==== Front Cureus Cureus 2168-8184 Cureus 2168-8184 Cureus Palo Alto (CA) 10.7759/cureus.39876 Neurology Allergy/Immunology Oncology Magnetic Resonance Imaging-Negative Varicella Zoster Virus Plexopathy in a Young Patient: A Case Report Muacevic Alexander Adler John R Gül Sedat 1 Ahmed Adeenah F 1 McGraw Corey 1 Nasany Ruham Alshiekh 1 1 Neurology, State University of New York Upstate Medical University, Syracuse, USA Sedat Gül sedatgul96@gmail.com 2 6 2023 6 2023 15 6 e398762 6 2023 Copyright © 2023, Gül et al. 2023 Gül et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. This article is available from https://www.cureus.com/articles/159942-magnetic-resonance-imaging-negative-varicella-zoster-virus-plexopathy-in-a-young-patient-a-case-report Varicella zoster virus (VZV)-associated plexopathy mainly occurs in patients over 60 years old. Postherpetic neuralgia is a well-known complication of herpes zoster (HZ); however, segmental zoster paresis secondary to HZ was reported in 1-20% of cases in the literature. Magnetic resonance imaging (MRI) findings may be positive in up to 70% of the patients. We describe a 43-year-old male patient with a history of grade two left frontal oligodendroglioma, which was treated with two partial resections, radiation treatment and procarbazine/lomustine, who presented with left upper extremity pain and developed a blistering rash in a dermatomal pattern in the left proximal upper extremity two weeks after the initial symptoms. He was diagnosed with shingles and treated with steroids and acyclovir with minimal improvement. Six weeks after the initial symptoms, a physical exam revealed left deltoid, supraspinatus and infraspinatus weakness with normal muscle stretch reflexes and decreased sensation on the C5 dermatome. Electromyography (EMG) revealed absent left lateral antebrachial cutaneous sensory nerve action potentials (SNAP) amplitude and a small left radial SNAP amplitude compared to the right side. Evidence of ongoing denervation with reinnervation was seen in the left upper trunk-supplied muscles. MRI of the brachial plexus was negative for any abnormalities. The patient was diagnosed with VZV-associated plexopathy, which improved with pregabalin and physical therapy. Our patient was significantly younger than expected in the HZ group. MRI usually shows T2 hyperintensities and thickening of the nerve roots in patients with VZV-associated plexopathy. However, the presentation, onset of symptoms, characteristics of the rash, and clinical course were diagnostic of HZ, and the weakness pattern, supported by the EMG findings, was diagnostic of VZV-associated plexopathy. shingles lomustine procarbazine varicella-zoster virus brachial plexopathy ==== Body pmcIntroduction Varicella zoster virus (VZV) is a DNA virus capable of establishing latency within the sensory ganglia. If reactivated later in life or secondary to an immunocompromised state, the clinical condition is known as herpes zoster (HZ), or colloquially, shingles. Shingles is known to mainly affect the elderly, with a majority of cases occurring in those 50 years and older [1]. Its presentation involves a characteristic painful, vesicular rash along a specific dermatome unilaterally, making its diagnosis routinely clinical. Patients often experience a prodromal period of pain and paresthesia along the innervation of the affected sensory nerve for two or more days before vesicles erupt [2]. The vesicles progress into pustules and then scabs, taking roughly a week or two before the skin begins to heal [2]. Treatment involves antiviral therapy such as acyclovir, which is most effective if administered within 72 hours of the onset of a rash [3]. Early intervention is also critical in preventing complications post-infection. Also utilized in the management of HZ is pain relief as needed with medications such as gabapentin, an anticonvulsant. While postherpetic neuralgia is a well-known neurological complication, there are other sometimes overlooked complications too, such as motor neuropathy. Current literature notes that segmental