• <tr id="yyy80"></tr>
  • <sup id="yyy80"></sup>
  • <tfoot id="yyy80"><noscript id="yyy80"></noscript></tfoot>
  • 99热精品在线国产_美女午夜性视频免费_国产精品国产高清国产av_av欧美777_自拍偷自拍亚洲精品老妇_亚洲熟女精品中文字幕_www日本黄色视频网_国产精品野战在线观看 ?

    Combination therapy using evening primrose oil and electrical stimulation to improve nerve function following a crush injury of sciatic nerve in male rats

    2017-04-07 03:36:41

    1 Tabriz University of Medical Sciences, International Branch Aras, Tabriz, Iran

    2 Neuroscience Research Center, Tabriz University of Medical Sciences, Tabriz, Iran

    3 Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran

    4 Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran

    5 Microsystem Fabrication Laboratory, Tabriz University, Tabriz, Iran

    6 Department of Biochemistry, Faculty of Medicine, Tabriz University of Medical Sciences, Tabriz, Iran

    Combination therapy using evening primrose oil and electrical stimulation to improve nerve function following a crush injury of sciatic nerve in male rats

    Omid Badri1, Parviz Shahabi2,*, Jalal Abdolalizadeh3, Mohammad Reza Alipour4, Hadi Veladi5, Mehdi Farhoudi6, Mohsen Sharif Zak7

    1 Tabriz University of Medical Sciences, International Branch Aras, Tabriz, Iran

    2 Neuroscience Research Center, Tabriz University of Medical Sciences, Tabriz, Iran

    3 Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran

    4 Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran

    5 Microsystem Fabrication Laboratory, Tabriz University, Tabriz, Iran

    6 Department of Biochemistry, Faculty of Medicine, Tabriz University of Medical Sciences, Tabriz, Iran

    How to cite this article:Badri O, Shahabi P, Abdolalizadeh J, Alipour MR, Veladi H, Farhoudi M, Zak MS (2017) Combination therapy using evening primrose oil and electrical stimulation to improve nerve function following a crush injury of sciatic nerve in male rats. Neural Regen Res 12(3):458-463.

    Open access statement:This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 3.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as the author is credited and the new creations are licensed under the identical terms.

    Peripheral nerve injuries with a poor prognosis are common. Evening primrose oil (EPO) has beneficial biological effects and immunomodulatory properties. Since electrical activity plays a major role in neural regeneration, the present study investigated the effects of electrical stimulation (ES), combined with evening primrose oil (EPO), on sciatic nerve function after a crush injury in rats. In anesthetized rats, the sciatic nerve was crushed using small haemostatic forceps followed by ES and/or EPO treatment for 4 weeks. Functional recovery of the sciatic nerve was assessed using the sciatic functional index. Histopathological changes of gastrocnemius muscle atrophy were investigated by light microscopy. Electrophysiological changes were assessed by the nerve conduction velocity of sciatic nerves. Immunohistochemistry was used to determine the remyelination of the sciatic nerve following the interventions. EPO + ES, EPO, and ES obviously improved sciatic nerve function assessed by the sciatic functional index and nerve conduction velocity of the sciatic nerve at 28 days after operation. Expression of the peripheral nerve remyelination marker, protein zero (P0), was increased in the treatment groups at 28 days after operation. Muscle atrophy severity was decreased significantly while the nerve conduction velocity was increased significantly in rats with sciatic nerve injury in the injury + EPO + ES group than in the EPO or ES group. Totally speaking, the combined use of EPO and ES may produce an improving effect on the function of sciatic nerves injured by a crush. The increased expression of P0 may have contributed to improving the functional effects of combination therapy with EPO and ES as well as the electrophysiological and histopathological features of the injured peripheral nerve.

    nerve regeneration; peripheral nerve injury; sciatic nerve injury; evening primrose oil; electrical stimulation; sciatic functional index; cuff electrode; neural regeneration

    Introduction

    The peripheral nerve is typically injured by crushing or stretching. Such traumatic neuropathy is usually the consequence of minor traffic accidents, injuries in the workplace, or accidents in the home. Despite advances in medical intervention, traumatic neuropathy is frequent and often has poor prognosis (Ciaramitaro et al., 2010). Trauma created by an operation, called iatrogenic injury, occurs after surgery on the nerve, for example, sciatic nerve injury following hip prosthesis. Traumatic neuropathies are most frequent in young males after traffic accidents, and the quality of life for such patients is worsened. Evening primrose oil (EPO), which is extracted fromOenothera biennis L., is being used in increasing amounts in nutritional and pharmaceutical preparations. A previous study has shown that EPO intake is effective in improving atopic dermatitis and diabetic neuropathy, and EPO may alleviate the chronic disease state (Fan and Chapkin, 1998). EPO is enriched with gamma-linolenic acid (GLA), linolenic acid (LA), and omega 3. In a sample of EPO that was analyzed by the gas chromatography method, approximately 68% GLA was observed (Table 1). Essential fatty acids, such as GLA and LA, play a major role in nerve structure, and they could be useful in the anti-inflammatory mechanisms for autoimmune disease and neuropathy (Keen et al., 1993). Existing evidence demonstrates that GLA can normalize nerve conduction velocity (NCV) and sciatic endoneurial blood flow (Dines et al., 1995).

    An injury that influences axons initiates a high degree of depolarization, which travels back to the soma. Vigorous spiking activity is then triggered, sustaining depolarization that initiates signaling pathways for axon regeneration. Tus, electrical activity plays an important role after an injury to the peripheral nervous system (PNS). Previous studies have shown that electrical stimulation (ES) facilitated peripheral nerve recovery in rats after a crush injury (Al-Majed et al.,2000a; Lal et al., 2008). The low intensity of ES increased the expression of brain-derived neurotrophic factor and improved nerve regeneration (Zhang et al., 2013). One study showed that ES could improve diabetic neuropathy (Yao et al., 2012), and Lu et al. (2008) determined the positive and negative effects of ES on neural improvement after a crush injury. In the abovementioned studies, choosing the best pattern for the stimulation of the nerve made it a challenge to avoid any side effects and to achieve the most effective impact. Subthreshold electrotonic stimulation was used in the current study to minimize the side effects of ES on nerve regeneration.

