Preventive Dose of Melatonin on Postoperative Pain in Total Abdominal Hysterectomy: A Clinical Trial Study
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Abstract
Background & Objective: Studies have shown contradictory results regarding the use of pregabalin and melatonin as analgesic agents. Because the analgesic effects of these drugs as preemptive have not been compared in abdominal hysterectomy, one of the most common surgical procedures in women with moderate to severe pain, under general anesthesia. The aim of this study was to compare the pretreatment effects of melatonin and pregabalin on postoperative pain intensity in total abdominal hysterectomy (TAH).Materials & Methods: Ninety Patients were randomly divided into three groups (N=30): the first group received oral melatonin (6 mg), the second group received pregabalin (50 mg), and the third one who took no drug. Serum melatonin and beta-endorphin levels were measured before and after the surgery. Pain intensity was assessed by the Numerical Rating Scale at 1,6,12, and 24 hours after the surgeries.Results: At 12 hrs after the surgery, mean pain intensity in the melatonin group was significantly lower than the pregabalin group, and in the pregabalin group was significantly lower than the third group (P<0.05). At 24 hrs after the TAH, the mean pain intensity in the melatonin group was significantly lower than the third group (P<0.05).Conclusion: Injection preventive melatonin is more effective than pregabalin to reduce pain throughout the first 24 hrs after the TAH.
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Background
& Objective: Studies have shown contradictory results regarding the use
of pregabalin and melatonin as analgesic agents. Because the analgesic effects of these
drugs as preemptive have not been compared in abdominal hysterectomy, one of the
most common surgical procedures in women with moderate to severe pain, under
general anesthesia. The aim of this study was to compare the pretreatment effects of
melatonin and pregabalin on postoperative pain intensity in total abdominal
hysterectomy (TAH).
Materials
& Methods: Ninety Patients were randomly divided into three groups
(N=30): t
he first group received oral melatonin (6 mg), the second group received
pregabalin (50 mg), and the third one who took no drug. Serum melatonin and beta -
endorphin levels were measured before and after the surgery. Pain intensity was
assessed by the Numerical Rating Scale at 1,6,12, and 24 hours after the surgeries.
Results
At 12 hrs after the surgery, mean pain intensity in the melatonin group was
significantly lower than the pregabalin group, and in the pregabalin group was
significantly lower than the third group (P<0.05). At 24 hrs after the TAH, the mean
pain intensity in the melatonin group was significantly lower than the third group
(P<0.05).
Conclusion
injection preventive melatonin is more effective than pregabalin to
reduce pain throughout the first 24 hrs after the TAH.
Keywords
Hysterectomy, Melatonin, Pain, Pregabalin
Received: 2023/05/05;
Accepted: 2023/12/24;
Published Online: 22 Jan 2024;
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article online
Corresponding Information:
Mahmood Abedinzade,
Department of Physiology, School of
Medicine, Guilan University of Medical
Sciences, Rasht, Iran
Email: [email protected]
Copyright © 2024, This is an original open-access article distributed under the terms of the Creative Commons Attribution-noncommercial 4.0 International License
which permits copy and redistribution of the material just in noncommercial usages with proper citation.
Introduction
Nowadays, postoperative pain control is one of the
most important concerns of the medical team. They are
looking for the best and the most affordable ways for
postoperative pain management. In addition to the best
kind of pain control, reduction of the side effects of
drugs also minimizes the costs imposed on hospitals
and patients (1, 2) . Currently, the most common
Methods
of pain management are the use of opioid
analgesics, non-drug analgesics, and local anesthetics
used in regional anesthesia. Although opioids have
serious side effects, they are still commonly prescribed
for pain management (3). Recent studies have been
presented, the commencement of pain control before
the surgery is one of the most important factors to
reduce postoperative pain and stress. According to this
hypothesis, analgesia will be more effective when
begins before the initial surgical stimulation.
Prescribing analgesic agents before the onset of pain
gives the drug enough time to reach the proper serum
level before patients complain of pain. In this case, pain
control can be better, faster, and more effective (4, 5).
