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2.
Cureus ; 16(1): e52823, 2024 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-38406096

RESUMEN

Hereditary hemochromatosis (HH) is characterized by elevated iron absorption in the body, leading to iron accumulation with subsequent dysfunction and end-organ damage. While the progression of the disease can result in arthralgias, hepatomegaly, cardiomyopathies, and diabetes, over a third of HH patients present with cutaneous manifestations. We present the case of a 56-year-old male with HH who presented to dermatology with a rash and diffuse scaling. The patient exhibited brown plate-like scales clinically consistent with diffuse ichthyosis vulgaris. While ichthyosis has been seen in patients with idiopathic hemochromatosis, its association with HH is not well reported. Due to the high prevalence of cutaneous involvement in hereditary hemochromatosis, physicians should familiarize themselves with ichthyosis and the other dermatologic manifestations of this disease.

4.
Cureus ; 15(11): e48225, 2023 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-38050509

RESUMEN

This case is a unique pediatric presentation of a surfer's myelopathy, now referred to as acute hyperextension-induced myelopathy (AHIM), that provides an optimistic rehabilitation outcome. A 13-year-old boy presented to the emergency department with back pain, paraplegia, urinary retention, and dysesthesia following his first surfing lesson while visiting Hawaii. MRI of the thoracic spine without contrast showed a significant T2 hyperintense signal in the T9-T12 distal thoracic cord, consistent with AHIM. He completed a 10-day inpatient rehabilitation program and experienced exceptional improvement in functional mobility. AHIM is a rare phenomenon that is triggered by repetitive spinal hyperextension. While there are studies describing this clinical syndrome in detail, the literature lacks information about rehabilitation outcomes for these patients. Following the diagnosis and acute management of AHIM, a comprehensive inpatient rehabilitation program is recommended to maximize functional improvement.

7.
Chronic Dis Transl Med ; 8(4): 245-255, 2022 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-36420177

RESUMEN

Cellular immunotherapy harnesses the body's own immune system to fight cancer by using engineered T cells, macrophages, or natural killer (NK) cells. Compared to chimeric antigen receptor T (CAR-T) cells that are commonly used to treat hematological malignancies, CAR-NK cells have shown remarkable therapeutic effectiveness while exhibiting enhanced safety, reduced risk of graft-versus-host disease, fewer side effects, and amplified antitumor efficacy. Preclinical trials have unveiled the high potential of adoptive CAR-NK cell therapy to curtail or even eliminate both hematological malignancies and solid tumors in animal models. We brought forth herein the design principle of CAR-NK cells, highlighted the latest progress in the preclinical testing and clinical trials of CAR-NK cells, briefly delved into discussed major roadblocks in CAR-NK therapy, and discussed potential solutions to surmount these challenges. Given the accelerated progress in both basic and translational studies on immune cell engineering, CAR-NK cell therapy promises to become a serious contender and important addition to the next-generation cell-based immunotherapy.

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