zoster paresis secondary to HZ has been noted in merely 1% to 20% of cases [4-6]. Brachial plexopathy occurs with traumatic or nontraumatic insults to the brachial plexus, resulting in motor or sensory symptoms of the arm and shoulder consistent with peripheral neuropathy. Causes can include direct injuries like trauma from birth, exposure to toxins, chemicals, or drugs, and inflammatory conditions such as autoimmune disorders or infectious processes like viral illnesses, including HZ [7]. Electromyography (EMG) is utilized to locate, evaluate the severity of, and determine recovery prospects in cases of brachial plexopathy [7]. Here we describe a case of MRI-negative HZ brachial plexopathy, confirmed by EMG, in a 44-year-old patient with a past medical history significant for oligodendroglioma status post-chemotherapy and radiotherapy. Case presentation A 43-year-old male presented with shoulder pain and weakness to the clinic. His past medical history was significant for grade 2 left frontal oligodendroglioma. He had two partial resections, radiation treatment, and procarbazine/lomustine for five cycles, which was completed two years prior to his presentation. He was put on levetiracetam 750 mg twice a day for seizure prophylaxis. He started experiencing weakness and pain in his left upper extremity and developed a painful and blistering rash around his left shoulder two weeks after the onset of symptoms (Figure 1). Figure 1 Blistering rash on the left upper extremity He was subsequently admitted to the hospital for shingles, and treated with steroids and acyclovir. Pain was treated with gabapentin and hydrocodone with only minimal improvement even after a month of treatment with these medications. By then, the patient had been experiencing pain, weakness, and numbness for approximately two months. A physical exam revealed atrophy of the left deltoid, supraspinatus and infraspinatus muscles, with muscle strength of only 2/5. He was unable to perform abduction above 10 degrees. Muscle stretch reflexes were symmetrical without any hyperreflexia. Sensation was decreased in the dermatome innervated by the C5 root. An EMG revealed absent left lateral antebrachial cutaneous sensory nerve action potentials (SNAP) amplitude, and a small left radial SNAP amplitude compared to the right side (Figure 2, Table 1). Figure 2 Electromyography waveforms Table 1 Electromyography depicting an absent left lateral antebrachial cutaneous sensory nerve action potentials (SNAP) amplitude and a small left radial SNAP amplitude compared to the patient’s right side Nerve / sites Rec. Site Onset Lat ms Peak Lat ms NP Amp uV Segments Distance mm Velocity m/s L Median – Digit II (Antidromic) Wrist Dig II 3.13 4.27 17.8 Wrist – Dig II 140 45 L Ulnar – Digit V (Antidromic) Wrist Dig V 2.66 3.54 26.4 Wrist – Dig V 140 53 L Radial – Anatomical snuff box (Forearm) Forearm Wrist 1.56 2.24 18.3 Forearm – Wrist 100 64 R Radial – Anatomical snuff box (Forearm) Forearm Wrist 1.93 2.66 29.4 Forearm – Wrist 100 52 L Lateral antebrachial cutaneous – Forearm (Elbow) Elbow Forearm NR NR NR Elbow – Forearm 120 NR R Lateral antebrachial cutaneous – Forearm (Elbow) Elbow Forearm 2.08 3.02 9.5 Elbow – Forearm 120 58 L Medial antebrachial cutaneous – Forearm (Elbow) Elbow Forearm 1.98 2.81 12.4 Elbow – Forearm 120 61 R Medial antebrachial cutaneous – Forearm (Elbow) Elbow Forearm 2.03 2.97 13.8 Elbow – Forearm 120 59 Evidence of ongoing denervation with reinnervation was seen in the left upper trunk-supplied muscles. Of note, an MRI of the brachial plexus and brain with and without contrast did not reveal any abnormalities. Lyme antibody (Ab) in serum was negative. The patient was diagnosed with VZV plexopathy. His symptoms improved with physical therapy, and the pain was moderately controlled with pregabalin. Follow-up 18 months after the initial diagnosis revealed residual pain in the left upper extremity that is not functionally limiting and managed with only acetaminophen as needed. Discussion This study describes the case of a patient with oligodendroglioma who