Melatonin (N -acetyl-5-methoxytryptamine), a
hormone secreted by the pineal gland, is a good option
for use as a preemptive due to its sedative, analgesic,
and its anti stress effects. Melatonin is made from the
amino acid tryptophan in the pineal gland and presents
Katayoun Haryalchi et al. 30
Volume 9, January – February 2024 Journal of Obstetrics, Gynecology and Cancer Research
as a hormone and antioxidant in all tissues of the body
(6, 7) . Although the results of several studies have
shown; preoperative melatonin administration reduces
opioid consumption and postoperative pain, its
analgesic effects have not yet been fully elucidated.
Therefore, it is necessary to compare the
antinociceptive effects of melatonin alone with other
drugs prescribed as pain medication (8).
Anticonvulsant drugs are prescribed to control
chronic neuropathic pain. These drugs, such as
pregabalin, appear to be effective to control and
manage postoperative pain (9). Pregabalin is a gamma
aminobutyric acid (GABA) analogue. Past studies have
shown that this drug has a high affinity for binding to
the α2 -δ protein. This protein is found in calcium
voltage channels in the central nervous system (10, 11).
This drug inhib its the release of many
neurotransmitters, including glutamate, noradrenaline,
and substance p. It is used to control neuropathic pain,
generalized and partial seizures, and post -operative
pain (12). Studies have shown contradictory results
regarding the u se of pregabalin and melatonin as
analgesic agents. Also, the analgesic effects of these
drugs as preemptive have not been compared in
abdominal hysterectomy, one of the most common
surgical procedures in women with moderate to severe
pain, under general anesthesia. We designed this study
to compare the effects of melatonin and pregabalin as
a preventive drug to postoperative pain control in
patients undergoing Total abdominal hysterectomy
(TAH).
Methods
After approval by the University Ethics Committee
(ethical code: IR.GUMS.REC.1394.230 & IRCT
registration number: IRCT2015090816325N3), 90
patients candidates for elective TAH THA with
physical status I, II according to American Society of
Anesthesiologists criteria were enrolled in a double -
blind clinical trial study with informed consent. During
2017-2018, these patients were referred to Al -Zahra
Obstetrics and Gynecology Center (Rasht, Iran) for
treatment of uterine fibroids, uterine prolapse,
endometriosis, persistent prolonged bleeding. Patients
with cardiac, pulmonary, hepatic, renal, autoimmune,
psychiatric disorders, diabetes, gastrointestinal,
seizure, leukemia, allergy, sleep disorders, and chronic
history of analgesic and psychotropic medication usage
during one week before the surgery were not inc luded
in the study (13-15).
The night before the surgery, patients were randomly
divided into three groups: melatonin, pregabalin, and
no drug. In the melatonin group, patients received 6 mg
of melatonin (two pills each one with the dosage of 3
mg) (16, 17) , 2 hrs before the surgery, and in the
pregabalin group, patients received 50 mg of
pregabalin and the third group did not receive any drug
(18, 19). The volunteers in the study were unaware of
the groups, and the medication was administered by a
member of the treatment staff who was not aware of the
grouping. To prevent dehydration, Ringer intravenous
injection was started before induction of anesthesia for
all three groups.
Anesthesia was induced with fentanyl (as opioid) "2
μg / kg", thiopental (as hyp notic) "5 mg / kg" and
atracurium (as relaxant) "0.6 mg / kg". Maintenance
was followed with Isoflurane with a MAC dose of 1 -
1.5, 50% / 50% N2O / O2, and fentanyl maintenance
doses of "1 µg / kg" (if heart rate increases by more
than 20% above baseline bef ore anesthesia), and
atracurium (0.2 mg/kg). Neuromuscular block was
reversed at the end of surgery with Neostigmine 0.02
mg / kg + Atropine 0.04 mg / kg.
During anesthesia and surgery, monitoring was
performed by ECG, SaO2, and capnography to
determine CO2 (35-34) and non -invasive blood
pressure monitoring every five minutes. The amount of
neuromuscular block was assessed by a nerve
stimulator. The duration of surgery, the time of
anesthesia, and the amount of fentanyl dosage were
carefully recorded. Postoperative pain was controlled
using 1 µg / kg fentanyl injections in consideration of
NRS ≥ 4. In the early hours after the surgery, heart rate,
mean arteri al pressure, respiratory rate, SpO2, and
fentanyl levels were recorded. Any side effects
including nausea, vomiting, respiratory depression,
dizziness, diplopia, itching, and tremor were recorded
and reported to the anesthesiologist. Ondansetron with
a dosage of 4 mg IV injection is used to control nausea.