    Table 1 Analysis for fatty acid of evening primrose oil

    In this study, we investigated the effects of EPO in combination with ES on nerve function and histological changes following a sciatic nerve injury.

    Materials and Methods

    Animals

    Tirty-six healthy adult male Wistar rats weighing 200-250 g were used in the present study. The rats were maintained in groups of six per cage in a 12-hour light-dark cycle at a controlled ambient temperature (22 ± 0.5°C) with free access to food and water. All experiments were conducted between 12:00 and 19:00. All research and animal care procedures were approved by the veterinary ethics committee of Tabriz University of Medical Sciences, Iran (approval number: 93/1-1/1) and were performed according to the National Institutes of Health Guide for the care and use of laboratory animals.

    Chemicals

    The chemicals used in the present study, including EPO, were purchased from Barij Essence Pharmaceutical Co., Kashan, Isfahan, Iran.

    Treatment groups

    All included rats were randomly divided into the following six groups (n= 6 in each group):

    (1) Normal control (control) group: Rats were intact and received no intervention.

    (2) Sham-surgery group: The sciatic nerve was exposed, but it was not crushed.

    (3) Injury group: The sciatic nerve was exposed and then crushed, but rats received no intervention.

    (4) Injury + EPO group. Rat sciatic nerve was exposed and EPO (450 mg/kg, intragastrically) was administered for 4 weeks.

    (5) Injury + ES group: Rat sciatic nerves were exposed and crushed. Polydimethylsiloxane (PDMS)-covered stimulation electrodes were implanted 2 mm away from the injury site and leftin situ. The injured sciatic nerves were daily stimulated by the implanted electrodes connected to the WinLTP system (version 2.1; WinLTP Ltd., Bristol, UK) using the stimulation parameters including 0.1 ms duration, 20 Hz frequency, 60 μA intensity, 1 hour per day for 4 weeks.

    (6) Injury + EPO + ES group: Rat sciatic nerves were exposed and crushed. Rats received both intragastrical administration of EPO and ES treatment for 4 weeks.

    Surgery

    Rats were anesthetized by intraperitoneal injection of ketamine (60 mg/kg) and xylazine (10 mg/kg). The area above the left lower thigh was shaved and sterilized with betadine. An incision (2 cm) was made over the lateral aspect of the hind limb, and the muscle was separated in order to expose the sciatic nerve. The nerve was crushed at 0.5 cm proximal to its trifurcation point using small haemostatic forceps, and the jaw was covered with Teflon tubing to provide a smooth surface. Ten, the nerve was crushed for 60 seconds with an estimated pressure of 0.5-1 kg/mm2, as determined by a dynamometer (Lutron Digital Force Gauge, USA). The crushed zone was approximately 2-3 mm2, and it was uniformly transparent for several minutes thereafter (Tamaddonfard et al., 2013). The muscle layers were re-approximated using 4/0 chromic gut sutures, and the skin was closed with 3/0 silk sutures.

    Sciatic functional index (SFI)

    Evaluation based on the SFI was performed one day before the surgery and on days 7, 14, 21, and 28 following the surgery. The rats were held by the chest, and their hind paws were pressed down onto a water pad. Ten, the rats were immediately allowed to walk along a confined walkway, 7.5 cm wide by 60 cm long, with a dark shelter at the end of the corridor, leaving their footprints on paper that was dipped in a solution of bromophenol blue, which was yellow when it was dry and blue when it became wet (Lowdon et al., 1988). Each animal was individually trained to walk on the track before the footprints were recorded. Once the rats were able to walk quickly toward the shelter, their hind paws were soaked in water, and they were allowed to walk on the strip of previously prepared paper.

    The following measurements were taken from the footprints: (1) the distance from the heel to the third toe, that is, the print length (PL); (2) the distance from the first to the fifth toes, that is, the toe spread (TS); and (3) the distance from the second to the fourth toes, that is, the intermediary toe spread (ITS). All three measurements were taken from the experimental (E, undergoing sciatic nerve crush) and normal (N) limbs. The three factors that comprised the SFIscores were calculated as follows: (1) print length factor (PLF) = (EPL - NPL)/NPL; (2) toe spread factor (TSF) = (ETS -NTS)/NTS; (3) intermediary toe spread factor (ITF) = (EIT - NIT)/NIT. Using these data, the SFI scores, which indicated the differences between the injured and the intact contralateral paws, were calculated by the following formula (Bain et al., 1989): SFI = -38.3[(EPL-NPL)/NPL] + 109.5[(ETSNTS)/NTS] + 13.3[(EIT-NIT)/NIT]-8.8.

    Figure 1 Cuff electrode with two sites for nerve stimulation and two sites for recording.

    Figure 2 The effects of evening primrose oil (EPO) and electrical stimulation (ES) on the sciatic functional index (SFI) in rats with crushed sciatic nerves.

    SFI analysis was determined as follows: an SFI that equaled -100 indicates significant impairment whereas an SFI oscillating around 0 showed normal function.

    Histopathological evaluation

    At 28 days after sciatic nerve injury in all groups, the sedated rats were euthanized, and the injured segments of the sciatic nerve and gastrocnemius muscle were removed and fixed in 10% formalin in buffered saline. The formalin fixed muscle was routinely processed for paraffin embedding, while thin (4-5 μm) transverse sections from the muscle were cut and stained with hematoxylin and eosin (H&E) for light microscopic observations. The evaluation of gastrocnemius muscle atrophy severity was based on pathological changes on a scale from normal (0) to severe (3) (Tamaddonfard et al., 2013).

    Immunohistochemistry

    Protein zero (P0) is a marker for PNS myelination (Li et al., 2010). At 28 days after re-exposing the sciatic nerve, the nerve specimens were dissected and fixed in 10% formalin for 12 hours. The tissue samples were embedded in the paraffin and cut into 5-μm thick sections. The slides were allowed to dry for 1 hour at room temperature, followed by 1 hour in an incubator at 60°C. After deparaffinization and rehydration, the slides were washed with the distilled water. Ten, the slides were covered for 5 minutes with 3% H2O2to block endogenous peroxidase.

    Figure 4 The effects of evening primrose oil (EPO) and electrical stimulation (ES) on gastrocnemius muscle atrophy severity in rats with crushed sciatic nerves.