had undergone resections, chemotherapy, and radiotherapy, and later developed brachial plexopathy following a VZV infection. Interestingly, our patient was rather young, at 44 years old. Prior studies have described VZV-associated plexopathy in mainly patients over 60 years old. Furthermore, his clinical condition was explored for several months, and priority was given to investigating possible compression injuries. Given his extensive history with cancer and subsequent treatments, VZV should have been included in the differential earlier in his course. Additionally, MRI findings may support the diagnosis of VZV-associated plexopathy, but such was not the case in our patient. A case series looked at 10 patients and found MR to be diagnostic for plexopathies in 70% of patients, as defined by T2 hyperintensity and other secondary findings such as thickening of the nerve roots [8,9]. Of note, contrast enhancement was not found in any of the cases described by the case series [8]. MR imaging does prove crucial in excluding other pathologies, such as spinal cord compression, but it may not demonstrate T2 hyperintensity or contrast enhancement as may be expected in cases of plexopathy. Also, if the MRI is not available, electrodiagnostic studies combined with the clinical presentation and history of painful blistering rash should be diagnostic for VZV plexopathy. There are case reports that showed positive VZV DNA polymerase chain reaction (PCR) in cerebrospinal fluid (CSF) even four weeks after the initial blistering rash [4]. Also of diagnostic importance, the presence of anti-VZV immunoglobulin (Ig) G antibody in the CSF is more sensitive than VZV DNA [10]. Conclusions Although rare, VZV-associated plexopathy should be considered among the differential diagnosis in patients who present with plexopathy or radiculopathy after a recent HZ diagnosis. Although excluding structural causes is important, delay in the diagnosis may negatively affect the prognosis and may create more and longer-term disability for patients. Despite mostly affecting elderly patients, younger patients with an impaired immune system may be affected as well. Timely initiation of acyclovir treatment and physical therapy may improve the patient’s outcomes. Human Ethics Consent was obtained or waived by all participants in this study The authors have declared that no competing interests exist. ==== Refs References 1 A population-based study of the incidence and complication rates of herpes zoster before zoster vaccine introduction Mayo Clin Proc Yawn BP Saddier P Wollan PC St Sauver JL Kurland MJ Sy LS 1341 1349 82 2007 17976353 2 Shingles, scourge of the elderly: the acute illness Clinical Management of Herpes Viruses Wood MJ Easterbrook P 193 209 Washington, D.C IOS Press 1995 https://www.iospress.com/catalog/books/clinical-management-of-herpes-viruses 3 Epidemiology, treatment and prevention of herpes zoster: a comprehensive review Indian J Dermatol Venereol Leprol Koshy E Mengting L Kumar H Jianbo W 251 262 84 2018 29516900 4 Varicella zoster lumbosacral plexopathy: a rare cause of lower limb weakness BMJ Case Rep Archer TM 2018 2018 5 Brachial plexopathy following herpes zoster infection: two cases with MRI findings J Neurol Sci Choi JY Kang CH Kim BJ Park KW Yu SW 224 226 285 2009 19524942 6 Monoparesis with complex regional pain syndrome-like symptoms due to brachial plexopathy caused by the varicella zoster virus: a case report Arch Phys Med Rehabil Eyigor S Durmaz B Karapolat H 1653 1655 87 2006 17141648 7 Brachial plexopathy Ann Indian Acad Neurol Khadilkar SV Khade SS 12 18 16 2013 23661957 8 Imaging findings in patients with zoster-associated plexopathy AJNR Am J Neuroradiol Zubair AS Hunt C Watson J Nelson A Jones LK Jr 1248 1251 38 2017 28364009 9 Brachial neuritis caused by varicella-zoster diagnosed by changes in brachial plexus on MRI J Neurol Ayoub T Raman V Chowdhury M 1 4 257 2010 19633902 10 The value of detecting anti-VZV IgG antibody in CSF to diagnose VZV vasculopathy Neurology Nagel MA Forghani B Mahalingam R 1069 1073 68 2007 17287447