Pain severity was measured with the numeric rating
Scale (NSR) at 1, 6, 12, and 24 hours after the surgery.
The NSR contains 10 points that patients report using
their pain level. The number 0 is considered as painless,
1-3 mild pain, 4-6 moderate pain, and 7-10 severe pain.
Serum melatonin and beta- endorphin levels were
measured immediately before and after the surgery
with 5 cc blood samples in all three groups. The
samples were then centrifuged at 3500 rpm for 15
minutes. Isolated serum was stored at -20 ° C. ELISA
technique was used to measure serum melatonin
(EASTBIOPHARM melatonin (H) _96Test) and beta-
endorphin (EASTBIOPHARM Beta -Endorphin (H)
_96Test) levels.
Statistical analysis
The results of this study were evaluated using SPSS
(Statistic Package for Social Science) software, version
16.0 (IBM, USA). ANOVA test was used to compare
the severity of pain in the postoperative hours after the
surgery and to compare the beta- endorphin and
melatonin lev els before and after the surgery. The
Results
were expressed as mean and standard deviation
and the significance level was considered as less than
5 percent in all tests.
Results
Postoperative Pain intensity
31 Melatonin and Postoperative Pain in Hysterectomy
Volume 9, January – February 2024 Journal of Obstetrics, Gynecology and Cancer Research
The mean pain intensity at 1, 6, 12, and 24 hr s after
the surgery was compared between three groups and
data analysis showed a significant difference in pain
intensity. The results presented; the pain intensity at
one hour after the surgery in the melatonin group was
lower than the third group signifi cantly (P = 0.01). At
12 hours after the surgery, the mean pain intensity in
the melatonin group was lower than the pregabalin
group significantly (P = 0.001) and in the pregabalin
group was lower than the third group significantly (P =
0.004). At 24 hrs a fter the surgery, the mean pain
intensity in the melatonin group was significantly
lower than the third group (P = 0.003) (Table 1
).
Table 1. Comparison of pain intensity in the first 24 hours after surgery between the three groups (Mean ± SD)
Pain Intensity
Study Groups
P value
Melatonin Pregabalin Placebo
1 hour after surgery 4.8 ± 2.41 5.8 ± 2.48 8.2 ± 1.39 0.009
6 hour after surgery 5.85 ± 1.95 7 ± 1.41 7.1 ± 1.59 0.3
12 hour after surgery 4.14 ± 1.95 8 ± 1 5 ± 1.15 0.001
24 hour after surgery 1.28 ± 0.48 2.2 ± 0.83 3.9 ± 1.79 0.002
Serum Beta-Endorphin levels before and after the
surgery
Comparing the mean beta- endorphins of the three
groups before surgery did not show a significant
difference ( Table 2 ). Comparison of postoperative
beta-endorphin levels showed a significant difference
between melatonin and the third group (P = 0.04).
Table 2. Serum beta-endorphin level before and after surgery (Mean ± SD)
Groups before surgery after surgery
Melatonin 37.52 ± 27.43 42.33 ± 30.31
Pregabalin 57.74 ± 40.13 63.1 ± 33.87
Placebo 77.85 ± 59.4 94.19 ± 67.94
P value 0.09 0.04
Serum melatonin levels before and after the
surgery
Comparison of mean melatonin levels in three
groups showed no significant difference before and
after the surgery (Table 3).
Table 3. Serum melatonin levels before and after surgery (Mean ± SD)
Group before surgery after surgery
Melatonin 32.52 ± 20.07 33 ± 13.79
Pregabalin 37.46 ± 18.02 36.77 ± 13.47
Placebo 36.46 ± 24.94 48.39 ± 26.19
P value 0.8 0.1
Discussion
In the present study, we assessed mean postoperative
pain intensity, and compared serum melatonin and
beta-endorphin levels throughout the preoperative and
postoperative periods in patients undergoing total
abdominal hysterectomy. The results illustrated;
patients receiving melatonin before the surgery have
less pain intensity than other groups during the first 24
hours after the surgery, which could reduce opioid
consumption during this period.