    Antigen retrieval was achieved by steaming the tissue sections in a citrate buffer for 20 minutes (BioGenex antigen retrieval citra). Non-specific immunoreaction was blocked, and the sections were incubated for 1 hour at room temperature and washed three times by the PBS buffer. Ten, the sections were incubated with the primary antibody overnight at 4°C. As a primary antibody, anti-rat myelin P0 (Abcam, 1:100 dilution) was used as the myelination marker of the PNS for all groups. Horseradish peroxidase (HRP)-conjugated goat and anti-rabbit IgG was added to the sections as a secondary antibody at 25°C for 1 hour. After that, the diaminobenzidine substrate was added, and the slides were dehydrated and analyzed qualitatively (Choi et al., 2005).

    Electrophysiological study

    On the day of the operation and 28 days after that, the animals in each group were subjected to electrophysiological studies using the WinLTP system (UK, Version 2.1). During the test, the rats’ body temperature was kept between 36.5-37°C. After the intraperitoneal injection of ketamine and xylazine, the right sciatic nerve was exposed, and the dis-tance between cuff electrodes in between stimulating and recording sites was 3 mm, cuff electrodes were placed around the sciatic nerve (Figure 1). All stimulations were conducted by 60 μA and then recorded. Waves were analyzed by the WinLTP system to determine the NCV.

    Figure 3 Effects of evening primrose oil (EPO) and electrical stimulation (ES) on gastrocnemius muscle fibers in rats with crushed sciatic nerves.

    Figure 5 Electrophysiological recordings of NCV of the sciatic nerve.

    Figure 6 Immunohistochemistry analysis of remyelinated nerve distal to the transected site of the sciatic nerve (original magnification, × 400).

    Statistical analysis

    All data are presented as the mean ± SEM. The significanceof the SFI scores between groups was assessed by one-way analysis of variance (ANOVA) followed by Duncan’s test for multiple comparisons. Values for the degree of muscle atrophy severity were also analyzed using one-way ANOVA followed by Duncan’s test for multiple comparisons. Significance atP< 0.05 was receptive in all tests. SPSS 16.0 software (SPSS, Chicago, IL, USA) was used for this analysis.

    Results

    SFI results

    There were no post-operative deaths or clinical evidence of wound infections. There was no significant difference in SFI between control and sham-surgery groups. Results belonging to the sham-surgery group are not shown inFigure 2. SFI significantly decreased on the first day post-surgery in injury, injury + ES, injury + EPO, and injury + EPO + ES groups. SFI was increased on the last day of the examination compared to that on the first day of the examination in the injury + EPO + ES group, and SFI was significantly higher in the injury + EPO + ES, injury + ES, injury + EPO groups than in the injury group ( allP< 0.05;Figure 2). There was no significant difference in SFI between injury + ES and injury + EPO groups. The SFI in the injury group was reduced to nearly -100 on day 7 after operation. In contrast, EPO administration in the injury + EPO + ES group significantly altered the SFI in a progressive pattern, but the differences between ES and EPO groups were not significantly different (P> 0.05).

    Recovering SFI to the control group level in the injury + EPO + ES group was accelerated than that in the other groups, but difference in SFI between injury + EPO + ES group and injury + ES or injury + EPO group was not significant (P>0.05).

    Gastrocnemius muscle atrophy results

    Figure 3shows the effects of EPO and ES on muscle atrophy severity in the sciatic nerve induced by a crush injury. In the intact and sham-surgery groups, no muscle atrophy was observed (Figure 3A,BandFigure 4). In the injury group, severe atrophy in the gastrocnemius muscle was seen (Figures 3C,Eand4). However, EPO and ES both produced significant, positive effects on gastrocnemius muscle atrophy (Figures 3D,Eand4). Combination therapy using EPO and ES and admininstration of ES alone significantly prevented muscle atrophy (P< 0.05) (Figure 3Fand4).

    NCV

    On day 28, NCV in the injury + ES, injury + EPO, and injury + EPO + ES groups was statistically different from that in the injury group (P< 0.05). However, NCV was not significantly different between injury + ES and injury + EPO groups on day 28, but NCV in the injury + EPO + ES group was significantly different from that in the injury + ES and injury + EPO groups (P< 0.05). Changes in electrophysiological recordings of the sciatic nerves are shown inFigure 5.

    Immunohistochemistry

    On day 28 after operation in the injury + EPO + ES group, the P0 expression zone was extensively visible in cross-sections taken from the midpoint, indicating myelinated axons in the crushed sciatic nerve. In the injury + EPO + ES group, the formation-regenerated axons were similar to those of the normal axons (Figure 6).

    Discussion

    In the present study, the effects of EPO and ES on the remyelination of the sciatic nerve in adult male rats were evaluated, and our data showed that the combination therapy of EPO and ES accelerated the recovery of nerve function and the histopathological features of the nerve, preventing against gastrocnemius muscle atrophy. A previous study has shown the positive effect of EPO on peripheral nerve conduction in the diabetic rat (Ford et al., 2001). Another study showed that the anti-inflammatory features of an EPO component could modulate the immune system, which was useful for treating patients with multiple sclerosis (Rezapour-Firouzi et al., 2013b). Tus, the effects of EPO administration on nerve injury in the present study were consistent with findings from a previous study (Halat and Dennehy, 2003).

    EPO used in this study was enriched with a myelin precursor, which might have accelerated the remyelination process in the crushed sciatic nerve (Rezapour-Firouzi et al., 2013a). There have been conflicting results from previous studies on the effects of ES on injured peripheral nerves (Al-Majed et al., 2000b). Enhanced PNS remyelination, which was in agreement with the results reported by Al-Majed et al. (2000b), was seen by the use of ES in the injury + EPO + ES group in the present study. Yet, several previous studies showed that ES impaired early functional recovery and exacerbated skeletal muscle atrophy after a sciatic-nerve crush injury in rats (Baptista et al., 2008; Lu et al., 2008; Gigo-Benato et al., 2010). Another study revealed that ES promoted axon regeneration at the expense of decreasing the fidelity of muscle reinnervation, resulting in unchanged functional recovery (Hamilton et al., 2011). Based on these findings, the subthreshold ES was more effective for nerve regeneration without negative effects (Gordon et al., 2008; Vivo et al., 2008; Asensio-Pinilla et al., 2009). Since subthreshold ES could preserve the signaling of regeneration in the crushed nerve without the disadvantages of high-intensity stimulation, this pattern was used in the current study for nerve stimulation in the injury + ES and injury + EPO + ES groups. If used in combination therapy, EPO and ES could be complementary interventions that facilitate each other.

