toyama K, Kayama Y, Deng A, Guenther SP, Petzold A, Mulorz J,
Mulorz P, et al: Chronic nicotine exposure induces murine aortic
remodeling and stiffness segmentation-implications for abdominal
aortic aneurysm susceptibility. Front Physiol.
9(1459)2018.PubMed/NCBI View Article : Google Scholar
|