We have shown in previous studies that the use of
anesthetic supplements such as magnesium sulfate
reduces the severity of postoperative pain and opiate
consumption (13). In this study, we evaluated the
severity of postoperative pain following melatonin and
pregabalin administrat ion. Some studies show that
melatonin reduces the intensity of pain induced by
electrical, mechanical, chemical, and surgical stimuli
(20). Caumo et al. investigated the antinociceptive
Katayoun Haryalchi et al. 32
Volume 9, January – February 2024 Journal of Obstetrics, Gynecology and Cancer Research
effects of preoperative administration of melatonin.
The results showed that melatonin reduces the severity
of pain and drug usage in the first two hrs after the
surgery, which is in line with the results of the present
study (21). Hosseini, Yekta (22) studied the analgesic
effects of preoperative melatonin administration at a
dose of 5 mg on patients undergoing laparoscopic
cholecystectomy. They observed that melatonin
reduces pain intensity and opioid consumption after the
surgery (22). Nethra and cow orkers concluded;
preemptive melatonin with a dosage of 3 mg produced
analgesia within six hrs after the surgery, so the need
for analgesics decreased throughout the 24 hours. The
Results
were the same as ours (23). A study by Khezri
et al. showed sublingu al usage of melatonin with a
dosage of 30 mg could not make analgesia after
Cesarean Section, which was contrary to our findings
and may be due to differences in the type of surgery
and anesthesia (24).
In animal studies, the antinociceptive effects of
melatonin have been shown to be dose-dependent. The
mechanism of the analgesic effects of melatonin is not
well understood (25) . Melatonin exerts analgesic
effects through GABA -B receptors, opiate receptors,
and activation of melatonin receptors. Melatonin al so
reduces the pain intensity by suppressing the
expression of TNF -alpha and other inflammatory
factors (26).
In our study, the mean pain intensity in patients
receiving pregabalin was lower than the third group,
but there was no significant difference between the two
groups. The results of the study of Imam et al. showed
that administration of 150 mg of pregabali n before the
surgery reduces the severity of pain in the first 24 hrs
after abdominal hysterectomy, which was the same as
ours (27). The results of the Ghai et al. study showed
prescribing 300 mg of pregabalin one hour before the
abdominal hysterectomy, reduces preoperative anxiety
and pain without unpleasant sedative effects in the first
hours of recovery (28). In the study of Jokela et al.,
preoperative administration of 300 mg pregabalin in
patients undergoing laparoscopic abdominal
hysterectomy reduced postoperative pain and opioid
consumption, which is consistent with the results of the
present study (29).
Pregabalin seems to have analgesic effects by
binding to the α1,2- δ subunit of the voltage -gated
calcium channel. Chronic administration of pregabalin
also reduces the level of expression of this subunit in
the dorsal horn of the spinal cord and presynaptic nerve
terminals and controls pain, especially chronic pain
(30, 31) . In this study, we measured and compared
serum levels of melatonin and beta -endorphin before
and after the surgery to evaluate the antinociceptive
effect of melatonin and pregabalin. There was no
significant difference between preoperative and
postoperative melatonin levels, but beta -endorphin
levels were significantly different in the three groups.
Also, the beta -endorphin level after the surgery was
higher than the pre -surgical level. Studies show that
beta-endorphin levels increase following abdominal
surgery (32). The beta- endorphin antinociceptive
mechanism in the central nervous system is well -
defined, but the plasma analgesic effects of beta-
endorphin are not fully understood (33).
It seems in this study, preoperative administration of
melatonin and pregabalin increases the endogenous
opioid, which reduces postoperative pain intensity and
opioid consumption. Previous studies have also
illustrated beta -endorphin levels increases after
melatonin administration (34) . In this regard, maybe
measurement of plasma level of beta- endorphin could
be used to assess acute and chronic postoperative pain.