    As demonstrated in the present study, the signaling of regeneration can be preserved by a subthreshold pattern of ES, and the substances needed for remyelination can be made available for Schwann cells by EPO administration. Also, the results revealed that the use of EPO and ES significantly enhanced peripheral nerve remyelination. Following the crush injury of the sciatic nerve in rats, gastrocnemius muscle weight loss and atrophy were reported (Liu et al., 2007). However, based on our results, EPO in combination with ES produced a protective effect on gastrocnemius muscle atrophy.

    The SFI is reported to be a useful tool to determine thefunctional recovery of the sciatic nerve of rats in experimental groups (Varej?o-Silva, 2001). Functional recovery of the sciatic nerve following a crush injury in groups treated with ES and EPO could be determined by SFI measurement. According to our results, EPO and ES administration had positive effects on the functional recovery of crush-injured sciatic nerve. There is evidence that NCV depends on axon diameter, myelination, and intermodal distance (Brown et al., 1991). Despite the damage to a large number of remaining fibers, a nerve might have a few fibers that can still conduct effectively. For this reason, NCV might be used to evaluate the fastest and, healthiest fibers rather than the total nerve function (Kanaya et al., 1996). According to our results, NCV was enhanced by day 28 after operation. This finding showed that remyelination and regeneration of the nerve fiber were accelerated.

    In conclusion, the present study showed that a combined treatment with EPO and ES might have increased the remyelination of rats with crushed sciatic nerves, contributing to recovery of sciatic nerve function.

    Acknowledgments:The present research was financially supported by the Neuroscience Research Center of the Tabriz University of Medical Sciences, Tabriz, Iran.

    Author contributions:OB designed this study and performed all experiments. PS guided the study. JA and MSZ were responsible for immunohistochemistry. MRA, HV and MF performed electrical stimulation and statistical analysis. All authors approved the final version of this paper.

    Conflicts of interest:None declared.

    Plagiarism check:This paper was screened twice using CrossCheck to verify originality before publication.

    Peer review:This paper was double-blinded and stringently reviewed by international expert reviewers.

    Al-Majed AA, Brushart TM, Gordon T (2000a) Electrical stimulation accelerates and increases expression of BDNF and trkB mRNA in regenerating rat femoral motoneurons. Eur J Neurosci 12:4381-4390.

    Al-Majed AA, Neumann CM, Brushart TM, Gordon T (2000b) Brief electrical stimulation promotes the speed and accuracy of motor axonal regeneration. J Neurosci 20:2602-2608.

    Asensio-Pinilla E, Udina E, Jaramillo J, Navarro X (2009) Electrical stimulation combined with exercise increase axonal regeneration after peripheral nerve injury. Exp Neurol 219:258-265.

    Bain JR, Mackinnon SE, Hunter DA (1989) Functional evaluation of complete sciatic, peroneal, and posterior tibial nerve lesions in the rat. Plast Reconstr Surg 83:129-138.

    Baptista AF, Gomes JR, Oliveira JT, Santos SM, Vannier-Santos MA, Martinez AM (2008) High- and low-frequency transcutaneous electrical nerve stimulation delay sciatic nerve regeneration after crush lesion in the mouse. J Peripher Nerv Syst 13:71-80.

    Brown CJ, Evans PJ, Mackinnon SE, Bain JR, Makino AP, Hunter DA, Hare G (1991) Inter- and intraobserver reliability of walking-track analysis used to assess sciatic nerve function in rats. Microsurgery 12:76-79.

    Choi BH, Zhu SJ, Kim BY, Huh JY, Lee SH, Jung JH (2005) Transplantation of cultured bone marrow stromal cells to improve peripheral nerve regeneration. Int J Oral Maxillofac Surg 34:537-542.

    Ciaramitaro P, Mondelli M, Logullo F, Grimaldi S, Battiston B, Sard A, Scarinzi C, Migliaretti G, Faccani G, Cocito D (2010) Traumatic peripheral nerve injuries: epidemiological findings, neuropathic pain and quality of life in 158 patients. J Peripher Nerv Syst 15:120-127.

    Dines KC, Cameron NE, Cotter MA (1995) Comparison of the effects of evening primrose oil and triglycerides containing gamma-linolenic acid on nerve conduction and blood flow in diabetic rats. J Pharmacol Exp Ter 273:49-55.

    Fan YY, Chapkin RS (1998) Importance of dietary gamma-linolenic acid in human health and nutrition. J Nutr 128:1411-1414.

    Ford I, Cotter MA, Cameron NE, Greaves M (2001) The effects of treatment with alpha-lipoic acid or evening primrose oil on vascular hemostatic and lipid risk factors, blood flow, and peripheral nerve conduction in the streptozotocin-diabetic rat. Metabolism 50:868-875.

    Gigo-Benato D, Russo TL, Geuna S, Domingues NR, Salvini TF, Parizotto NA (2010) Electrical stimulation impairs early functional recovery and accentuates skeletal muscle atrophy after sciatic nerve crush injury in rats. Muscle Nerve 41:685-693.

    Gordon T, Brushart TM, Chan KM (2008) Augmenting nerve regeneration with electrical stimulation. Neurol Res 30:1012-1022.

    Halat KM, Dennehy CE (2003) Botanicals and dietary supplements in diabetic peripheral neuropathy. J Am Board Fam Pract 16:47-57.

    Hamilton SK, Hinkle ML, Nicolini J, Rambo LN, Rexwinkle AM, Rose SJ, Sabatier MJ, Backus D, English AW (2011) Misdirection of regenerating axons and functional recovery following sciatic nerve injury in rats. J Comp Neurol 519:21-33.

    Kanaya F, Firrell JC, Breidenbach WC (1996) Sciatic function index, nerve conduction tests, muscle contraction, and axon morphometry as indicators of regeneration. Plast Reconstr Surg 98:1264-1271, discussion 1272-1264.

