lunes, 7 de agosto de 2023

Acute Low Dose Naltrexone Increases β-Endorphin and Promotes Neuronal Recovery Following Hypoxia-Ischemic Stroke in Type-2 Diabetic Mice

 Abstract  -   2023 May 11.

Diabetic patients experience significant mortality and poor recovery following ischemic stroke. Our clinical and basic science studies demonstrate an overall immune suppression in the periphery of diabetic stroke patients, as well as within the central nervous system (CNS) of type-2 diabetic mice following hypoxia-ischemia (HI). Low doses of naltrexone (LDN) improved clinical outcomes in many autoimmune diseases by acting on opioid receptors to release β-endorphin which in turn balances inflammatory cytokines and modulates the opioid growth factor (OGF)-opioid growth factor receptor (OGFr) pathway. We hypothesized that in our model of diabetic mice, LDN treatment will induce the release of β-endorphin and improve CNS response by promoting neuronal recovery post HI. To test this hypothesis, we induced HI in 10 week old male db/db and db/ + mice, collected tissue at 24 and 72 h post HI, and measured OGF levels in plasma and brain tissue. The infarct size and number of OGF + neurons in the motor cortex, caudate and hippocampus (CA3) were measured. Following HI, db/db mice had significant increases in brain OGF expression, increased infarct size and neurological deficits, and loss of OGFr + neurons in several different brain regions. In the second experiment, we injected LDN (1 mg/kg) intraperitoneally into db/db and db/ + mice at 4, 24, and 48 h post HI, and collected brain tissue and blood at 72 h. Acute LDN treatment increased β-endorphin and OGF levels in plasma and promoted neuronal recovery in db/db mice compared to phosphate buffer saline (PBS)-treated diabetic mice suggesting a protective or regenerative effect of LDN.


Keywords: Diabetes; Hypoxia-ischemia; Naltrexone; Opioid growth factor; β-endorphin.

Off-Label, Low-Dose Naltrexone for Refractory Painful Diabetic Neuropathy

Published: 25 November 2015 

Here, we report a case in which off-label LDN was used for the treatment of painful diabetic neuropathic pain refractory to most available therapy.


In April 2012, a 76-year-old male with a 30-year history of type-2 diabetes and 7 years of diabetic neuropathic symptoms presented in the endocrinology clinic with complaints of burning pain in both legs below the mid-calf level. He described that the pain began insidiously, occurring off and on and associated with certain degree of numbness. Subsequently, both the frequency of occurrence and intensity of pain were increased disturbing his night-time sleep. The pain was partially relieved by walking, massage, hot fomentation, or paracetamol.


In July 2010, for the first time the patient sought treatment for neuropathic pain. He received Amitriptyline, Pregabalin, Duloxetine, Lamotrigine, and nonsteroidal anti-inflammatory drugs (NSAIDs) in varying doses and combinations. All drugs and combinations were tried for at least 1–2 months. Subsequently, he underwent a lumbar paravertebral nerve block (L2-L4) and had near complete pain relief afterward but the pain reappeared in a few weeks. He also received injectable vitamin B-complex and vitamin-D in therapeutic doses without any benefit. Opiates, transdermal patches of capsaicin, or lidocaine were not used.


On examination of the lower limbs, the skin over the dorsum of both the feet was shiny without any ulcer suggesting good foot care. The touch perception was decreased bilaterally below the knees and there was hyperalgesia, but no allodynia. The temperature sensation was normal in both legs. There was decreased vibration perception on both feet. The joint position sensation was lost in all joints on both feet but preserved in knees and above. The patient rated his pain to be 90% (0–100 points), 8, and 8 on a visual analog scale (VAS), short form McGill pain questionnaire, and 11-point Likert pain scale, respectively. The neuropathy symptom score was 9 out of 9. The deep tendon reflexes were absent in both ankles, 1+ in both knees, and 2+ in the joints of the upper limbs. Muscle power was normal in all limbs. Nerve conduction studies showed bilateral sensory motor polyneuropathy. The patient had adequate glycaemic control (HbA1c, 6.4%) and was on metformin (2 g/day), pioglitazone (30 mg/day), and insulin (20 units/day; 30% soluble and 70% isophane) with good compliance. Workup for other causes of neuropathy was non-contributory. MRI of lumbar spine showed degenerative changes without any neural involvement.


Based upon earlier reports [ 4 ], it was planned to administer oral naltrexone in graded doses (1, 2, and 4 mg HS for 2 weeks each). The 1 mg dose did not show any appreciable response. However, with the 2 mg dose, the patient reported a partial improvement in the burning pain. The 4 mg dose for 2 weeks produced a much greater pain relief. He rated his pain to be 5% on VAS as compared to 90% before therapy. On the Likert scale for pain and short-form McGill pain questionnaire the scores reduced to 1 and 2, respectively. Sleep was good after the treatment. On examination, there was no hyperalgesia, but the sensory loss was not improved. Following naltrexone therapy, initially he experienced mild diarrhea, nausea, and somnolence, which subsided spontaneously in a few days without any intervention. At every follow up the patient was satisfied with LDN (4 mg HS) and was continuing the same dose until October 2014 (last follow up) without experiencing any significant side effect.