In a study by Popovic et al., measurement of serum
beta-endorphin levels before and after abdominal
surgery showed; the level of this endogenous opioid
increased within the first 24 hrs after the surgery, which
is consistent with the results of our study (35) . Beta-
endorphin levels increase following general anesthesia,
and opioid consumption inhibits this increase severely,
but nonopioid supplement agents did not decrease
serum beta-endorphin levels in this study (36).
Our results showed; there was no significant
difference between serum melatonin levels before and
after the surgery. Although opiate drugs increase serum
melatonin levels, in this study, its serum level did not
change significantly following the administration of
melatonin and pregabalin. Factors such as anesthesia
and surgery affect serum melatonin levels (37). It has
been proved that following general anesthesia, serum
melatonin levels decrease on the first night after the
surgery, causing sleep disturbances in patients. In a
study on patients undergoing orthopedic surgery, urine
sulfatoxymelatonin (the main metabolite of melatonin)
decreased in the early hours after the surgery following
general anesthesia with thiopental and isoflurane (38) .
However, some studies reported conflicting results. For
example, during anesthesia with fentanyl and
thiopental, serum melatonin levels increased, which is
in agreement with our study. Anesthetic drugs are
effective at the serum melatonin levels. For example,
isoflurane increases melatonin level during the surgery
and sevoflurane decreases its level (39).
In conclusion, preoperative administration of
melatonin and pregabalin reduces the pain intensity
throughout the first 24 hrs after the abdominal
hysterectomy under general anesthesia. B ut further
clinical studies on the beneficial effects of melatonin in
different surgical procedures are recommended.
Conclusion
Preoperative administration of both melatonin and
pregabalin reduces the pain intensity throughout the
first day after the TAH under GA, but preventive
melatonin is more effective than pregabalin to reduce
pain in the patients.
33 Melatonin and Postoperative Pain in Hysterectomy
Volume 9, January – February 2024 Journal of Obstetrics, Gynecology and Cancer Research
Acknowledgments
We appreciate all the kind co -operation of all our
colleagues, without whom this research was not
possible to be conducted properly.
Conflict of Interest
The authors report no conflict of interest regarding
publication of this paper.
Funding
This study was financially supported by the Vice -
Chancellorship of Research and Technology, Guilan
University of Medical Science.
1. Bardiau FM, Taviaux NF, Albert A, Boogaerts
JG, Stadler M. An intervention study to enhance
postoperative pain management. Anesth Analg.
2003;96(1):179-85. [ DOI:10.1213/00000539-
200301000-00038] [ DOI:10.1097/00000539-
200301000-00038] [PMID]
2. Apfelbaum JL, Chen C, Mehta SS, Gan TJ.
Postoperative Pain Experience: Results from a
National Survey Suggest Postoperative Pain
Continues to Be Undermanaged. Anesth Analg.
2003;97(2):534-40. [PMID]
[DOI:10.1213/01.ANE.0000068822.10113.9E]
3. Hosseinzadeh Zorofchi B, Jahan E, Nassiri S ,
Najmodin A, Saffarieh E. Comparing Spinal and
General Anesthesia in terms of Postoperative
Pain in Patients undergoing Hysterectomy. J
Obstet Gynecol Cancer Res. 2022;3(2):73-7.
[DOI:10.30699/jogcr.3.2.73]
4. Javanmanesh F, Kashanian M, Zamani V,
Sheikhansari N. Effects of Gabapentin on Pain
Relief and Need for Opiates after Total
Abdominal Hysterectomy. J Obstet Gynecol
Cancer Res. 2022;3(3):99-103.
[DOI:10.30699/jogcr.3.3.99]
5. Ong CKS, Lirk P, Seymour RA, Jenkins BJ. The
Efficacy of Preemptive Analgesia for Acute
Postoperative Pain Management: A Meta-
Analysis. Anesth Analg. 2005;100(3):757 -73.
[DOI:10.1213/01.ANE.0000144428.98767.0E]
[PMID]
6. Kurdi MS, Patel T. The role of melatonin in
anaesthesia and critical care. Indian J Anaesth .
2013;57(2):137-44. [PMID] [PMCID]
[DOI:10.4103/0019-5049.111837]
7. Capuzzo M, Zanardi B, Schiffino E, Buccoliero
C, Gragnaniello D, Bianchi S, Alvisi R.