    Keen H, Payan J, Allawi J, Walker J, Jamal GA, Weir AI, Henderson LM, Bissessar EA, Watkins PJ, Sampson M, et al. (1993) Treatment of diabetic neuropathy with gamma-linolenic acid. The gamma-Linolenic Acid Multicenter Trial Group. Diabetes Care 16:8-15.

    Lal D, Hetzler LT, Sharma N, Wurster RD, Marzo SJ, Jones KJ, Foecking EM (2008) Electrical stimulation facilitates rat facial nerve recovery from a crush injury. Otolaryngol Head Neck Surg 139:68-73.

    Li FQ, Fowler KA, Neil JE, Colton CA, Vitek MP (2010) An apolipoprotein E-mimetic stimulates axonal regeneration and remyelination after peripheral nerve injury. J Pharmacol Exp Ter 334:106-115.

    Liu M, Zhang D, Shao C, Liu J, Ding F, Gu X (2007) Expression pattern of myostatin in gastrocnemius muscle of rats after sciatic nerve crush injury. Muscle Nerve 35:649-656.

    Lowdon IM, Seaber AV, Urbaniak JR (1988) An improved method of recording rat tracks for measurement of the sciatic functional index of de Medinaceli. J Neurosci Methods 24:279-281.

    Lu MC, Ho CY, Hsu SF, Lee HC, Lin JH, Yao CH, Chen YS (2008) Effects of electrical stimulation at different frequencies on regeneration of transected peripheral nerve. Neurorehabil Neural Repair 22:367-373.

    Rezapour-Firouzi S, Arefhosseini SR, Farhoudi M, Ebrahimi-Mamaghani M, Rashidi MR, Torbati MA, Baradaran B (2013a) Association of expanded disability status scale and cytokines after intervention with co-supplemented hemp seed, evening primrose oils and hot-natured diet in multiple sclerosis patients. BioImpacts: BI 3:43.

    Rezapour-Firouzi S, Areftosseini SR, Mehdi F, Mehrangiz EM, Baradaran B, Sadeghihokmabad E, Mostafaei S, Fazljou SM, Torbati MA, Sanaie S, Zamani F (2013b) Immunomodulatory and therapeutic effects of Hot-nature diet and co-supplemented hemp seed, evening primrose oils intervention in multiple sclerosis patients. Complement Ter Med 21:473-480.

    Tamaddonfard E, Farshid AA, Ahmadian E, Hamidhoseyni A (2013) Crocin enhanced functional recovery after sciatic nerve crush injury in rats. Iran J Basic Med Sci 16:83-90.

    Varej?o-Silva MA (2001) Meteorologia e climatologia: Inmet.

    Vivo M, Puigdemasa A, Casals L, Asensio E, Udina E, Navarro X (2008) Immediate electrical stimulation enhances regeneration and reinnervation and modulates spinal plastic changes after sciatic nerve injury and repair. Exp Neurol 211:180-193.

    Yao CH, Chang RL, Chang SL, Tsai CC, Tsai FJ, Chen YS (2012) Electrical stimulation improves peripheral nerve regeneration in streptozotocin-induced diabetic rats. J Trauma Acute Care Surg 72:199-205.

    Zhang X, Xin N, Tong L, Tong XJ (2013) Electrical stimulation enhances peripheral nerve regeneration after crush injury in rats. Mol Med Rep 7:1523-1527.

    Copyedited by Li CH, Song LP, Zhao M

    *Correspondence to: Parviz Shahabi, Ph.D. in physiology, parvizshahabi@gmail.com.

    orcid: 0000-0001-5594-5544 (Parviz Shahabi)

