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Manjarres, Z.

Publications and source records attributed to Manjarres, Z..

3 recordsLinked to original sources

Life-long hydroxyurea treatment decreases chronic sickle cell disease pain

Chronic sickle cell disease (SCD) pain mechanisms remain critically understudied, even though more than 50% of patients develop this symptom as their disease progresses. Despite high face validity, there are critical gaps in transgenic SCD mouse model characterization and implementation that must be addressed in order to increase the translational relevance of these animals. First, it is unclear when the chronic pain phenotype first develops in these mice. Second, there are no studies that have measured chronic pain in animals following standard-of-care drug regimens. Herein, we address both of these gaps by performing reflexive pain behavior tests in hydroxyurea-treated Townes HbSS and HbAA mice from postnatal day 10 to 6 months of age. Hydroxyurea (HU), a compound that increases circulating levels of fetal hemoglobin (HbF), is a life-long therapy prescribed to individuals with SCD beginning as early as age 9 months. Here, we demonstrate that chronic mechanical hypersensitivity develops in Townes HbSS mice between P21-P28, a time frame that follows the HbF-to-HbS switch. When initiated at birth, HU treatment limits the extent of chronic mechanical pain development in HbSS mice. HU analgesic effects can be attributed to decreased innate immune tone in the periphery; life-long HU treatment decreases circulating monocyte counts in HbSS mice and reverses sensitization of TRPA1, a lipopolysaccharide receptor, in HbSS nociceptors. In conclusion, these studies provide additional support for early implementation of HU in SCD disease management, and furthermore, identify the LPS-TRPA1 signaling axis as a novel analgesic target for chronic SCD pain.

physiology↗

Male-specific analgesic effects of minocycline in sickle cell disease are mediated by microglia and the microbiome

Over 50% of individuals with sickle cell disease (SCD) experience chronic pain that is phenotypically distinct from their acute, vaso-occlusive crisis pain. Chronic SCD pain is commonly managed with opioid-based drugs that are associated with unwanted side effects, incomplete pain relief, and - in this population - accessibility issues. Thus, new treatments for chronic SCD pain are desperately needed. Here, we examined the analgesic efficacy of acute minocycline treatment in transgenic SCD mice. SCD mice exhibit gut dysbiosis and chronic inflammation. Therefore, we hypothesized that minocycline would provide robust analgesia in this model given the drugs antibiotic and anti-inflammatory properties respectively. Six days of minocycline treatment reversed chronic mechanical hypersensitivity only in male SCD mice. We identified two potential mechanisms underlying these sex-specific effects. First, we observed increased microgliosis only in the dorsal horn of male SCD mice. Minocycline treatment had opposite effects on microglial number in male and female SCD spinal cords. Second, minocycline treatment altered the gut microbiota in a sex-specific fashion; fecal microbiota transplant (FMT) from minocycline-treated female SCD mice induced widespread pain in recipients whereas FMT from minocycline-treated male SCD mice did not. In summary, these experiments highlight novel sex-specific mechanisms of minocycline analgesia and support future exploration of minocycline use for SCD pain management, but only in male patients.

neuroscience↗

The vaginal microbiome drives endometriosis pain

Despite being one of two cardinal disease symptoms, endometriosis pain is poorly understood. Using a validated mouse model, we demonstrate that endometriosis-associated vaginal dysbiosis is sufficient to induce pain in the absence of disease pathology. In addition, intravaginal antibiotic treatment and vaginal microbiome transplant from healthy control animals reverses pain in endometriosis mice.

microbiology↗