Melatonin Does Not Reduce Anxiety More than
Placebo in the Elderly Undergoing Surgery.
Anesth Analg. 2006;103(1):121-3. [PMID]
[DOI:10.1213/01.ane.0000222476.62547.ed]
8. Yousaf F, Seet E, Venkatraghavan L, Abrishami
A, Chung F, Warner DS. Effi cacy and Safety of
Melatonin as an Anxiolytic and Analgesic in the
Perioperative Period: A Qualitative Systematic
Review of Randomized Trials. Anesthesiology.
2010;113(4):968-76. [PMID]
[DOI:10.1097/ALN.0b013e3181e7d626]
9. Hegarty DA, Shorten GD. A randomised,
placebo-controlled trial of the effects of
preoperative pregabalin on pain intensity and
opioid consumption following lumbar
discectomy. Korean J Pain. 2011;24(1):22- 30.
[DOI:10.3344/kjp.2011.24.1.22] [PMID]
[PMCID]
10. Belliotti TR, Capiris T, Ekhato IV, Kinsora JJ,
Field MJ, Heffner TG, et al. Structure−Activity
Relationships of Pregabalin and Analogues That
Target the α2 -δ Protein. J M ed Chem. 2005;
48(7):2294-307. [DOI:10.1021/jm049762l]
[PMID]
11. Park S, Ahn ES, Han DW, Lee JH, Min KT, Kim
H, Hong YW. Preg abalin and gabapentin inhibit
substance P‐induced NF‐κB activation in
neuroblastoma and glioma cells. J Cell Biochem.
2008;105(2):414-23. [ DOI:10.1002/jcb.21837]
[PMID]
12. Blommel ML, Blommel AL. Pregabalin: An
antiepileptic agent useful for neuropathic pain.
Am J Health Syst Pharm. 2007;64(14):1475- 82.
[DOI:10.2146/ajhp060371] [PMID]
13. Haryalchi K, Abedinzade M, Khanaki K,
Mansour Ghanaie M, Mohammad Zadeh F.
Whether preventive low dose magnesium
sulphate infusion has an influence on
postoperative pain perception and the level of
serum beta -endorphin throughout the total
abdominal hysterectomy. Rev Esp Anestesiol
Reanim. 2017;64(7):384-90.
[DOI:10.1016/j.redar.2016.11.009] [PMID]
14. Asgari Z, Rouholamin S, Nataj M, Sepidarkish
M, Hosseini R, Razavi M. Dose ranging effects
of pregabalin on pain in patients undergoing
laparoscopic hysterectomy: A randomized,
double blinded, placebo controlled, clinical trial.
J Clin Anesth. 2017;38:13-7.
[DOI:10.1016/j.jclinane.2017.01.015] [PMID]
References
Katayoun Haryalchi et al. 34
Volume 9, January – February 2024 Journal of Obstetrics, Gynecology and Cancer Research
15. Ribeiro SC, Ribeiro RM, Santos NC, Pinotti JA.
A randomized study of total abdominal, vaginal
and laparoscopic hysterectomy. Int J Gynaecol
Obstet. 2003;83(1):37-43. [PMID]
[DOI:10.1016/S0020-7292(03)00271-6]
16. Borazan H, Tuncer S, Yalcin N, Erol A,
Otelcioglu S. Effects of preoperative oral
melatonin medication on postoperative analgesia,
sleep quality, and sedation in patients undergoing
elective prostatectomy: a randomized clinical
trial. J Anesth. 2010;24:155-60.
[DOI:10.1007/s00540-010-0891-8] [PMID]
17. Banu A, Rajpurohit JS, Tarani Y. A Hospital
Based Comparative Study to Evaluate the
Efficacy of 150 Mgs of Oral Pregabalin and 6 Mg
Oral Melatonin Used as Premedication to
Attenuate Stress Response and Haemodynamic
Responses in Cholecystectomy for Laparoscopic
Surgery. Int J Health Clin Res. 2021;4(6):283-7.
18. Feltner DE, Crockatt JG, Dubovsky SJ, Cohn
CK, Shrivastava RK, T argum SD, et al. A
Randomized, Double-Blind, Placebo-Controlled,
Fixed-Dose, Multicenter Study of Pregabalin in
Patients With Generalized Anxiety Disorder. J
Clin Psychopharmacol. 2003;23(3):240-9.