    10.4103/1673-5374.202927

    Accepted: 2017-02-03

    草草在线视频免费看| 午夜免费男女啪啪视频观看| 精品久久国产蜜桃| 国产成人免费观看mmmm| 中文精品一卡2卡3卡4更新| 日本猛色少妇xxxxx猛交久久| 黑人欧美特级aaaaaa片| 日韩三级伦理在线观看| 一区二区三区精品91| 中文天堂在线官网| 精品熟女少妇av免费看| 欧美日本中文国产一区发布| 中国美白少妇内射xxxbb| 国产色婷婷99| 亚洲第一av免费看| 日韩视频在线欧美| av在线老鸭窝| 亚洲精品一区蜜桃| 啦啦啦啦在线视频资源| 欧美3d第一页| 蜜桃国产av成人99| 在线观看www视频免费| 最近的中文字幕免费完整| 国产精品久久久久成人av| 国产在视频线精品| 18禁在线无遮挡免费观看视频| 中文字幕av电影在线播放| 国精品久久久久久国模美| 一区二区三区四区激情视频| 日本av手机在线免费观看| 国产成人免费无遮挡视频| 看免费av毛片| 久久国产亚洲av麻豆专区| 久久国产亚洲av麻豆专区| 久久韩国三级中文字幕| 亚洲精品av麻豆狂野| 国产成人a∨麻豆精品| 久久午夜福利片| 午夜91福利影院| 91精品国产国语对白视频| 天美传媒精品一区二区| 久久综合国产亚洲精品| 国产视频首页在线观看| 国产精品麻豆人妻色哟哟久久| 国产综合精华液| 国产成人a∨麻豆精品| 人妻少妇偷人精品九色| 亚洲成人一二三区av| 亚洲第一av免费看| 亚洲精品久久成人aⅴ小说| 赤兔流量卡办理| 99re6热这里在线精品视频| 伦精品一区二区三区| 大香蕉久久网| 插逼视频在线观看| 一级片免费观看大全| 国产永久视频网站| 欧美亚洲 丝袜 人妻 在线| av在线观看视频网站免费| 亚洲色图 男人天堂 中文字幕 | 中文天堂在线官网| 一级片免费观看大全| av在线观看视频网站免费| 国产极品粉嫩免费观看在线| 少妇人妻久久综合中文| 日韩三级伦理在线观看| 少妇的逼好多水| 久久影院123| 日本爱情动作片www.在线观看| 精品少妇久久久久久888优播| 美女福利国产在线| 午夜福利影视在线免费观看| 成年人午夜在线观看视频| www日本在线高清视频| 大香蕉97超碰在线| 女性被躁到高潮视频| 久久99热6这里只有精品| 久久久久久久大尺度免费视频| 乱码一卡2卡4卡精品| 午夜免费观看性视频| 久久亚洲国产成人精品v| 久久精品国产亚洲av涩爱| 亚洲欧美精品自产自拍| 亚洲精品自拍成人| 亚洲天堂av无毛| 亚洲综合色惰| 欧美另类一区| 成人18禁高潮啪啪吃奶动态图| 国产精品一区二区在线不卡| 校园人妻丝袜中文字幕| 99久久综合免费| 国产免费一区二区三区四区乱码| 美女国产高潮福利片在线看| 日韩一区二区三区影片| 热99国产精品久久久久久7| 99久国产av精品国产电影| 丝袜脚勾引网站| 成人二区视频| 国产日韩欧美亚洲二区| a级片在线免费高清观看视频| 精品酒店卫生间| 99精国产麻豆久久婷婷| 人人妻人人澡人人爽人人夜夜| 精品国产露脸久久av麻豆| 蜜臀久久99精品久久宅男| 精品久久久久久电影网| 亚洲内射少妇av| av在线播放精品| 午夜激情av网站| 黄网站色视频无遮挡免费观看| 欧美成人午夜免费资源| 国产又爽黄色视频| 国产毛片在线视频| 五月开心婷婷网| 中文字幕人妻丝袜制服| a级毛片在线看网站| 欧美bdsm另类| 国产精品一国产av| 中国三级夫妇交换| 在线观看美女被高潮喷水网站| 国产精品女同一区二区软件| 高清欧美精品videossex| 亚洲五月色婷婷综合| 三上悠亚av全集在线观看| 免费少妇av软件| 色5月婷婷丁香| 少妇高潮的动态图| 色94色欧美一区二区| 亚洲国产日韩一区二区| 久久av网站| 欧美+日韩+精品| 肉色欧美久久久久久久蜜桃| 日产精品乱码卡一卡2卡三| 少妇被粗大猛烈的视频| 免费不卡的大黄色大毛片视频在线观看| 国产国拍精品亚洲av在线观看| xxx大片免费视频| 久久久久人妻精品一区果冻| 天堂8中文在线网| av女优亚洲男人天堂| 飞空精品影院首页| 久久久国产欧美日韩av| kizo精华| 天堂中文最新版在线下载| 欧美日韩精品成人综合77777| 高清av免费在线| 美女福利国产在线| 久久人人爽人人片av| 国产精品久久久av美女十八| 欧美人与善性xxx| 交换朋友夫妻互换小说| 成人国产麻豆网| 久久久精品94久久精品| 免费观看性生交大片5| a级毛片黄视频| 午夜精品国产一区二区电影| 久久这里有精品视频免费| 久久久久国产网址| 亚洲av国产av综合av卡| 国产国语露脸激情在线看| 欧美少妇被猛烈插入视频| 精品少妇内射三级| 成人二区视频| 在线观看免费视频网站a站| 久久女婷五月综合色啪小说| 超色免费av| 一本—道久久a久久精品蜜桃钙片| 青青草视频在线视频观看| 国产精品嫩草影院av在线观看| 亚洲美女搞黄在线观看| 亚洲,欧美精品.| 中文字幕另类日韩欧美亚洲嫩草| 国产精品无大码| 啦啦啦在线观看免费高清www| 91精品国产国语对白视频| 性色av一级| 人妻 亚洲 视频| 插逼视频在线观看| av福利片在线| 成人影院久久| 欧美国产精品va在线观看不卡| 熟妇人妻不卡中文字幕| 日本91视频免费播放| 午夜免费观看性视频| 久久久久久久久久久免费av| 只有这里有精品99| 精品福利永久在线观看| 亚洲天堂av无毛| 国产精品偷伦视频观看了| 亚洲精品色激情综合| 免费观看无遮挡的男女| 99热6这里只有精品| 免费黄频网站在线观看国产| 欧美日本中文国产一区发布| 最新的欧美精品一区二区| xxx大片免费视频| 日韩欧美精品免费久久| 中文字幕亚洲精品专区| 18+在线观看网站| 精品福利永久在线观看| 国产精品国产三级国产av玫瑰| 一二三四中文在线观看免费高清| 51国产日韩欧美| 午夜福利视频在线观看免费| 性高湖久久久久久久久免费观看| a级毛片在线看网站| 