The proposed mechanisms of pain relief with LDN include opioid receptor blockade causing compensatory release of endogenous opioids, and antagonism of Toll-like receptor-4 on microglia, which produces a variety of inflammatory factors such as pro-inflammatory cytokines, substance-P, nitric oxide, and excitatory amino acids [ 5,6 ]. Other proposed targets include astrocytes [ 7 ] NADPH oxidase-2 [ 8 ], and opioid growth factor receptor (OGFr) [ 9 ]. So far, very little information is available on the mechanism of pain relief by LDN and its long-term safety.


To our knowledge, this is the first report demonstrating the efficacy of LDN in relieving the pain of diabetic neuropathy. Based upon the present findings, we feel the need for further research to elucidate the possible mechanism(s) of LDN focussing on the roles of endogenous opioids and neuroinflammation, and to conduct large randomized, double-blind, clinical trials to establish the possible mechanism, efficacy, and safety of LDN in painful diabetic neuropathy and other chronic painful conditions.


Efficacy and safety of low-dose naltrexone in painful diabetic neuropathy: A randomized, double-blind, active-control, crossover clinical trial

 jun 2021 - Background: There is a need for newer therapies for chronic painful diabetic neuropathy as the existing drugs have their own limitations. Clinical trials on low-dose naltrexone (1-5 mg/d) showed efficacy and safety in certain chronic painful conditions, but not in painful diabetic neuropathy. Hence the present study was planned.


Methods: Sixty-seven participants with painful diabetic neuropathy were randomized to receive either 2 mg naltrexone or 10 mg amitriptyline daily following a 2-week run-in period. The participants were followed up every 2 weeks for a total of 6 weeks. Up-titration was done (to 4 mg naltrexone or 25/50 mg amitriptyline) if the pain reduction was less than 20% on the visual analog scale (VAS) during the next follow-up visit. Efficacy was assessed using the change in VAS score at the end of 6 weeks from baseline. Safety was evaluated at each follow-up visit. After 2 weeks of washout period, the participants were crossed over to receive the comparator drug for another 6 weeks with similar evaluations.


Results: The difference (confidence interval) in the change in VAS score between groups from baseline was 1.64 (-0.92 to 4.20) in per-protocol analysis and 1.5 (-1.11 to 4.13) in intention-to-treat analysis. Eight and fifty-two adverse events were reported in the naltrexone and amitriptyline groups, respectively (P < .001). The most common adverse events were mild diarrhea with naltrexone and somnolence with amitriptyline.


Conclusions: Low-dose naltrexone exhibited similar efficacy and a superior safety profile compared with amitriptyline in painful diabetic neuropathy.


Keywords: amitriptyline; clinical trial; diabetes; low-dose naltrexone; painful neuropathy

Influence of chronic naltrexone treatment on growth hormone secretion in normal subjects

1997 Dec; 

Abstract

Objective: To verify if a chronic opioid blockade could affect the GH/IGF-I axis.

Design: We have investigated the effects of naltrexone (NTX) treatment on GH response to GHRH in normal women.

Methods: GHRH test (50 micrograms i.v.) performed in seven normal female volunteers (age 25-38 years, with a body mass index ranging from 19.8 to 23.1 kg/m2) before and after 4-weeks NTX treatment (50 mg p.o. daily).

Results: Basal GH, IGF-I, insulin-like growth factor binding protein-3 (IGFBP-3) plasma levels and the IGF-I/IGFBP-3 molar ratio remained unaffected by NTX. NTX significantly reduced the GH peak values (15.52 +/- 3.59 vs 4.78 +/- 0.49 micrograms/l; P < 0.01), and GH area under curve (918.93 +/- 253.96 vs 401.09 +/- 79.63 micrograms/l; P < 0.01).


Conclusions: This finding suggests that the long-term opioid receptor blockade has an inhibitory role on GHRH-induced GH secretion. A central influence on neurotransmitter control of GH might be hypothesised. The inhibition of stimulated GH release, without interference with the basal level, could indicate an enhanced somatostatin secretion and/or activity. Opioids could be involved only in the regulation of GH dynamics and not in basal secretion. Nevertheless, a direct involvement of opioids at the pituitary level, which could be modified by NTX, cannot be excluded. 

sábado, 5 de agosto de 2023

Increase Growth Hormone with Naltrexone

Naltrexone, according to certain studies, has shown to help increase growth hormone levels in the body. Growth hormone is directly responsible for maintaining and building lean muscle mass. It also helps in burning fat that contributes to increased weight loss.

It is a known fact that growth hormones start decreasing as your weight increases. Growth hormones are thought to be an indicator of weight loss or gain along with calorie consumption. The relationship between insulin and growth hormones is an interesting concept as well.

Growth hormones decrease as insulin production increases in the body. Therefore, the more you gain, the lower your growth hormone levels will be. This will contribute to an increase in insulin. Low dose naltrexone is beneficial in decreasing insulin levels that helps in improving growth hormone levels.

The bottom line is that naltrexone can increase growth hormone levels in obese people that may improve metabolism and lean muscle mass.