[DOI:10.1097/01.jcp.0000084032.22282.ff]
[DOI:10.1097/10.1097/00004714-200 306000-
00005] [PMID]
19. Peng PWH, Li C, Farcas E, Haley A, Wong W,
Bender J, Chung F. Use of low -dose pregabalin
in patients undergoing laparoscopic
cholecystectomy. Br J Anaesth. 2010;105(2):
155-61. [DOI:10.1093/bja/aeq116] [PMID]
20. Zhu C, Xu Y, Duan Y, Li W, Zhang L, Huang Y,
et al. Exogenous melatonin in the treatment of
pain: a systematic review and meta -analysis.
Oncotarget. 2017;8(59):100582- 92. [ PMCID]
[DOI:10.18632/oncotarget.21504] [PMID]
21. Caumo W, Levandovski R, Hidalgo MPL.
Preoperative Anxiolytic Effect of Melatonin and
Clonidine on Postoperative Pain and Morphine
Consumption in Patients Undergoing Abdominal
Hysterectomy: A Double -Blind, Randomized,
Placebo-Controlled Study. J Pain Res. 2009;
10(1):100-8. [ DOI:10.1016/j.jpain.2008.08.007]
[PMID]
22. Hosseini VS, Yekta RA, Marashi S, Marashi SM.
The efficacy of melatonin, clonidine and
gabapentin in reducing preoperative anxiety and
postoperative pain in patients undergoing
laparoscopic cholecystectomy: a random ized
clinical trial. Arch Anesthesiol Crit Care. 2015;
1(4):120-5.
23. K P M, S.S N, K S, Kannan S, S S. Efficacy of
preoperative oral melatonin on post operative
pain in patients undergoing infraumbilical
surgeries under subarachnoid block: A double
blind rand omized control study. Indian J Clin
Anaesth. 2019;6:420-4.
[DOI:10.18231/j.ijca.2019.081]
24. Beigom Khezri M, Delkhosh Reihany M, Oveisy
S, Mohammadi N. Evaluation of the Analgesic
Efficacy of Melatonin in Patients Undergoing
Cesarean Section Under S pinal Anesthesia: A
Prospective Randomized Double- blind Study.
Iran J Pharm Res. 2016;15(4):963-71.
25. Mickle A, Sood M, Zhang Z, Shahmohammadi
G, Sengupta JN, Miranda A. Antinociceptive
effects of melatonin in a rat model of post-
inflammatory visceral hyperalgesia: A centrally
mediated process. PAIN. 2010;149(3):555- 64.
[DOI:10.1016/j.pain.2010.03.030] [PMID]
[PMCID]
26. Gitto E, Aversa S, Salpietro CD, Barberi I, Arrigo
T, Trimarchi G, et al. Pain in neonatal intensive
care: role of melatonin as an analgesic
antioxidant. J Pineal Res. 2012;52(3):291-5.
[DOI:10.1111/j.1600-079X.2011.00941.x]
[PMID]
27. Eman A, Bilir A, Beyaz SG. The effects of
preoperative pregabalin on postoperative
analgesia and morphine consumption after
abdominal hysterectomy. Acta Med Mediterr.
2014;30(2):481-5.
28. Ghai A, Gupta M, Hooda S, Singla D, Wadhera
R. A randomized controlled trial to compare
pregabalin with gabapentin for postoperative pain
in abdominal hysterectomy. Saudi J Anaesth.
2011;5(3):252-7. [PMID] [PMCID]
[DOI:10.4103/1658-354X.84097]
29. Jokela R, Ahonen J, Tallgren M, Haanpää M,
Korttila K. A randomized controlled trial of
perioperative administration of pregabalin for
pain after laparoscopic hysterectomy. Pain. 2008;
134(1):106-12.
[DOI:10.1016/j.pain.2007.04.002] [PMID]
30. Stahl SM. Anticonvulsants and the Relief of
Chronic Pain: Pregabalin and Gabapentin as
alpha~ 2delta Ligands at Voltage-Gated Calcium
Channels. J Clin Psychiatry. 2004;65:596-7.