国产欧美另类精品又又久久亚洲欧美| 欧美 日韩 精品 国产| 韩国精品一区二区三区 | 中国三级夫妇交换| 美女福利国产在线| 晚上一个人看的免费电影| 久久av网站| 一级,二级,三级黄色视频| 国产男女内射视频| 我要看黄色一级片免费的| 亚洲精品一区蜜桃| 成人亚洲欧美一区二区av| 久久精品国产自在天天线| av天堂久久9| 熟女人妻精品中文字幕| 国产精品麻豆人妻色哟哟久久| 成人免费观看视频高清| 哪个播放器可以免费观看大片| 色哟哟·www| 久久国内精品自在自线图片| 女人被躁到高潮嗷嗷叫费观| 中国美白少妇内射xxxbb| 久久久久久久久久久久大奶| 少妇人妻久久综合中文| 亚洲精品av麻豆狂野| 久久精品夜色国产| 极品少妇高潮喷水抽搐| 亚洲久久久国产精品| 大话2 男鬼变身卡| 精品一区二区三区四区五区乱码 | 成人国产av品久久久| 午夜免费鲁丝| 亚洲国产色片| 精品一区二区三卡| 成年美女黄网站色视频大全免费| 国产麻豆69| 日本av手机在线免费观看| 欧美3d第一页| 尾随美女入室| 亚洲激情五月婷婷啪啪| 亚洲内射少妇av| 亚洲国产精品成人久久小说| 欧美精品高潮呻吟av久久| av.在线天堂| 亚洲av.av天堂| 9191精品国产免费久久| 高清毛片免费看| 久久久久久久久久久免费av| 国产极品粉嫩免费观看在线| 黄色怎么调成土黄色| 晚上一个人看的免费电影| 人体艺术视频欧美日本| 色哟哟·www| 我要看黄色一级片免费的| 欧美3d第一页| 亚洲,欧美精品.| 丝袜人妻中文字幕| 色哟哟·www| 水蜜桃什么品种好| 国产又爽黄色视频| 国产成人精品久久久久久| 一本色道久久久久久精品综合| 春色校园在线视频观看| 国产亚洲精品第一综合不卡 | 国产精品女同一区二区软件| 欧美3d第一页| 免费看不卡的av| 91午夜精品亚洲一区二区三区| 夫妻午夜视频| 狂野欧美激情性bbbbbb| 午夜视频国产福利| 欧美精品一区二区大全| 国产精品人妻久久久影院| 又黄又粗又硬又大视频| 精品人妻一区二区三区麻豆| 一级毛片黄色毛片免费观看视频| 色婷婷av一区二区三区视频| 王馨瑶露胸无遮挡在线观看| 亚洲国产精品国产精品| 成人亚洲欧美一区二区av| 18禁裸乳无遮挡动漫免费视频| 国产在视频线精品| 国产精品麻豆人妻色哟哟久久| 纵有疾风起免费观看全集完整版| 国产男女内射视频| 人妻少妇偷人精品九色| 免费人成在线观看视频色| 欧美日韩一区二区视频在线观看视频在线| 视频在线观看一区二区三区| 高清av免费在线| 丝袜脚勾引网站| 国产不卡av网站在线观看| 免费高清在线观看视频在线观看| 久久热在线av| 午夜精品国产一区二区电影| 久久久久久久久久人人人人人人| 久久这里只有精品19| 欧美 亚洲 国产 日韩一| 国产亚洲av片在线观看秒播厂| 久久人妻熟女aⅴ| 国产精品欧美亚洲77777| 国产精品久久久久久久久免| 亚洲性久久影院| 精品国产一区二区久久| 高清欧美精品videossex| h视频一区二区三区| 国产黄色免费在线视频| 日本爱情动作片www.在线观看| 精品亚洲成a人片在线观看| 国产免费福利视频在线观看| 一级a做视频免费观看| 欧美成人午夜精品| 亚洲国产日韩一区二区| av片东京热男人的天堂| 国产在视频线精品| 亚洲三级黄色毛片| 国产精品偷伦视频观看了| 高清不卡的av网站| 十八禁高潮呻吟视频| 男女免费视频国产| 成人漫画全彩无遮挡| 国产欧美日韩一区二区三区在线| 久久国产精品大桥未久av| 国产精品国产三级国产av玫瑰| 国产精品99久久99久久久不卡 | 色网站视频免费| 18禁裸乳无遮挡动漫免费视频| 亚洲欧美中文字幕日韩二区| 午夜视频国产福利| 制服诱惑二区| 最近手机中文字幕大全| 美女中出高潮动态图| 日韩av不卡免费在线播放| 国产综合精华液| 亚洲精品一区蜜桃| 国产成人精品久久久久久| 丰满迷人的少妇在线观看| 欧美日韩亚洲高清精品| 美女脱内裤让男人舔精品视频| 欧美精品国产亚洲| 黄网站色视频无遮挡免费观看| 日韩熟女老妇一区二区性免费视频| 国产国语露脸激情在线看| 99久国产av精品国产电影| 午夜视频国产福利| 亚洲欧美精品自产自拍| 久久这里只有精品19| 观看av在线不卡| 国产福利在线免费观看视频| 久久精品人人爽人人爽视色| 亚洲久久久国产精品| 韩国av在线不卡| 久久精品国产综合久久久 | 91午夜精品亚洲一区二区三区| av一本久久久久| 国产精品99久久99久久久不卡 | 欧美 亚洲 国产 日韩一| 国产不卡av网站在线观看| 国产欧美日韩综合在线一区二区| 亚洲四区av| 在线精品无人区一区二区三| 菩萨蛮人人尽说江南好唐韦庄| 国产精品久久久久久精品电影小说| 亚洲在久久综合| 女人精品久久久久毛片| 97精品久久久久久久久久精品| 黄色一级大片看看| 2018国产大陆天天弄谢| 国产无遮挡羞羞视频在线观看| 色网站视频免费| 亚洲国产精品一区三区| 亚洲少妇的诱惑av| 亚洲av国产av综合av卡| 久久午夜福利片| 免费人成在线观看视频色| 欧美bdsm另类| 欧美xxxx性猛交bbbb| 成人亚洲精品一区在线观看| 日韩av免费高清视频| 久热久热在线精品观看| 亚洲第一区二区三区不卡| 欧美国产精品一级二级三级| 欧美亚洲日本最大视频资源| 欧美日韩一区二区视频在线观看视频在线| 国产亚洲最大av| 熟妇人妻不卡中文字幕| 日韩av在线免费看完整版不卡| 卡戴珊不雅视频在线播放| 精品一品国产午夜福利视频| 免费在线观看黄色视频的| 国产黄色视频一区二区在线观看| 岛国毛片在线播放| 国产亚洲午夜精品一区二区久久| 久久人人97超碰香蕉20202| 亚洲一区二区三区欧美精品| 91精品伊人久久大香线蕉| 精品人妻在线不人妻| 亚洲美女视频黄频| av女优亚洲男人天堂| 国产一区二区激情短视频 | 夫妻性生交免费视频一级片| 亚洲综合色网址| 热re99久久精品国产66热6| 大话2 男鬼变身卡| 久久99热这里只频精品6学生| 久久婷婷青草| 色婷婷av一区二区三区视频| 啦啦啦啦在线视频资源| 精品国产露脸久久av麻豆| 黄片播放在线免费| 在线观看一区二区三区激情| 69精品国产乱码久久久| 下体分泌物呈黄色| 成人免费观看视频高清| www.熟女人妻精品国产 | 亚洲av成人精品一二三区| 99热6这里只有精品| 免费av不卡在线播放| 国产亚洲最大av| tube8黄色片| 久久久久久久久久久久大奶| 一级毛片电影观看| 午夜福利视频在线观看免费| 亚洲第一区二区三区不卡| 大片电影免费在线观看免费| 成年av动漫网址| 男女边摸边吃奶| 99九九在线精品视频| 欧美激情 高清一区二区三区| 久久人人爽人人爽人人片va| 纯流量卡能插随身wifi吗| 亚洲精品乱码久久久久久按摩| 最后的刺客免费高清国语| 国产一区二区三区综合在线观看 | 久久国产精品男人的天堂亚洲 | 一边摸一边做爽爽视频免费| 午夜福利在线观看免费完整高清在| 免费观看无遮挡的男女| 80岁老熟妇乱子伦牲交| 99久久中文字幕三级久久日本| 美女视频免费永久观看网站| 中文天堂在线官网| 一区二区三区乱码不卡18| 99re6热这里在线精品视频| 十分钟在线观看高清视频www| 飞空精品影院首页| 国产精品国产三级专区第一集| 婷婷色综合www| 国产成人精品福利久久| 黑人猛操日本美女一级片| 亚洲伊人色综图| 亚洲精品日韩在线中文字幕| 好男人视频免费观看在线| 免费看不卡的av| 精品久久蜜臀av无| 国产成人欧美| 1024视频免费在线观看| xxxhd国产人妻xxx| 99热国产这里只有精品6| 国产成人免费无遮挡视频| 午夜福利视频在线观看免费| 日本av免费视频播放| 热99国产精品久久久久久7| 精品人妻熟女毛片av久久网站| 桃花免费在线播放| 国产无遮挡羞羞视频在线观看| 亚洲一码二码三码区别大吗| 免费观看无遮挡的男女| 少妇的逼水好多| 国产成人91sexporn| 久久精品久久久久久久性| 亚洲第一区二区三区不卡| 高清不卡的av网站| 午夜视频国产福利| 色婷婷av一区二区三区视频| 黄色 视频免费看| 成人毛片a级毛片在线播放| 看免费av毛片| 亚洲丝袜综合中文字幕| 五月玫瑰六月丁香| 精品亚洲乱码少妇综合久久| 日韩中字成人| 飞空精品影院首页| 亚洲精品,欧美精品| 国产老妇伦熟女老妇高清| 国产精品久久久久久久电影| 99久久综合免费| 少妇高潮的动态图| 日本av手机在线免费观看| 久久av网站| 精品第一国产精品| 国产成人午夜福利电影在线观看| 一边亲一边摸免费视频| 国产亚洲精品第一综合不卡 | 久久久久久人妻| 免费播放大片免费观看视频在线观看| 国产69精品久久久久777片| 国产精品偷伦视频观看了| 欧美成人午夜精品| 成人毛片60女人毛片免费| 欧美人与性动交α欧美软件 | 午夜免费鲁丝| 中国美白少妇内射xxxbb| 精品一区在线观看国产| 一级爰片在线观看| 少妇人妻久久综合中文| 自线自在国产av| 欧美日韩精品成人综合77777| 蜜桃国产av成人99| 只有这里有精品99| 久久精品夜色国产| 男女边摸边吃奶| 日韩 亚洲 欧美在线| 日韩av不卡免费在线播放| 女性被躁到高潮视频| 国产免费福利视频在线观看| 国产精品久久久久成人av| 国产有黄有色有爽视频| 黄色怎么调成土黄色| 国产成人一区二区在线| 亚洲av福利一区| 久久久国产欧美日韩av| 亚洲成国产人片在线观看| 丁香六月天网| 亚洲一级一片aⅴ在线观看| 老女人水多毛片| 亚洲伊人久久精品综合| 99久久人妻综合| av片东京热男人的天堂| 亚洲精品一区蜜桃| 亚洲美女视频黄频| 韩国精品一区二区三区 | 久久精品夜色国产| 日韩av在线免费看完整版不卡| 少妇人妻精品综合一区二区| 亚洲av中文av极速乱| 亚洲五月色婷婷综合| 日韩一本色道免费dvd| 亚洲精品第二区| av在线观看视频网站免费| 免费黄色在线免费观看| 精品人妻偷拍中文字幕| 国产精品一区www在线观看| a级毛片在线看网站| 99热6这里只有精品| 2022亚洲国产成人精品| 秋霞在线观看毛片| 婷婷色麻豆天堂久久| 日韩 亚洲 欧美在线| 欧美亚洲 丝袜 人妻 在线| 最近2019中文字幕mv第一页| 伊人亚洲综合成人网| 一二三四在线观看免费中文在 | 精品久久蜜臀av无| 精品国产一区二区三区四区第35| 日本猛色少妇xxxxx猛交久久| 国产精品人妻久久久久久| 久久热在线av| 久久久久精品人妻al黑| 日日摸夜夜添夜夜爱| 国产免费现黄频在线看| 大片免费播放器 马上看| 免费高清在线观看日韩| videossex国产| 亚洲欧美一区二区三区黑人 | 黄色视频在线播放观看不卡| 天天操日日干夜夜撸| 欧美xxxx性猛交bbbb| 汤姆久久久久久久影院中文字幕| 国产亚洲一区二区精品| 日韩伦理黄色片| 丁香六月天网| 在线观看三级黄色| 久热这里只有精品99| 亚洲情色 制服丝袜| 欧美激情 高清一区二区三区| 欧美另类一区| 亚洲性久久影院| 91精品国产国语对白视频| 99精国产麻豆久久婷婷| 在线 av 中文字幕| 22中文网久久字幕| 国产黄色视频一区二区在线观看| 免费人妻精品一区二区三区视频| 欧美成人精品欧美一级黄| 日本vs欧美在线观看视频| 涩涩av久久男人的天堂| 亚洲av福利一区| 亚洲人成网站在线观看播放| 日本av手机在线免费观看| 国产白丝娇喘喷水9色精品| 精品国产国语对白av| 国产熟女欧美一区二区| 在线 av 中文字幕| 午夜日本视频在线| 国产精品蜜桃在线观看| 亚洲美女视频黄频| 国产一区有黄有色的免费视频| 国产激情久久老熟女| 深夜精品福利| 男男h啪啪无遮挡| 大话2 男鬼变身卡| 国产乱来视频区| 亚洲国产av影院在线观看| 男女无遮挡免费网站观看| 国产日韩一区二区三区精品不卡| 少妇高潮的动态图| 老司机影院成人| 黄片无遮挡物在线观看|