[DOI:10.4088/JCP.v65n0401]
[DOI:10.4088/JCP.v65n0501] [PMID]
31. Sills GJ. The mechanisms of action of gabapentin
and pregabalin. Curr Opin Pharmacol. 2006;6(1):
108-13. [DOI:10.1016/j.coph.2005.11.003]
[PMID]
32. Dubois M, Pickar D, Cohen MR, Roth YF,
Macnamara T, Bunney WE. Surgical stress in
humans is acompanied by an increase in plasma
beta-endorphin immunoreactivity. Life Sci.
1981;29(12):1249-54. [PMID]
[DOI:10.1016/0024-3205(81)90230-7]
35 Melatonin and Postoperative Pain in Hysterectomy
Volume 9, January – February 2024 Journal of Obstetrics, Gynecology and Cancer Research
33. Bruehl S, Burns JW, Chung OY, Chont M.
Interacting effects of trait anger and acute anger
arousal on pain: the role of endogenous opioi ds.
Psychosom Med. 2011;73(7):612-9. [PMCID]
[DOI:10.1097/PSY.0b013e318227cb88] [PMID]
34. Yu CX, Wu GC, Xu SF, Chen CH. [Effect of
melatonin on release of beta- endorphin,
norepinephrine and 5 -hydroxytryptamine in rat
brain]. Yao Xue Xue Bao. 2001;36(1):5-9.
35. Popović N, Kojić ZŽ, Bumbaširev ić VŽ,
Pavlović A, Stefanović B, Karamarković AP, et
al. Determination of beta -endorphin plasma
concentrations in surgical patients with acute
abdominal pain. Acta Chir Iugosl. 2004;51(3):51-
5. [DOI:10.2298/ACI0403051P] [PMID]
36. Frederickson RCA, Geary LE. Endogenous
opioid peptides: review of physiological,
pharmacological and clinical aspects. Prog
Neurobiol. 1982;19(1):19-69.
[DOI:10.1016/0301-0082(82)90020-X] [PMID]
37. Lapwood KR, Bhagat L, Simpson MP. Analgesic
effects on endogenous melatonin secretion. J
Pineal Res. 1997;22(1):20-5. [PMID]
[DOI:10.1111/j.1600-079X.1997.tb00298.x]
38. Gögenur I, Ocak U, Altunpinar Ö, Middleton B,
Skene DJ, Rosenberg J. Disturbances in
melatonin, cortisol and core body temperature
rhythms after major surgery. World J Surg. 2007;
31:290-8. [ DOI:10.1007/s00268-006-0256-5]
[PMID]
39. Arai Y -CP, Ueda W, Okatani Y, Fukaya T,
Manabe M. Isoflurane increases, but sevoflurane
decreases blood concentrations of melatonin in
women. J Anesth. 2004;18:228-31.
[DOI:10.1007/s00540-004-0249-1] [PMID]
How to Cite This Article:
Haryalchi, K., Mansour Ghanaei, M., Rajabi, M., Ghazizadeh, M., Aghajanpour, F., Koochakpo or, P., et al.
Preventive Dose of Melatonin on Postoperative Pain in Total Abdominal Hysterectomy: A Clinical Trial Study . J
Obstet Gynecol Cancer Res. 2024;9(1):29-35.
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- Preventive Dose of Melatonin on Postoperative Pain in Total Abdominal Hysterectomy: A Clinical Trial Study via openalex
- W1966346939 via openalex
- W1969190722 via openalex
- W1975759642 via openalex
- W1981136766 via openalex
- W1983650721 via openalex
- W1992106585 via openalex
- W1999924882 via openalex
- W2003577104 via openalex
- W2016333149 via openalex
- W2024325905 via openalex
- W2028714285 via openalex
- W2034930462 via openalex
- W2041303014 via openalex
- W2042568858 via openalex
- W2044325030 via openalex
- W2049338921 via openalex
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- W2078115636 via openalex
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- W2083719870 via openalex
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- W2312959127 via openalex
- W2359974689 via openalex
- W2550762690 via openalex
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- W2920870361 via openalex
- W2970359054 via openalex
- W4251764539 via openalex
- W2081017730 via openalex
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